WO2005102410A2 - A system with a reservoir for perfusion management - Google Patents

A system with a reservoir for perfusion management Download PDF

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Publication number
WO2005102410A2
WO2005102410A2 PCT/US2005/013348 US2005013348W WO2005102410A2 WO 2005102410 A2 WO2005102410 A2 WO 2005102410A2 US 2005013348 W US2005013348 W US 2005013348W WO 2005102410 A2 WO2005102410 A2 WO 2005102410A2
Authority
WO
WIPO (PCT)
Prior art keywords
perfusion management
management according
perfusion
cell
reservoir
Prior art date
Application number
PCT/US2005/013348
Other languages
French (fr)
Other versions
WO2005102410A3 (en
Inventor
Jr. Lowell L. Wood
Original Assignee
Searete Llc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from US10/827,572 external-priority patent/US7850676B2/en
Priority claimed from US10/827,390 external-priority patent/US8361013B2/en
Priority claimed from US10/827,578 external-priority patent/US20050234440A1/en
Application filed by Searete Llc filed Critical Searete Llc
Publication of WO2005102410A2 publication Critical patent/WO2005102410A2/en
Publication of WO2005102410A3 publication Critical patent/WO2005102410A3/en

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M5/00Devices for bringing media into the body in a subcutaneous, intra-vascular or intramuscular way; Accessories therefor, e.g. filling or cleaning devices, arm-rests
    • A61M5/14Infusion devices, e.g. infusing by gravity; Blood infusion; Accessories therefor
    • A61M5/168Means for controlling media flow to the body or for metering media to the body, e.g. drip meters, counters ; Monitoring media flow to the body
    • A61M5/16804Flow controllers
    • A61M5/16827Flow controllers controlling delivery of multiple fluids, e.g. sequencing, mixing or via separate flow-paths
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/0002Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network
    • A61B5/0031Implanted circuitry
    • AHUMAN NECESSITIES
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    • A61B5/07Endoradiosondes
    • A61B5/076Permanent implantations
    • AHUMAN NECESSITIES
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    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/145Measuring characteristics of blood in vivo, e.g. gas concentration, pH value; Measuring characteristics of body fluids or tissues, e.g. interstitial fluid, cerebral tissue
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/145Measuring characteristics of blood in vivo, e.g. gas concentration, pH value; Measuring characteristics of body fluids or tissues, e.g. interstitial fluid, cerebral tissue
    • A61B5/14546Measuring characteristics of blood in vivo, e.g. gas concentration, pH value; Measuring characteristics of body fluids or tissues, e.g. interstitial fluid, cerebral tissue for measuring analytes not otherwise provided for, e.g. ions, cytochromes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/48Other medical applications
    • A61B5/4836Diagnosis combined with treatment in closed-loop systems or methods
    • A61B5/4839Diagnosis combined with treatment in closed-loop systems or methods combined with drug delivery
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M1/00Suction or pumping devices for medical purposes; Devices for carrying-off, for treatment of, or for carrying-over, body-liquids; Drainage systems
    • A61M1/71Suction drainage systems
    • A61M1/77Suction-irrigation systems
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B1/00Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
    • A61B1/00002Operational features of endoscopes
    • A61B1/00011Operational features of endoscopes characterised by signal transmission
    • A61B1/00016Operational features of endoscopes characterised by signal transmission using wireless means
    • AHUMAN NECESSITIES
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    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B1/00Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
    • A61B1/04Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor combined with photographic or television appliances
    • A61B1/041Capsule endoscopes for imaging
    • AHUMAN NECESSITIES
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    • A61B18/00Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body
    • A61B18/04Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by heating
    • A61B18/12Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by heating by passing a current through the tissue to be heated, e.g. high-frequency current
    • A61B18/14Probes or electrodes therefor
    • A61B18/1492Probes or electrodes therefor having a flexible, catheter-like structure, e.g. for heart ablation
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
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    • A61B18/00Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body
    • A61B18/18Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by applying electromagnetic radiation, e.g. microwaves
    • AHUMAN NECESSITIES
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    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B18/00Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body
    • A61B18/18Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by applying electromagnetic radiation, e.g. microwaves
    • A61B18/20Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by applying electromagnetic radiation, e.g. microwaves using laser
    • A61B18/22Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by applying electromagnetic radiation, e.g. microwaves using laser the beam being directed along or through a flexible conduit, e.g. an optical fibre; Couplings or hand-pieces therefor
    • A61B18/24Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by applying electromagnetic radiation, e.g. microwaves using laser the beam being directed along or through a flexible conduit, e.g. an optical fibre; Couplings or hand-pieces therefor with a catheter
    • AHUMAN NECESSITIES
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    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B2562/00Details of sensors; Constructional details of sensor housings or probes; Accessories for sensors
    • A61B2562/02Details of sensors specially adapted for in-vivo measurements
    • A61B2562/028Microscale sensors, e.g. electromechanical sensors [MEMS]
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/68Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
    • A61B5/6846Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be brought in contact with an internal body part, i.e. invasive
    • A61B5/6867Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be brought in contact with an internal body part, i.e. invasive specially adapted to be attached or implanted in a specific body part
    • A61B5/6876Blood vessel
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/72Signal processing specially adapted for physiological signals or for diagnostic purposes
    • A61B5/7232Signal processing specially adapted for physiological signals or for diagnostic purposes involving compression of the physiological signal, e.g. to extend the signal recording period
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/05General characteristics of the apparatus combined with other kinds of therapy
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/35Communication
    • A61M2205/3546Range
    • A61M2205/3561Range local, e.g. within room or hospital
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/35Communication
    • A61M2205/3576Communication with non implanted data transmission devices, e.g. using external transmitter or receiver
    • A61M2205/3592Communication with non implanted data transmission devices, e.g. using external transmitter or receiver using telemetric means, e.g. radio or optical transmission
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2209/00Ancillary equipment
    • A61M2209/01Remote controllers for specific apparatus
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2209/00Ancillary equipment
    • A61M2209/08Supports for equipment
    • A61M2209/084Supporting bases, stands for equipment
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M5/00Devices for bringing media into the body in a subcutaneous, intra-vascular or intramuscular way; Accessories therefor, e.g. filling or cleaning devices, arm-rests
    • A61M5/14Infusion devices, e.g. infusing by gravity; Blood infusion; Accessories therefor
    • A61M5/142Pressure infusion, e.g. using pumps
    • A61M5/14244Pressure infusion, e.g. using pumps adapted to be carried by the patient, e.g. portable on the body
    • A61M5/14276Pressure infusion, e.g. using pumps adapted to be carried by the patient, e.g. portable on the body specially adapted for implantation
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M5/00Devices for bringing media into the body in a subcutaneous, intra-vascular or intramuscular way; Accessories therefor, e.g. filling or cleaning devices, arm-rests
    • A61M5/14Infusion devices, e.g. infusing by gravity; Blood infusion; Accessories therefor
    • A61M5/168Means for controlling media flow to the body or for metering media to the body, e.g. drip meters, counters ; Monitoring media flow to the body
    • A61M5/172Means for controlling media flow to the body or for metering media to the body, e.g. drip meters, counters ; Monitoring media flow to the body electrical or electronic
    • A61M5/1723Means for controlling media flow to the body or for metering media to the body, e.g. drip meters, counters ; Monitoring media flow to the body electrical or electronic using feedback of body parameters, e.g. blood-sugar, pressure

Definitions

  • TECHNICAL FIELD The present application relates, in general, to detection and/or treatment.
  • a system includes but is not limited to: a body portion; at least one extensible finger coupled to said body portion; at least one reservoir in communication with said extensible finger; and a control circuitry coupled to said extensible finger, or said body portion.
  • a method includes but is not limited to: fabricating a device by forming a cavity for storing a receivable; coupling a flexible conduit to said cavity, the conduit being configured to extend from said cavity to a target location in an animal's body; and coupling said flexible conduit and said cavity to a monitoring system, said monitoring system including logic or software configured for directing said receivable from said cavity to said target location.
  • a method includes but is not limited to: storing a receivable in an implanted storage medium; extending a flexible conduit between said storage medium and a target location; and transmitting said receivable from said storage medium to said target location.
  • related systems include but are not limited to circuitiy and/or programming for effecting the herein-referenced method aspects; the circuitry and/or programming can be virtually any combination of hardware, software, and/or firmware configured to effect the herein- referenced method aspects depending upon the design choices of the system designer.
  • Figure 1 is a front-plan view of a device for perfusion management 100.
  • Figure 2 is a front-plan view of another aspect of the device for perfusion management 100.
  • Figure 3 is an exploded view of an extensible finger 104.
  • Figure 4 is a schematic view of the control circuit 110 and devices in communication with the control circuit 110.
  • Figure 5 illustrates an example wherein the device for perfusion management 100 is placed in a selected location in a human body 501.
  • FIG. 1 shown is a front plan view illustrative of various exemplary perfusion management device(s) and/or process(es). Accordingly, the present application first describes certain specific exemplary structures of Figure 1; thereafter, the present application illustrates certain specific exemplary processes. Those having skill in the art will appreciate that the specific devices and processes described herein are intended as merely illustrative of their more general counterparts.
  • the device for perfusion management 100 includes a body portion 102 from which at least one extensible finger 104 projects. At least one reservoir 106 within the body portion 102 contains a fluid, for example, a fluid for treatment.
  • a controllable valve 108 provides a path through which the fluid may travel to the at least one extensible finger 104.
  • a control circuit 110 provides a control signal that may open or close the control valve 108.
  • FIG. 2 depicted is an aspect of the device for perfusion management 100 which includes a body portion 102 from which a set of extensible fingers projects.
  • at least one of the extensible finger 104 of the set of extensible fingers has a sensor 216 at the distal end of the at least one of the extensible finger 104.
  • a sense line 214 connects the control circuit 110 to the sensor 216 at the distal end of the extensible finger 104.
  • the control circuit 110 may be connected to a sense line 214 that allows it to monitor the fluid levels within the at least one reservoir 106.
  • each of the extensible finger 104 of the set of extensible fingers is in fluid communication with at least one of a respective reservoir 106 filled with a different fluid for delivery.
  • the at least one reservoir 106 may be coupled to a mixing chamber where the fluid contents of the at least one reservoir 106 are present for mixing and the mixed contents enter the extensible finger 104 for delivery to a selected location.
  • the choice of the fluid in the at least one reservoir 106 may depend, for example, on the purpose of the device, for example, treatment of colon cancer, treatment of breast cancer, or treatment of an arterial disease.
  • the choice of fluid in the reservoir 106 includes, but is not limited to, for example, a chemical, a chemical compound, a protein, a lipoprotein, a glycoprotein, a sugar, a lipid, an antigen, an antibody, a cytokine, a peptide, a neurotransmitter, a hormone, an ion, a messenger a molecule, a nucleic acid, an engineered nucleic acid, a nucleic acid vector, a drug, a cell, a cell fragment, a cell organelle, a liposome, a pharmaceutical agent, a biological material, or a biological fraction.
  • the reservoir 106 may also be utilized for storage and disposal of operational fluids.
  • fluid-like substances such as gels, and fluidizable substances or non-fluid type substances, such as small solid particles
  • fluid-like substances such as gels
  • non-fluid type substances such as small solid particles
  • the nature of the fluid in the reservoir 206 includes, for example, and is not limited to, a liquid, a solution, a mixture, a gel, a colloid, a colloid of a suitable viscosity, a suspension, an emulsion, or any material of low shear-strength for delivery to a site.
  • one or more fluids are delivered to one or more of selected locations by the device for perfusion management 100.
  • the selected location may be, for example, in proximity to or within a tumor, a circulatory system, an aorta, a vena cava, a site of therapy, or a site of investigation in an animal.
  • a pump 218 provides fluid at a controlled flow rate for delivery to a site from the reservoir 106. It will be appreciated by those skilled in
  • the type of pump is not critical to the invention and may include, for example, a mechanical pump, a piezoelectric pump, an osmotic pump, a source of pressure, or a device for maintaining a positive flow of fluid through the device.
  • fluid flow may be further modulated with micro valves and self-pressurizing fiuidic reservoirs.
  • the fluid may be delivered without a pump.
  • fluid delivery may be controlled using a pressurized bladder, controlled dissolution or dilution of a material, a drip or gravity type of approach, or any other suitable approach to deliver the appropriate amount or an appropriate delivery-rate of the fluid.
  • the sensor 216 is an array of sensors, deployed from one or more portholes, at the distal end of each of the telescoping segments 304.
  • the portholes are sized and shaped to provide access through which the sensors 216 may be deployed.
  • the portholes may include seals, stress relief or other features appropriate for proper mechanical deployment.
  • one or more of the portholes can be controllably opened or closed to provide communication exterior to the extensible finger or main body.
  • the sensor 216 may be retracted within the port hole and deployed through the porthole. Where the porthole can be opened and closed, the porthole can close to fimit communication and can be opened for deployment.
  • the array of sensors may include, but is not limited to, for example, sensors for detecting pressure, temperature, chemical, gas, electrolyte, flow, volume, composition, or concentration.
  • microelectrodes such as, for example, solid-state microlectrodes are sensitized with an agent for detecting a relevant interactor. Examples of the agent include, but are not limited to, for example, agonists of angiogenesis.
  • the choice of sensor 216 depends on the physiological variable being monitored, treated, or controlled.
  • the term "physiological variable" refers to any and all measurements relating to the functioning of a living organism under normal, sub-normal, or abnormal states.
  • an operative tool 324 is coupled to the distal most telescoping segment 304, or deployed from the porthole, or carried by the extensible finger 104, further including a carrying line 334 in communication with the control circuit 110.
  • the operative tool 324 includes, but is not limited to, for example, one or more of a combination of, a tool positioner, an ablation device, a laser, a vacuum, a siphon 326, an evacuation device, a fluid dispenser 328, a cauterizer 330, a stent 332, a tissue-liquefying device, or a source of an electric or an electromagnetic charge 422.
  • the vacuum or the siphon is employed for removing a cell, a mass of cells, a tissue, a fluid, a gel, a sample, a debris, a contaminant, or other material for which removal is desired or appropriate.
  • the ablation device operates for perturbing or reducing the structural integrity or viability of a cell, a mass of cells, an assembly of biological materials ex biting shear strength, or a tissue.
  • the assembly of biological materials includes, for example, blood clots, cartilage, or bone.
  • the source of an electric or electromagnetic charge 422 includes, but is not limited to, for example, steady state electric currents, time- varying electric currents, alternating electric currents, radio waves, microwaves, ultraviolet rays, infra-red rays, optical rays, terahertz beams, and the like.
  • the operative tool 324 may include a set of devices having general or "multipurpose" utility.
  • the operative tool 324 may include, but is not limited to, for example, a combination of the fluid dispenser 328, the siphon 326, and the ablation device.
  • the operative tool combination for example, delivers the fluid or gel, ablates cells, and removes debris.
  • the plurality of telescoping segments 304 may themselves be hollow forming a conduit for delivery of the fluid to a site, or for housing a circuitry coupling the control circuit 110 to the operative tool 324, or for housing a mechanism that guides the arm 104 or the plurality of telescoping segments 304.
  • control circuit 110 With reference now to Figure 4, illustrated is a schematic view of the control circuit 110 and devices in communication with the control circuit 110.
  • a System with a Reservoir for Perfusion Management perfusion management 100 shows a data transmitter 410, and a data receiver 408 coupled to the control circuit 110.
  • An antenna 412 may be used for transmitting data to the exterior wirelessly.
  • the antenna 412 is shown diagrammatically, but may be a structure, such as a strip antenna, that may be integrated in a manner that does not impair or significantly perturb system performance.
  • the control circuit 110 is depicted as having a processor 402 coupled to a memory 404 that provides data storage and retrieval capability, and a power source 406. Feedback circuitry or logic circuitry provides communication between the control circuit 110 and devices in communication with it.
  • a software program providing instructions may be stored in the memory 404 to control operation of the control circuitry or to store data gathered under control of the control circuitry.
  • the control circuit 110 may have components for system integrated digital data gathering, processing, storage, compression and transmission. These can provide data control capabilities and operation control capabilities.
  • the transmission components may communicate through the antenna 412 to a person, system, computer, or device exterior to the body. This communication can allow data gathered by the sensors to be displayed, stored or otherwise processed in the external environment. Additionally, this communication may allow for the processed data or a plurality of new data to be received from the exterior by the device for perfusion management 100.
  • Data compression can allow the control circuitry to store data representing larger amounts of data to be stored in the memory 404 or to be transmitted to the exterior environment in a more efficient manner.
  • one or more of the operative tools 324 are mounted on an actuator 414 which allows for the independent movement of each tool.
  • one or more operative tools 324 may be mounted as a unit on one actuator 41 and moved as a group, for example, forming an aspirating-dispensing unit.
  • the fluid dispenser 328 and the siphon 326 may be mounted together as a group.
  • the actuator 414 may be a motor, a piezo electrically driven actuator, a micromechanical or electrical effector, or the like.
  • the extensible finger 104 may include an imaging device deployed from the porthole or from the distal end of the extensible finger 104 or carried by a carrying line 334.
  • imaging device being used herein to designate in general those components, circuits, assemblies and sub-assemblies comprising electrical, optical, or opto-electronic components.
  • the control circuit 110 is coupled to the imaging device that includes a laser 418, or a source of light or scene- illuminating radiation, coupled to an optical feed line 420 to fllurninate an area.
  • a charge coupled device is positioned to capture data from the illuminated area and provides an electronic signal indicative of the area imaged.
  • Conventional circuitry then produces a digital representation that may be displayed, stored in the memory 404, or otherwise processed.
  • the displayed image may serve, for example, for guiding the extensible finger 104 to the selected location or for determining the efficacy of a treatment or a procedure.
  • imaging device described herein is exemplary of imaging devices and that other imaging devices, including for example, raster and line-scanning imagers, nonvisible spectral imagers, and fluorescence imagers, may be included.
  • the device for perfusion management 100 is depicted implanted in an aorta 502 with the extensible finger 104 traveling a blood vessel in a human body 501. Additionally, the device for perfusion management 100 is configured for full or partial placement in the human body 501. The configuration may incorporate a combination of the following criteria, including but not limited to, dimensions, composition, shape, power dissipation level, or texture.
  • the body portion 102 is sized for implantation in proximity to the aorta 502 or the vena cava and the extensible finger 104 is sized for traveling a blood vessel in an animal, for example, the human body 501.
  • each of the telescoping segments 304 has about a two-fold decrease in diameter.
  • the length of the extensible finger 104 depends upon the distance between the selected location and the location of the body portion 102, and the route traveled by the extensible finger 104 to arrive at the selected location. It will be appreciated by those having skill in the art that the extensible finger 104 including the one or more of the operative tools 324
  • a System with a Reservoir for Perfusion Management is of a size, dimension or shape operable for traveling one or more blood vessel of decreasing or increasing luminal diameter.
  • the extensible finger 104 and the one or more operative tool 324 may pass through the wall of the lumen, or frans-luminally, to the surrounding tissue for detecting, delivery of a treatment, or for sampling.
  • the frans-luminal mode described is not limited to blood vessels and includes the space or cavity of an organ or structure.
  • the device for perfusion management 100 and its components has a size, dimension, shape, material, and properties of flexion, retraction, and extension to allow for the steering, guiding, or positioning of the components of the device for perfusion management 100.
  • the extensible finger 104 may need to be steered around an occlusion or a fork in the vasculature.
  • the extensible finger 104 may need to retracted, repositioned and then extended in a new direction.
  • Extending, retracting or repositioning of the extensible finger 104 maybe accomplished by techniques known in the art, for example, by using a guide wire or a by employing a shape polymer.
  • the extensible finger may be retracted and then "punched through" an occlusion to dislodge it.
  • lasers, shears, or a drug may be employed to degrade the occlusion.
  • the siphon 326 or an evacuation device is employed to evacuate any debris, before the extensible finger 104 continues traveling the circulatory system.
  • the device for perfusion management 100 is not restricted to traveling the circulatory system but may be implanted in any tissue, such as, for example, nerve, epithelial, dermal, sub- dermal, connective, or muscle tissue. Additionally, the device for perfusion management 100 may be implanted in inter-tissue spaces, or inter-organ spaces, for example, those found within a body cavity.
  • the device for perfusion management 100 includes an array of sensors 116 positioned across the plurality of telescoping segments 304 for monitoring, tracking, or mapping a gradient of temperature, pressure, flow, or material concentration in one or more locations.
  • the one or more location may be, for example, a tissue, an artery, or a vein.
  • the device for perfusion management 100 has an auto- correct feature for correcting a sub-normal or abnormal gradient of temperature, pressure, flow concentration, or material concentration
  • the device for perfusion management 100 may be composed of materials known in the art, for example, a metal, a ceramic, a glass, a plastic, a polymer, a biologically compatible material, or a combination.
  • the device for perfusion management 100 may be made of helically-coiled stainless steel wire and coated with a polymer, such as, TeflonTM.
  • the device for perfusion management 100 may be made of helically-coiled stainless steel wire and coated with a polymer and impregnated with one or more of a biological material, for example, including but not limited to, anti coagulants, or inhibitors.
  • the device for perfusion management 100 may be present ex-vivo.
  • the device for perfusion management 100 is placed in proximity to the location on the animal, for example, the human body 501, and the extensible finger 104 directed to the selected location and an effective agent delivered in proximity to the selected location.
  • the extensible finger 104 may be retracted after such a delivery, leaving the device for perfusion management 100 in place at the location, until time for a future delivery of the effective agent or another operation.
  • the majority of the device for perfusion management 100 is ex vivo while the extensible finger 104 alternates between ex vivo and in vivo states.
  • the device for perfusion management 100 is placed in proximity to the location within the animal, for example, the human body 501, and the extensible finger 104 directed to a selected location and an effective agent delivered in proximity to the selected location.
  • the extensible finger 104 may be retracted after such a delivery, leaving the device for perfusion management 100 in place at the location, until time for a future delivery or another operation.
  • the majority of the device for perfusion management 100 is in- vivo while the extensible finger 104 alternates between retracted, partially retracted or unretracted states.
  • the device for perfusion management 100 is operable by a person.
  • the person momtors, guides, positions, and performs other actions/operations or manages a response consistent with the device for perfusion management 100 being managed by the person.
  • a separate display device can present imagery to aid the person.
  • the imagery may be captured as described above with reference to Figure 4, may be computer generated or may be captured by a separate imaging device internal to or external to the animal, for example, the human body 501. Actions may be performed under control of the person who may be on site or may be linked from a remote location, or the device for perfusion management 100 may be programmed to perform some or all functions automatically.
  • the device for perfusion management 100 may be programmed to perform functions, such as, lumen clearance, lumen maintenance, monitoring of concentrations, sending of alerts, delivery of one or more of the effective agent at timed intervals or locations, self-check, and self- diagnosis. It will be appreciated by those of skill in the art that the device for perfusion management 100 ma be programmed for complete automatic operation of one or more functions.
  • the device for perfusion management 100 need not be limited to managing perfusion.
  • the device provides a mechanism for exploring one or more regions and/or reaching a location within an animal, obtaining information, communicating this information, performing operations, performing procedures, and providing treatment.
  • the device for perfusion management 100 may find utility in the management of physiological functions, the detection or elimination of pathological functions or conditions, and/or treatment of diseases of non-human animals.
  • Other modifications of the subject matter herein will be appreciated by one of skill in the art in light of the teachings herein.
  • any two components herein combined to achieve a particular functionality can be seen as “associated with” each other such that the desired functionality is achieved, irrespective of architectures or intermedial components.
  • any two components so associated can also be viewed as being “operably connected”, or “operably coupled”, to each other to achieve the desired functionality.

Abstract

A system (100) for perfusion management that monitors, maintains, diagnoses, or treats perfusion deficiencies.

Description

Page l
A SYSTEM WITH A RESERVOIR FOR PERFUSION MANAGEMENT
CROSS-REFERENCE TO RELATED APPLICATIONS The present application is related to, claims the earliest available effective filing date(s) from (e.g., claims earliest available priority dates for other than provisional patent applications; claims benefits under 35 US C § 119(e) for provisional patent applications), and incorporates by reference in its entirety all subject matter of the following listed applications; the present application also claims the earliest available effective filing date(s) from, and also incorporates by reference in its entirety all subject matter of any and all parent, grandparent, great-grandparent, etc. applications of the following listed applications:
1. United States patent application entitled A SYSTEM FOR PERFUSION MANAGEMENT, naming Lowell L. Wood Jr. as inventor, filed substantially contemporaneously and commonly assigned herewith.
2. United States patent application entitled A SYSTEM WITH A SENSOR FOR PERFUSION MANAGEMENT, naming Lowell L. Wood Jr. as inventor, filed substantially contemporaneously and commonly assigned herewith.
3. United States patent application entitled A TELESCOPING PERFUSION MANAGEMENT SYSTEM, naming Lowell L. Wood, Jr. as inventor, filed substantially contemporaneously and commonly assigned herewith.
TECHNICAL FIELD The present application relates, in general, to detection and/or treatment.
SUMMARY
Application Title: A Svste with a Reservoir for Perfusion Management In one aspect, a system includes but is not limited to: a body portion; at least one extensible finger coupled to said body portion; at least one reservoir in communication with said extensible finger; and a control circuitry coupled to said extensible finger, or said body portion. In addition to the foregoing, other system aspects are described in the claims, drawings, and text forming a part of the present application.
In one aspect, a method includes but is not limited to: fabricating a device by forming a cavity for storing a receivable; coupling a flexible conduit to said cavity, the conduit being configured to extend from said cavity to a target location in an animal's body; and coupling said flexible conduit and said cavity to a monitoring system, said monitoring system including logic or software configured for directing said receivable from said cavity to said target location. In addition to the foregoing, other method aspects are described in the claims, drawings, and text forming a part of the present application.
In another aspect, a method includes but is not limited to: storing a receivable in an implanted storage medium; extending a flexible conduit between said storage medium and a target location; and transmitting said receivable from said storage medium to said target location. In addition to the foregoing, other method aspects are described in the claims, drawings, and text forming a part of the present application.
In one or more various aspects, related systems include but are not limited to circuitiy and/or programming for effecting the herein-referenced method aspects; the circuitry and/or programming can be virtually any combination of hardware, software, and/or firmware configured to effect the herein- referenced method aspects depending upon the design choices of the system designer.
In addition to the foregoing, various other method and or system aspects are set forth and described in the text (e.g., claims and/or detailed description) and/or drawings of the present application.
Application Title: A System with a Reservoir for Perfusion Management The foregoing is a summary and thus contains, by necessity; simplifications, generalizations and omissions of detail; consequently, those skilled in the art will appreciate that the summary is illustrative only and is NOT intended to be in any way limiting. Other aspects, inventive features, and advantages of the devices and/or processes described herein, as defined solely by the claims, will become apparent in the non-limiting detailed description set forth herein.
BRIEF DESCRIPTION OF THE FIGURES Figure 1 is a front-plan view of a device for perfusion management 100.
Figure 2 is a front-plan view of another aspect of the device for perfusion management 100.
Figure 3 is an exploded view of an extensible finger 104.
Figure 4 is a schematic view of the control circuit 110 and devices in communication with the control circuit 110.
Figure 5 illustrates an example wherein the device for perfusion management 100 is placed in a selected location in a human body 501.
The use of the same symbols in different drawings typically indicates similar or identical items.
DETAILED DESCRIPTION The present application uses formal outline headings for clarity of presentation. However, it is to be understood that the outline headings are for presentation purposes, and that different types of subject matter may be discussed throughout the application (e.g., device(s)/structure(s) may be described under the process(es)/ operations heading(s) Application Title: A System with a Reservoir for Perfusion Management and/or process(es)/ operations may be discussed under structure(s)/process(es) headings). Hence, the use of the formal outline headings is not intended to be in any way limiting.
1. Perfusion Management Device(s) and/or Process(es) .
With reference now to Figure 1, shown is a front plan view illustrative of various exemplary perfusion management device(s) and/or process(es). Accordingly, the present application first describes certain specific exemplary structures of Figure 1; thereafter, the present application illustrates certain specific exemplary processes. Those having skill in the art will appreciate that the specific devices and processes described herein are intended as merely illustrative of their more general counterparts.
A. Structure(s) and or Device(s)
With reference to the figures, and with reference now to Figure 1, shown is a front-plan view of a device for perfusion management 100. The device for perfusion management 100 includes a body portion 102 from which at least one extensible finger 104 projects. At least one reservoir 106 within the body portion 102 contains a fluid, for example, a fluid for treatment. A controllable valve 108 provides a path through which the fluid may travel to the at least one extensible finger 104. A control circuit 110 provides a control signal that may open or close the control valve 108.
Referring now to Figure 2, depicted is an aspect of the device for perfusion management 100 which includes a body portion 102 from which a set of extensible fingers projects. In one aspect, at least one of the extensible finger 104 of the set of extensible fingers has a sensor 216 at the distal end of the at least one of the extensible finger 104. Additionally, a sense line 214 connects the control circuit 110 to the sensor 216 at the distal end of the extensible finger 104. The control circuit 110 may be connected to a sense line 214 that allows it to monitor the fluid levels within the at least one reservoir 106.
Application Title: A System with a Reservoir for Perfusion Management Continuing to refer to Figure 2, in one aspect, each of the extensible finger 104 of the set of extensible fingers is in fluid communication with at least one of a respective reservoir 106 filled with a different fluid for delivery. In another approach, the at least one reservoir 106 may be coupled to a mixing chamber where the fluid contents of the at least one reservoir 106 are present for mixing and the mixed contents enter the extensible finger 104 for delivery to a selected location. The choice of the fluid in the at least one reservoir 106 may depend, for example, on the purpose of the device, for example, treatment of colon cancer, treatment of breast cancer, or treatment of an arterial disease. The choice of fluid in the reservoir 106 includes, but is not limited to, for example, a chemical, a chemical compound, a protein, a lipoprotein, a glycoprotein, a sugar, a lipid, an antigen, an antibody, a cytokine, a peptide, a neurotransmitter, a hormone, an ion, a messenger a molecule, a nucleic acid, an engineered nucleic acid, a nucleic acid vector, a drug, a cell, a cell fragment, a cell organelle, a liposome, a pharmaceutical agent, a biological material, or a biological fraction. The reservoir 106 may also be utilized for storage and disposal of operational fluids. Also, although the exemplary embodiment described herein focuses primarily on fluid delivery, one skilled in the art will understand that fluid-like substances, such as gels, and fluidizable substances or non-fluid type substances, such as small solid particles, may be delivered in accordance with the invention. It will also be appreciated by those having skill in the art that the nature of the fluid in the reservoir 206 includes, for example, and is not limited to, a liquid, a solution, a mixture, a gel, a colloid, a colloid of a suitable viscosity, a suspension, an emulsion, or any material of low shear-strength for delivery to a site.
In one aspect one or more fluids are delivered to one or more of selected locations by the device for perfusion management 100. The selected location may be, for example, in proximity to or within a tumor, a circulatory system, an aorta, a vena cava, a site of therapy, or a site of investigation in an animal.
Continuing to refer to Figure 2, a pump 218 provides fluid at a controlled flow rate for delivery to a site from the reservoir 106. It will be appreciated by those skilled in
Application Title: A System with a Reservoir for Perfusion Management the art that the type of pump is not critical to the invention and may include, for example, a mechanical pump, a piezoelectric pump, an osmotic pump, a source of pressure, or a device for maintaining a positive flow of fluid through the device. Additionally, fluid flow may be further modulated with micro valves and self-pressurizing fiuidic reservoirs. Moreover, in some applications, the fluid may be delivered without a pump. For example, fluid delivery may be controlled using a pressurized bladder, controlled dissolution or dilution of a material, a drip or gravity type of approach, or any other suitable approach to deliver the appropriate amount or an appropriate delivery-rate of the fluid.
With reference now to Figure 3, depicted is an exploded view of the extensible finger 104 showing a plurality of telescoping segments 304 with the sensor 216 at the distal end of each of the telescoping segments 304. In one aspect of the invention, the sensor 216 is an array of sensors, deployed from one or more portholes, at the distal end of each of the telescoping segments 304. In one approach, the portholes are sized and shaped to provide access through which the sensors 216 may be deployed. The portholes may include seals, stress relief or other features appropriate for proper mechanical deployment. In one approach, one or more of the portholes can be controllably opened or closed to provide communication exterior to the extensible finger or main body. The sensor 216 may be retracted within the port hole and deployed through the porthole. Where the porthole can be opened and closed, the porthole can close to fimit communication and can be opened for deployment. The array of sensors may include, but is not limited to, for example, sensors for detecting pressure, temperature, chemical, gas, electrolyte, flow, volume, composition, or concentration. In an alternate aspect of the invention, microelectrodes, such as, for example, solid-state microlectrodes are sensitized with an agent for detecting a relevant interactor. Examples of the agent include, but are not limited to, for example, agonists of angiogenesis. The choice of sensor 216 depends on the physiological variable being monitored, treated, or controlled. The term "physiological variable" refers to any and all measurements relating to the functioning of a living organism under normal, sub-normal, or abnormal states.
Application Title: A System with a Reservoir for Perfusion Management Continuing to refer to Figure 3 and referring now to Figure 4, an operative tool 324 is coupled to the distal most telescoping segment 304, or deployed from the porthole, or carried by the extensible finger 104, further including a carrying line 334 in communication with the control circuit 110. The operative tool 324 includes, but is not limited to, for example, one or more of a combination of, a tool positioner, an ablation device, a laser, a vacuum, a siphon 326, an evacuation device, a fluid dispenser 328, a cauterizer 330, a stent 332, a tissue-liquefying device, or a source of an electric or an electromagnetic charge 422. The vacuum or the siphon is employed for removing a cell, a mass of cells, a tissue, a fluid, a gel, a sample, a debris, a contaminant, or other material for which removal is desired or appropriate. The ablation device operates for perturbing or reducing the structural integrity or viability of a cell, a mass of cells, an assembly of biological materials ex biting shear strength, or a tissue. The assembly of biological materials includes, for example, blood clots, cartilage, or bone. The source of an electric or electromagnetic charge 422 includes, but is not limited to, for example, steady state electric currents, time- varying electric currents, alternating electric currents, radio waves, microwaves, ultraviolet rays, infra-red rays, optical rays, terahertz beams, and the like.
Continuing to refer to Figure 3, it will be appreciated by those having skill in the art that the operative tool 324 may include a set of devices having general or "multipurpose" utility. The operative tool 324 may include, but is not limited to, for example, a combination of the fluid dispenser 328, the siphon 326, and the ablation device. In this example the operative tool combination, for example, delivers the fluid or gel, ablates cells, and removes debris.
Continuing to refer to Figure 3, the plurality of telescoping segments 304 may themselves be hollow forming a conduit for delivery of the fluid to a site, or for housing a circuitry coupling the control circuit 110 to the operative tool 324, or for housing a mechanism that guides the arm 104 or the plurality of telescoping segments 304.
With reference now to Figure 4, illustrated is a schematic view of the control circuit 110 and devices in communication with the control circuit 110. The device for
Application Title: A System with a Reservoir for Perfusion Management perfusion management 100 shows a data transmitter 410, and a data receiver 408 coupled to the control circuit 110. An antenna 412 may be used for transmitting data to the exterior wirelessly. The antenna 412 is shown diagrammatically, but may be a structure, such as a strip antenna, that may be integrated in a manner that does not impair or significantly perturb system performance. The control circuit 110 is depicted as having a processor 402 coupled to a memory 404 that provides data storage and retrieval capability, and a power source 406. Feedback circuitry or logic circuitry provides communication between the control circuit 110 and devices in communication with it. In some applications, a software program providing instructions may be stored in the memory 404 to control operation of the control circuitry or to store data gathered under control of the control circuitry. Additionally, the control circuit 110 may have components for system integrated digital data gathering, processing, storage, compression and transmission. These can provide data control capabilities and operation control capabilities. For example, the transmission components may communicate through the antenna 412 to a person, system, computer, or device exterior to the body. This communication can allow data gathered by the sensors to be displayed, stored or otherwise processed in the external environment. Additionally, this communication may allow for the processed data or a plurality of new data to be received from the exterior by the device for perfusion management 100. Data compression can allow the control circuitry to store data representing larger amounts of data to be stored in the memory 404 or to be transmitted to the exterior environment in a more efficient manner.
Continuing to refer to Figure 4, one or more of the operative tools 324 are mounted on an actuator 414 which allows for the independent movement of each tool. Alternatively, one or more operative tools 324 may be mounted as a unit on one actuator 41 and moved as a group, for example, forming an aspirating-dispensing unit. For example, the fluid dispenser 328 and the siphon 326 may be mounted together as a group. The actuator 414 may be a motor, a piezo electrically driven actuator, a micromechanical or electrical effector, or the like.
Application Title: A System with a Reservoir for Perfusion Management Continuing to refer to Figure 4, the extensible finger 104 may include an imaging device deployed from the porthole or from the distal end of the extensible finger 104 or carried by a carrying line 334. The term "imaging device" being used herein to designate in general those components, circuits, assemblies and sub-assemblies comprising electrical, optical, or opto-electronic components. In one aspect, the control circuit 110 is coupled to the imaging device that includes a laser 418, or a source of light or scene- illuminating radiation, coupled to an optical feed line 420 to fllurninate an area. A charge coupled device is positioned to capture data from the illuminated area and provides an electronic signal indicative of the area imaged. Conventional circuitry then produces a digital representation that may be displayed, stored in the memory 404, or otherwise processed. The displayed image may serve, for example, for guiding the extensible finger 104 to the selected location or for determining the efficacy of a treatment or a procedure. One skilled in the art will recognize that the imaging device described herein is exemplary of imaging devices and that other imaging devices, including for example, raster and line-scanning imagers, nonvisible spectral imagers, and fluorescence imagers, may be included.
With reference now to Figure 5, the device for perfusion management 100 is depicted implanted in an aorta 502 with the extensible finger 104 traveling a blood vessel in a human body 501. Additionally, the device for perfusion management 100 is configured for full or partial placement in the human body 501. The configuration may incorporate a combination of the following criteria, including but not limited to, dimensions, composition, shape, power dissipation level, or texture. In one aspect, the body portion 102 is sized for implantation in proximity to the aorta 502 or the vena cava and the extensible finger 104 is sized for traveling a blood vessel in an animal, for example, the human body 501. In this aspect, if the vasculature decreases two-fold, each of the telescoping segments 304 has about a two-fold decrease in diameter. The length of the extensible finger 104, for example, depends upon the distance between the selected location and the location of the body portion 102, and the route traveled by the extensible finger 104 to arrive at the selected location. It will be appreciated by those having skill in the art that the extensible finger 104 including the one or more of the operative tools 324
Application Title: A System with a Reservoir for Perfusion Management is of a size, dimension or shape operable for traveling one or more blood vessel of decreasing or increasing luminal diameter. It will also be appreciated by those having skill in the art that the extensible finger 104 and the one or more operative tool 324 may pass through the wall of the lumen, or frans-luminally, to the surrounding tissue for detecting, delivery of a treatment, or for sampling. It will also be appreciated by those having skill in the art that the frans-luminal mode described is not limited to blood vessels and includes the space or cavity of an organ or structure.
It will also be appreciated by those having skill in the art that the device for perfusion management 100 and its components, such as, for example, the extensible finger 104, the plurality of telescoping segments 304, or one or more operative tools 324, has a size, dimension, shape, material, and properties of flexion, retraction, and extension to allow for the steering, guiding, or positioning of the components of the device for perfusion management 100. For example, the extensible finger 104 may need to be steered around an occlusion or a fork in the vasculature. In this example, the extensible finger 104 may need to retracted, repositioned and then extended in a new direction. Extending, retracting or repositioning of the extensible finger 104 maybe accomplished by techniques known in the art, for example, by using a guide wire or a by employing a shape polymer. In another aspect, the extensible finger may be retracted and then "punched through" an occlusion to dislodge it. In this example, lasers, shears, or a drug may be employed to degrade the occlusion. In this example, subsequent to the dislodgement and degradation of the occlusion, the siphon 326 or an evacuation device is employed to evacuate any debris, before the extensible finger 104 continues traveling the circulatory system. It will also be appreciated by those skilled in the art that the device for perfusion management 100 is not restricted to traveling the circulatory system but may be implanted in any tissue, such as, for example, nerve, epithelial, dermal, sub- dermal, connective, or muscle tissue. Additionally, the device for perfusion management 100 may be implanted in inter-tissue spaces, or inter-organ spaces, for example, those found within a body cavity.
Application Title: A System with a Reservoir for Perfusion Management In one aspect the device for perfusion management 100 includes an array of sensors 116 positioned across the plurality of telescoping segments 304 for monitoring, tracking, or mapping a gradient of temperature, pressure, flow, or material concentration in one or more locations. The one or more location may be, for example, a tissue, an artery, or a vein. In another aspect the device for perfusion management 100 has an auto- correct feature for correcting a sub-normal or abnormal gradient of temperature, pressure, flow concentration, or material concentration
The device for perfusion management 100 may be composed of materials known in the art, for example, a metal, a ceramic, a glass, a plastic, a polymer, a biologically compatible material, or a combination. For example, the device for perfusion management 100 may be made of helically-coiled stainless steel wire and coated with a polymer, such as, Teflon™. In another example, the device for perfusion management 100 may be made of helically-coiled stainless steel wire and coated with a polymer and impregnated with one or more of a biological material, for example, including but not limited to, anti coagulants, or inhibitors.
B. Operation(s) and/or Process(es)
Those having skill in the art will appreciate that some or all of the components of the device for perfusion management 100 may be present ex-vivo. In one implementation, the device for perfusion management 100 is placed in proximity to the location on the animal, for example, the human body 501, and the extensible finger 104 directed to the selected location and an effective agent delivered in proximity to the selected location. The extensible finger 104 may be retracted after such a delivery, leaving the device for perfusion management 100 in place at the location, until time for a future delivery of the effective agent or another operation. In this implementation, the majority of the device for perfusion management 100 is ex vivo while the extensible finger 104 alternates between ex vivo and in vivo states.
Application Title: A System with a Reservoir for Perfusion Management In another aspect, some or all the components of the device for perfusion management 100 are present in vivo. In one implementation, the device for perfusion management 100 is placed in proximity to the location within the animal, for example, the human body 501, and the extensible finger 104 directed to a selected location and an effective agent delivered in proximity to the selected location. The extensible finger 104 may be retracted after such a delivery, leaving the device for perfusion management 100 in place at the location, until time for a future delivery or another operation. In this implementation, the majority of the device for perfusion management 100 is in- vivo while the extensible finger 104 alternates between retracted, partially retracted or unretracted states.
In one implementation, the device for perfusion management 100 is operable by a person. The person momtors, guides, positions, and performs other actions/operations or manages a response consistent with the device for perfusion management 100 being managed by the person. In such an implementation a separate display device can present imagery to aid the person. The imagery may be captured as described above with reference to Figure 4, may be computer generated or may be captured by a separate imaging device internal to or external to the animal, for example, the human body 501. Actions may be performed under control of the person who may be on site or may be linked from a remote location, or the device for perfusion management 100 may be programmed to perform some or all functions automatically. For example, the device for perfusion management 100 may be programmed to perform functions, such as, lumen clearance, lumen maintenance, monitoring of concentrations, sending of alerts, delivery of one or more of the effective agent at timed intervals or locations, self-check, and self- diagnosis. It will be appreciated by those of skill in the art that the device for perfusion management 100 ma be programmed for complete automatic operation of one or more functions.
C. Variation(s), and/or Implementation(s)
Application Title: A System with a Reservoir for Perfusion Management Those having skill in the art will recognize that the present application teaches modifications of the devices, structures, and/or processes within the spirit of the teaching herein. For example, the device for perfusion management 100 need not be limited to managing perfusion. The device provides a mechanism for exploring one or more regions and/or reaching a location within an animal, obtaining information, communicating this information, performing operations, performing procedures, and providing treatment. In another example, the device for perfusion management 100 may find utility in the management of physiological functions, the detection or elimination of pathological functions or conditions, and/or treatment of diseases of non-human animals. Other modifications of the subject matter herein will be appreciated by one of skill in the art in light of the teachings herein.
The foregoing described aspects depict different components contained within, or connected with, different other components. It is to be understood that such depicted architectures are merely exemplary, and that in fact many other architectures can be implemented which achieve the same functionality. In a conceptual sense, any arrangement of components to achieve the same functionality is effectively "associated" such that the desired functionality is achieved. Hence, any two components herein combined to achieve a particular functionality can be seen as "associated with" each other such that the desired functionality is achieved, irrespective of architectures or intermedial components. Likewise, any two components so associated can also be viewed as being "operably connected", or "operably coupled", to each other to achieve the desired functionality.
While particular aspects of the present subject matter described herein have been shown and described, it will be obvious to those skilled in the art that, based upon the teachings herein, changes and modifications may be made without departing from this subject matter described herein and its broader aspects and, therefore, the appended claims are to encompass within their scope all such changes and modifications as are within the true spirit and scope of this subject matter described herein. Furthermore, it is to be understood that the invention is defined solely by the appended claims. It will be
Application Title: A System with a Reservoir for Perfusion Management understood by those within the art that, in general, terms used herein, and especially in the appended claims (e.g., bodies of the appended claims) are generally intended as "open" terms (e.g., the term "including" should be interpreted as "including but not limited to," the term "having" should be interpreted as "having at least," the term "includes" should be interpreted as "includes but is not limited to," etc.). It will be further understood by those within the art that if a specific number of an introduced claim recitation is intended, such an intent will be explicitly recited in the claim, and in the absence of such recitation no such intent is present. For example, as an aid to understanding, the following appended claims may contain usage of the introductory phrases "at least one" and "one or more" to introduce claim recitations. However, the use of such phrases should not be construed to imply that the introduction of a claim recitation by the indefinite articles "a" or "an" limits any particular claim containing such introduced claim recitation to inventions containing only one such recitation, even when the same claim includes the introductory phrases "one or more" or "at least one" and indefinite articles such as "a" or "an" (e.g., "a" and/or "an" should typically be interpreted to mean "at least one" or "one or more"); the same holds true for the use of definite articles used to introduce claim recitations. In addition, even if a specific number of an introduced claim recitation is explicitly recited, those skilled in the art will recognize that such recitation should typically be interpreted to mean at least the recited number (e.g., the bare recitation of "two recitations," without other modifiers, typically means at least two recitations, or two or more recitations), etc.
Application Title: A System with a Reservoir for Perfusion Management

Claims

CLAIMSWhat is claimed is:
1. A device for perfusion management, comprising:
a body portion;
at least one extensible finger coupled to said body portion;
at least one reservoir in communication with said extensible finger; and
a control circuitry coupled to said extensible finger, or said body portion.
2. The device for perfusion management according to claim 1, further comprising a device for data gathering, data processing, data storage, or data transmission.
3. The device for perfusion management according to claim 1, further comprising an imager, a pressure sensor, a temperature sensor, a chemical sensor, a gas sensor, an electrolyte sensor, a composition sensor, a concentration sensor, or a flow sensor coupled to said extensible finger.
4. The device for perfusion management according to claim 1, further comprising a pump, or a source of pressure coupled to said extensible finger.
5. The device for perfusion management according to claim 1, further comprising a motor or an actuator coupled to said extensible finger.
6. The device for perfusion management according to claim 1, further comprising a wireless data transmitter, coupled to said extensible finger or said control circuitry.
Application Title: A System with a Reservoir for Perfusion Management
7. The device for perfusion management according to claim 1, further comprising a wireless data receiver, or a wireless data controller coupled to said extensible finger or said control circuit.
8. The device according to claim 1, wherein said at least one extensible finger is coupled to a source of a chemical, a chemical compound, a protein, a lipoprotein, a glycoprotein, a sugar, a lipid, an antigen, an antibody, a cytokine, a peptide, a neurotransmitter, a hormone, an ion, a messenger molecule, a nucleic acid, an engineered nucleic acid, a nucleic acid vector, a drug, a cell, a cell fragment, a cell organelle, a liposome, a pharmaceutical agent, a biological material, or a biological fraction internal or external to said reservoir.
9. The device according to claim 1, wherein said at least one extensible finger is coupled to a source of two or more of a chemical, a chemical compound, a protein, a lipoprotein, a glycoprotein, a sugar, a lipid, an antigen, an antibody, a cytokine, a peptide, a neurotransmitter, a hormone, an ion, a messenger molecule, a nucleic acid, an engineered nucleic acid, a nucleic acid vector, a drag, a cell, a cell fragment, a cell organelle, a liposome, a pharmaceutical agent, a biological material, or a biological fraction internal or external to said reservoir.
10. The device for perfusion management according to claim 1, further comprising an operative tool in communication with said extensible finger.
11. The device for perfusion management according to claim 10, wherein said operative tool comprises a tool positioner.
12. The device for perfusion management according to claim 10, wherein said operative tool comprises a device for ablating, or a device for degrading or liquefying a cell, a mass of cells, a tissue, or an assembly of biological materials exhibiting shear strength.
Application Title: A System with a Reservoir for Perfusion Management
13. The device for perfusion management according to claim 10, wherein said control circuitry is operative to guide said operative tool.
14. The device for perfusion management according to claim 1, wherein said extensible finger includes a source of an electric charge or electromagnetic radiation coupled or carried by said extensible finger.
15. The device for perfusion management according to claim 1, wherein said extensible finger includes a plurality of telescoping segments.
16. The device for perfusion management according to claim 15, wherein said plurality of telescoping segments is hollow.
17. The device for perfusion management according to claim 1, wherein said extensible finger further comprises a device for fully or partially blocking or shunting a hquid flow.
18. The device for perfusion management according to claim 1, further comprising a device for evacuating a target coupled to said extensible finger.
19. The device for perfusion management according to claim 1, further comprising a device for cauterizing or sealing a cell, a mass of cells, a tissue, or an assembly of biological materials exhibiting shear strength carried by said extensible finger.
20. The device for perfusion management according to claim 1, further comprising a fluid dispenser operative to provide a fluid at a controlled rate.
21. The device for perfusion management according to claim 20, wherein said fluid dispenser is carried by said extensible finger.
22. The device for perfusion management according to claim 1, wherein said extensible finger comprises a stent.
Application Title: A System with a Reservoir for Perfusion Management
23. The device for perfusion management according to claim 1, wherein said control circuitry is coupled to control said extensible finger.
24. The device for perfusion management according to claim 1, wherein said control circuitry is operative to guide said extensible finger.
25. The device for perfusion management according to claim 1, wherein said control circuitry comprises a processor, a feedback circuit, or a logic circuit.
26. The device for perfusion management according to claim 1 , wherein said control circuitry is a processor further comprising a stored software or firmware program cooperative with said processor.
27. The device according to claim 1, wherein said device is of a size, a composition, a power dissipation level, or a shape configured for full or partial placement in vivo.
28. The device for perfusion management according to claim 1, wherein said device is configured for implantation in an animal.
29. The device for perfusion management according to claim 28, wherein said animal is human.
30. The device for perfusion management according to claim 29, wherein said device is configured for placement in a selected location in said human corresponding to at least one physiological variable to be monitored or treated.
31. The device for perfusion management according to claim 30, wherein said selected location is in a circulatory system, an aorta or a vena cava.
Application Title: A System with a Reservoir for Perfusion Management
32. The device for perfusion management according to claim 1, wherein said device is operative to provide or monitor a treatment or a response in a patient.
33. The device for perfusion management according to claim 32, wherein said treatment comprises delivering a medicinal agent, a pharmaceutical agent, a therapeutic device or assembly to a location in said patient.
34. The device for perfusion management according to claim 1, wherein said device communicates exterior to said patient.
Application Title: A System with a Reservoir for Perfusion Management
35. A method of fabricating a perfusion management device, comprising: forming a cavity for storing a receivable;
coupling a flexible conduit to said cavity, the conduit being configured to extend from said cavity to a target location in an animal's body; and
coupling said flexible conduit and said cavity to a monitoring system, said monitoring system including logic or software configured for directing said receivable from said cavity to said target location.
36. The method as in claim 35, comprising the step of configuring said device for implantation in proximity to said target location.
37. The method as in claim 35, comprising the step of configuring said device for providing or monitoring a treatment or a response in a patient.
38. The method for perfusion management according to claim 35, including coupling an imager, a pressure sensor, a temperature sensor, a chemical sensor, a gas sensor, an electrolyte sensor, a flow sensor, a concentration sensor, a composition sensor, or a flow regulator to said monitoring system.
39. The method for perfusion management according to claim 35, further including coupling a pump, a motor, a vacuum, a siphon, or an evacuation device to said monitoring system.
40. The method for perfusion management according to claim 35, further including coupling an actuator, a tool positioner, an ablator, a cauterizer, or a sealer to said monitoring system.
41. The method for perfusion management according to claim 35, comprising the step of placing a source of a chemical, a chemical compound, a protein, a lipoprotein, a
Application Title: A System with a Reservoir for Perfusion Management glycoprotein, a sugar, a lipid, an antigen, an antibody, a cytokine, a peptide, a neurotransmitter, a hormone, an ion, a messenger molecule, a nucleic acid, an engineered nucleic acid, a nucleic acid vector, a drug, a cell, a cell fragment, a cell organelle, a liposome, a pharmaceutical agent, a biological material, or a biological fraction internal or external to said cavity.
42. The method for perfusion management according to claim 35, comprising the step of placing a source of two or more of a chemical, a chemical compound, a protein, a lipoprotein, a glycoprotein, a sugar, a lipid, an antigen, an antibody, a cytokine, a peptide, a neurotransmitter, a hormone, an ion, a messenger molecule, a nucleic acid, an engineered nucleic acid, a nucleic acid vector, a drug, a cell, a cell fragment, a cell organelle, a liposome, a pharmaceutical agent, a biological material, or a biological fraction internal or external to said cavity.
43. The method for perfusion management according to claim 35, comprising the step of coupling or carrying a source of an electrical charge or electromagnetic radiation to said flexible conduit
44. The method for perfusion management according to claim 35, wherein said monitoring system comprises a processor, a feedback circuit, or a logic circuit.
45. The method for perfusion management according to claim 35, wherein said monitoring system is a processor further comprising a stored software program cooperative with said processor.
46. The method for perfusion management according to claim 35, wherein said monitoring system communicates wirelessly.
Application Title: A System with a Reservoir for Perfusion Management
47. A method for perfusion management, comprising:
storing a receivable in an implanted storage medium;
extending a flexible conduit between said storage medium and a target location; and
transmitting said receivable from said storage medium to said target location.
48. The method for perfusion management according to claim 47, comprising the step of gathering, processing, storing or fransrmtting data.
49. The method for perfusion management according to claim 47, further comprising the step of imaging, or detecting a level of pressure, temperature, chemical, gas, electrolyte, composition, concentration, or flow.
50. The method for perfusion management according to claim 47, comprising the step of delivering chemicals, chemical compounds, proteins, lipoproteins, glycoproteins, sugars, lipids, antigens, antibodies, cytokines, peptides, neurotransmitters, hormones, ions, messenger molecules, nucleic acids, engineered nucleic acids, nucleic acid vectors, drugs, cells, cell fragments, cell organelles, liposomes, pharmaceutical agents, biological materials, or biological fractions internal or external to said storage medium.
51. The method for perfusion management according to claim 47, comprising the step of performing one or more operations or actions.
52. The method for perfusion management according to claim 47, comprising the step of positioning tools.
53. The method for perfusion management according to claim 47, comprising the step of fully or partially blocking or shunting a liquid flow.
Application Title: A System with a Reservoir for Perfusion Management
54. The method for perfusion management according to claim 47, comprising the step of ablating, degrading, or liquefying a cell, a mass of cells, a tissue, or an assembly of biological materials exhibiting shear strength.
55. The method for perfusion management according to claim 47, comprising the step of capturing a cell, a tissue, a fluid, a gel, a sample, a colloid, and emulsion, a debris, a contaminant, or a biological material.
56. The method for perfusion management according to claim 47, comprising the step of sampling a cell, a mass of cells, a tissue, or an assembly of biological materials exhibiting shear strength.
57. The method for perfusion management according to claim 47, comprising the step of cauterizing or sealing a cell, amass of cells, a tissue, or an assembly of biological materials exhibiting shear strength.
58. The method for perfusion management according to claim 47, comprising the step of dispensing a fluid at a controlled rate.
59. The method for perfusion management according to claim 47, comprising the step of controlling or guiding said extensible finger.
60. The method for perfusion management according to claim 47, further comprising the step of placing said device fully or partially in vivo.
61. The method for perfusion management according to claim 47, comprising configuring said device for implantation in an animal.
62. The method for perfusion management according to claim 61, wherein said animal is human.
Application Title: A System with a Reservoir for Perfusion Management
63. The method for perfusion management according to claim 62, further comprising configuring said device for placement in a selected location in said human.
64. The method for perfusion management according to claim 63, wherein said selected location is in a circulatory system, an aorta or in a vena cava.
65. The method for perfusion management according to claim 47, comprising the step of releasing an electric current or an electromagnetic radiation in proximity to a cell, a tissue, or an assembly of biological materials exhibiting shear strength.
Application Title: A System with a Reservoir for Perfusion Management
PCT/US2005/013348 2004-04-19 2005-04-19 A system with a reservoir for perfusion management WO2005102410A2 (en)

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US10/827,390 2004-04-19
US10/827,578 2004-04-19
US10/827,572 2004-04-19
US10/827,576 US8337482B2 (en) 2004-04-19 2004-04-19 System for perfusion management
US10/827,572 US7850676B2 (en) 2004-04-19 2004-04-19 System with a reservoir for perfusion management
US10/827,390 US8361013B2 (en) 2004-04-19 2004-04-19 Telescoping perfusion management system
US10/827,578 US20050234440A1 (en) 2004-04-19 2004-04-19 System with a sensor for perfusion management
US10/827,576 2004-04-19

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Families Citing this family (34)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8337482B2 (en) * 2004-04-19 2012-12-25 The Invention Science Fund I, Llc System for perfusion management
US7615050B2 (en) * 2005-06-27 2009-11-10 Boston Scientific Scimed, Inc. Systems and methods for creating a lesion using transjugular approach
US20080058786A1 (en) * 2006-04-12 2008-03-06 Searete Llc, A Limited Liability Corporation Of The State Of Delaware Autofluorescent imaging and target ablation
US8145295B2 (en) * 2006-04-12 2012-03-27 The Invention Science Fund I, Llc Methods and systems for untethered autofluorescent imaging, target ablation, and movement of untethered device in a lumen
US8303573B2 (en) * 2007-10-17 2012-11-06 The Invention Science Fund I, Llc Medical or veterinary digestive tract utilization systems and methods
US8789536B2 (en) * 2007-10-17 2014-07-29 The Invention Science Fund I, Llc Medical or veterinary digestive tract utilization systems and methods
US8707964B2 (en) * 2007-10-31 2014-04-29 The Invention Science Fund I, Llc Medical or veterinary digestive tract utilization systems and methods
US20090105561A1 (en) * 2007-10-17 2009-04-23 Searete Llc, A Limited Liability Corporation Of The State Of Delaware Medical or veterinary digestive tract utilization systems and methods
US8808276B2 (en) * 2007-10-23 2014-08-19 The Invention Science Fund I, Llc Adaptive dispensation in a digestive tract
US8808271B2 (en) * 2007-10-31 2014-08-19 The Invention Science Fund I, Llc Medical or veterinary digestive tract utilization systems and methods
US8333754B2 (en) 2007-10-31 2012-12-18 The Invention Science Fund I, Llc Medical or veterinary digestive tract utilization systems and methods
US20090163894A1 (en) * 2007-10-31 2009-06-25 Searete Llc, A Limited Liability Corporation Of The State Of Delaware Medical or veterinary digestive tract utilization systems and methods
US20090137866A1 (en) * 2007-11-28 2009-05-28 Searete Llc, A Limited Liability Corporation Of The State Delaware Medical or veterinary digestive tract utilization systems and methods
US8636670B2 (en) 2008-05-13 2014-01-28 The Invention Science Fund I, Llc Circulatory monitoring systems and methods
US9717896B2 (en) 2007-12-18 2017-08-01 Gearbox, Llc Treatment indications informed by a priori implant information
US20090287120A1 (en) 2007-12-18 2009-11-19 Searete Llc, A Limited Liability Corporation Of The State Of Delaware Circulatory monitoring systems and methods
US8397578B2 (en) 2010-06-03 2013-03-19 Medtronic, Inc. Capacitive pressure sensor assembly
US9737657B2 (en) 2010-06-03 2017-08-22 Medtronic, Inc. Implantable medical pump with pressure sensor
WO2012051278A1 (en) 2010-10-12 2012-04-19 Tanis Kevin J Medical device
US9737649B2 (en) 2013-03-14 2017-08-22 Smith & Nephew, Inc. Systems and methods for applying reduced pressure therapy
EP3119448B1 (en) 2014-03-21 2020-04-22 University of Pittsburgh- Of the Commonwealth System of Higher Education Methods for preparation of a terminally sterilized hydrogel derived from extracellular matrix
KR102203928B1 (en) 2015-03-17 2021-01-18 한국전자통신연구원 Method for detecting position of micro robot using ultra wiide band impulse radar and therefore device
US11315681B2 (en) 2015-10-07 2022-04-26 Smith & Nephew, Inc. Reduced pressure therapy device operation and authorization monitoring
WO2017085624A1 (en) 2015-11-20 2017-05-26 Advanced Microfluidics Sa Micropump
CA3011294A1 (en) 2016-01-13 2017-07-20 University Of Pittsburgh - Of The Commonwealth System Of Higher Education Vascular extracellular matrix hydrogel
AU2017261814B2 (en) 2016-05-13 2022-05-19 Smith & Nephew, Inc. Automatic wound coupling detection in negative pressure wound therapy systems
JP7063887B2 (en) 2016-09-29 2022-05-09 スミス アンド ネフュー インコーポレイテッド Construction and protection of components in negative pressure wound healing systems
US11712508B2 (en) 2017-07-10 2023-08-01 Smith & Nephew, Inc. Systems and methods for directly interacting with communications module of wound therapy apparatus
CN111432860B (en) 2017-12-08 2023-08-08 坦德姆糖尿病护理瑞士有限责任公司 Drug delivery device
GB201820668D0 (en) 2018-12-19 2019-01-30 Smith & Nephew Inc Systems and methods for delivering prescribed wound therapy
US11241530B1 (en) 2020-11-23 2022-02-08 Amf Medical Sa Insulin patch pump having photoplethysmography module
US11529460B1 (en) 2021-06-01 2022-12-20 Amf Medical Sa Systems and methods for delivering microdoses of medication
US11857757B2 (en) 2021-06-01 2024-01-02 Tandem Diabetes Care Switzerland Sàrl Systems and methods for delivering microdoses of medication
US11679199B2 (en) 2021-06-01 2023-06-20 Amf Medical Sa Systems and methods for delivering microdoses of medication

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6295990B1 (en) * 1998-02-03 2001-10-02 Salient Interventional Systems, Inc. Methods and systems for treating ischemia

Family Cites Families (428)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3391697A (en) 1965-09-20 1968-07-09 Medtronic Inc Runaway inhibited pacemaker
US3802417A (en) * 1968-12-21 1974-04-09 V Lang Device for combined monitoring and stimulation of respiration
US3837339A (en) 1972-02-03 1974-09-24 Whittaker Corp Blood glucose level monitoring-alarm system and method therefor
US3821469A (en) 1972-05-15 1974-06-28 Amperex Electronic Corp Graphical data device
US4119900A (en) 1973-12-21 1978-10-10 Ito Patent-Ag Method and system for the automatic orientation and control of a robot
US3941127A (en) * 1974-10-03 1976-03-02 Froning Edward C Apparatus and method for stereotaxic lateral extradural disc puncture
US3983474A (en) 1975-02-21 1976-09-28 Polhemus Navigation Sciences, Inc. Tracking and determining orientation of object using coordinate transformation means, system and process
US4054881A (en) 1976-04-26 1977-10-18 The Austin Company Remote object position locater
DE2718804C3 (en) * 1977-04-27 1979-10-31 Karlheinz Prof. Dr. 3000 Hannover Renner Device for positioning control of patients and / or radiation sources
DE7805301U1 (en) 1978-02-22 1978-07-06 Howmedica International, Inc. Zweigniederlassung Kiel, 2300 Kiel Distal aiming device for locking nailing
US4202349A (en) 1978-04-24 1980-05-13 Jones James W Radiopaque vessel markers
FR2458838A1 (en) 1979-06-06 1981-01-02 Thomson Csf DEVICE FOR MEASURING THE RELATIVE ORIENTATION OF TWO BODIES AND CORRESPONDING STEERING SYSTEM
US4314251A (en) * 1979-07-30 1982-02-02 The Austin Company Remote object position and orientation locater
US4267831A (en) 1979-09-24 1981-05-19 Aguilar Rogelio M Nasal air filter and medicament dispenser device
US4317078A (en) * 1979-10-15 1982-02-23 Ohio State University Research Foundation Remote position and orientation detection employing magnetic flux linkage
DE3022497A1 (en) 1980-06-14 1981-12-24 Philips Patentverwaltung Gmbh, 2000 Hamburg COUPLE AREA
US4339953A (en) 1980-08-29 1982-07-20 Aisin Seiki Company, Ltd. Position sensor
US4638798A (en) * 1980-09-10 1987-01-27 Shelden C Hunter Stereotactic method and apparatus for locating and treating or removing lesions
US4367741A (en) * 1980-12-22 1983-01-11 Alza Corporation Dispenser powered by cross-linked hydrophilic polymer grafted to hydrophilic polymer
US4431005A (en) * 1981-05-07 1984-02-14 Mccormick Laboratories, Inc. Method of and apparatus for determining very accurately the position of a device inside biological tissue
US4583190A (en) * 1982-04-21 1986-04-15 Neuroscience, Inc. Microcomputer based system for performing fast Fourier transforms
US4771772A (en) 1982-08-09 1988-09-20 Medtronic, Inc. Robotic implantable medical device and/or component restoration system
US4628928A (en) 1982-08-09 1986-12-16 Medtronic, Inc. Robotic implantable medical device and/or component restoration system
US4658214A (en) 1982-12-28 1987-04-14 Polaroid Corporation Magnetic position indicator using multiple probes
US4651732A (en) * 1983-03-17 1987-03-24 Frederick Philip R Three-dimensional light guidance system for invasive procedures
US4714460A (en) 1983-07-29 1987-12-22 Reynaldo Calderon Methods and systems for retrograde perfusion in the body for curing it of the disease or immume deficiency
US4800898A (en) * 1983-10-07 1989-01-31 Cordis Corporation Neural stimulator electrode element and lead
US4642786A (en) * 1984-05-25 1987-02-10 Position Orientation Systems, Ltd. Method and apparatus for position and orientation measurement using a magnetic field and retransmission
US4889526A (en) 1984-08-27 1989-12-26 Magtech Laboratories, Inc. Non-invasive method and apparatus for modulating brain signals through an external magnetic or electric field to reduce pain
CA1254091A (en) 1984-09-28 1989-05-16 Vladimir Feingold Implantable medication infusion system
US4585652A (en) 1984-11-19 1986-04-29 Regents Of The University Of Minnesota Electrochemical controlled release drug delivery system
US4817601A (en) 1985-03-06 1989-04-04 C. R. Bard, Inc. Catheter system for controlled removal by radiant energy of biological obstructions
GR851148B (en) * 1985-05-13 1985-05-22 Papantonakos Apostolos
US4769006A (en) 1985-05-13 1988-09-06 Kos Medical Technologies, Ltd. Hydrodynamically propelled pacing catheter
US4805615A (en) * 1985-07-02 1989-02-21 Carol Mark P Method and apparatus for performing stereotactic surgery
US4750488A (en) 1986-05-19 1988-06-14 Sonomed Technology, Inc. Vibration apparatus preferably for endoscopic ultrasonic aspirator
EP0239409A1 (en) 1986-03-28 1987-09-30 Life Technology Research Foundation Robot for surgical operation
US5078140A (en) * 1986-05-08 1992-01-07 Kwoh Yik S Imaging device - aided robotic stereotaxis system
US5019372A (en) 1986-06-27 1991-05-28 The Children's Medical Center Corporation Magnetically modulated polymeric drug release system
US4763667A (en) 1986-09-19 1988-08-16 Microvasive, Inc. Tissue-penetrating catheter device
GB8701731D0 (en) * 1987-01-27 1987-03-04 Patcentre Benelux Nv Sa Pumps
US4733661A (en) * 1987-04-27 1988-03-29 Palestrant Aubrey M Guidance device for C.T. guided drainage and biopsy procedures
US4854315A (en) * 1987-06-25 1989-08-08 Stack Richard S Laser catheter
US4795434A (en) * 1987-09-10 1989-01-03 C. R. Bard, Inc. Apparatus for positioning a sensor in vivo
FR2624633B1 (en) 1987-12-14 1992-09-11 Sgs Thomson Microelectronics ROBOT PROGRAMMING SYSTEM
US4962453A (en) 1989-02-07 1990-10-09 Transitions Research Corporation Autonomous vehicle for working on a surface and method of controlling same
US5153827A (en) 1989-01-30 1992-10-06 Omni-Flow, Inc. An infusion management and pumping system having an alarm handling system
US4994071A (en) * 1989-05-22 1991-02-19 Cordis Corporation Bifurcating stent apparatus and method
US5051906A (en) 1989-06-07 1991-09-24 Transitions Research Corporation Mobile robot navigation employing retroreflective ceiling features
US5176638A (en) * 1990-01-12 1993-01-05 Don Michael T Anthony Regional perfusion catheter with improved drug delivery control
US5236413B1 (en) 1990-05-07 1996-06-18 Andrew J Feiring Method and apparatus for inducing the permeation of medication into internal tissue
US5086401A (en) * 1990-05-11 1992-02-04 International Business Machines Corporation Image-directed robotic system for precise robotic surgery including redundant consistency checking
US5261892A (en) * 1990-07-25 1993-11-16 Abbott Laboratories Sensor delivery device
US5204814A (en) 1990-11-13 1993-04-20 Mobot, Inc. Autonomous lawn mower
US5188111A (en) * 1991-01-18 1993-02-23 Catheter Research, Inc. Device for seeking an area of interest within a body
US5269303A (en) 1991-02-22 1993-12-14 Cyberonics, Inc. Treatment of dementia by nerve stimulation
US5165064A (en) 1991-03-22 1992-11-17 Cyberotics, Inc. Mobile robot guidance and navigation system
US5335657A (en) 1991-05-03 1994-08-09 Cyberonics, Inc. Therapeutic treatment of sleep disorder by nerve stimulation
CA2042075C (en) 1991-05-08 2001-01-23 Branko Palcic Endoscopic imaging system
US5279607A (en) * 1991-05-30 1994-01-18 The State University Of New York Telemetry capsule and process
US5321614A (en) 1991-06-06 1994-06-14 Ashworth Guy T D Navigational control apparatus and method for autonomus vehicles
US5688269A (en) 1991-07-10 1997-11-18 Electroscope, Inc. Electrosurgical apparatus for laparoscopic and like procedures
US5366504A (en) 1992-05-20 1994-11-22 Boston Scientific Corporation Tubular medical prosthesis
US5234457A (en) 1991-10-09 1993-08-10 Boston Scientific Corporation Impregnated stent
SG72641A1 (en) * 1991-11-05 2000-05-23 Seiko Epson Corp Micro robot
US5339051A (en) 1991-12-09 1994-08-16 Sandia Corporation Micro-machined resonator oscillator
US5313835A (en) 1991-12-19 1994-05-24 Motorola, Inc. Integrated monolithic gyroscopes/accelerometers with logic circuits
US5437660A (en) 1991-12-30 1995-08-01 Trimedyne, Inc. Tissue ablation and a lateral-lasing fiber optic device therefor
US6770071B2 (en) 1995-06-07 2004-08-03 Arthrocare Corporation Bladed electrosurgical probe
US6296638B1 (en) * 1993-05-10 2001-10-02 Arthrocare Corporation Systems for tissue ablation and aspiration
US6963792B1 (en) 1992-01-21 2005-11-08 Sri International Surgical method
CA2087132A1 (en) * 1992-01-31 1993-08-01 Michael S. Williams Stent capable of attachment within a body lumen
US5502638A (en) * 1992-02-10 1996-03-26 Honda Giken Kogyo Kabushiki Kaisha System for obstacle avoidance path planning for multiple-degree-of-freedom mechanism
JP2745933B2 (en) * 1992-02-17 1998-04-28 日本電気株式会社 TAB-Integrated Circuit
US5599352A (en) 1992-03-19 1997-02-04 Medtronic, Inc. Method of making a drug eluting stent
WO1995014500A1 (en) * 1992-05-01 1995-06-01 Beth Israel Hospital A stent
US5310404A (en) 1992-06-01 1994-05-10 Alza Corporation Iontophoretic delivery device and method of hydrating same
US5338625A (en) 1992-07-29 1994-08-16 Martin Marietta Energy Systems, Inc. Thin film battery and method for making same
EP0580928A1 (en) 1992-07-31 1994-02-02 ARIES S.r.l. A spinal electrode catheter
US5306294A (en) 1992-08-05 1994-04-26 Ultrasonic Sensing And Monitoring Systems, Inc. Stent construction of rolled configuration
US5337732A (en) 1992-09-16 1994-08-16 Cedars-Sinai Medical Center Robotic endoscopy
US5662587A (en) 1992-09-16 1997-09-02 Cedars Sinai Medical Center Robotic endoscopy
DE4239987C2 (en) 1992-11-27 1996-07-11 Siemens Ag Self-moving unit for movement between opposing wall surfaces
US5353807A (en) 1992-12-07 1994-10-11 Demarco Thomas J Magnetically guidable intubation device
US5314451A (en) 1993-01-15 1994-05-24 Medtronic, Inc. Replaceable battery for implantable medical device
US5381786A (en) * 1993-02-11 1995-01-17 Wayne State University Method and apparatus for measurement of luminal dimensions
US5403311A (en) 1993-03-29 1995-04-04 Boston Scientific Corporation Electro-coagulation and ablation and other electrotherapeutic treatments of body tissue
US5873835A (en) * 1993-04-29 1999-02-23 Scimed Life Systems, Inc. Intravascular pressure and flow sensor
US5670329A (en) 1993-05-28 1997-09-23 Cardiovascular Diagnostics, Inc. Method and analytical system for performing fibrinogen assays accurately, rapidly and simply using a rotating magnetic field
WO1994030030A1 (en) 1993-06-04 1994-12-22 The Regents Of The University Of California Microfabricated acoustic source and receiver
US5728089A (en) * 1993-06-04 1998-03-17 The Regents Of The University Of California Microfabricated structure to be used in surgery
US5386741A (en) * 1993-06-07 1995-02-07 Rennex; Brian G. Robotic snake
DE4319812C1 (en) 1993-06-15 1995-02-09 Zurbruegg Heinz R Implantable ultrasound probe for measuring the flow rate of blood in humans and animals
US5497147A (en) * 1993-06-21 1996-03-05 Microstrain, Company Differential variable reluctance transducer
DE69432148T2 (en) 1993-07-01 2003-10-16 Boston Scient Ltd CATHETER FOR IMAGE DISPLAY, DISPLAY OF ELECTRICAL SIGNALS AND ABLATION
US5921982A (en) 1993-07-30 1999-07-13 Lesh; Michael D. Systems and methods for ablating body tissue
US5807395A (en) 1993-08-27 1998-09-15 Medtronic, Inc. Method and apparatus for RF ablation and hyperthermia
US5398670A (en) * 1993-08-31 1995-03-21 Ethicon, Inc. Lumen traversing device
US5476450A (en) 1993-11-04 1995-12-19 Ruggio; Joseph M. Apparatus and method for aspirating intravascular, pulmonary and cardiac obstructions
ZA95260B (en) 1994-01-13 1995-09-28 Univ Columbia Synthetic receptors libraries and uses thereof
US6797522B1 (en) 1994-01-13 2004-09-28 The Trustees Of Columbia University In The City Of New York Synthetic receptors
SE9400088D0 (en) 1994-01-14 1994-01-14 Kabi Pharmacia Ab Bacterial receptor structures
IL108352A (en) * 1994-01-17 2000-02-29 Given Imaging Ltd In vivo video camera system
US6102845A (en) 1994-02-07 2000-08-15 Baxter International Inc. Ventricular assist device with minimal blood contacting surfaces
US5531679A (en) * 1994-03-14 1996-07-02 Schulman; Joseph H. Fluidic infusion system for catheter or probe
DE4408982C1 (en) 1994-03-16 1995-05-18 Deutsche Forsch Luft Raumfahrt Autonomous navigation system for mobile robot or manipulator
US5819736A (en) 1994-03-24 1998-10-13 Sightline Technologies Ltd. Viewing method and apparatus particularly useful for viewing the interior of the large intestine
US5590660A (en) 1994-03-28 1997-01-07 Xillix Technologies Corp. Apparatus and method for imaging diseased tissue using integrated autofluorescence
US5591139A (en) * 1994-06-06 1997-01-07 The Regents Of The University Of California IC-processed microneedles
ES2340142T3 (en) * 1994-07-08 2010-05-31 Ev3 Inc. SYSTEM TO CARRY OUT AN INTRAVASCULAR PROCEDURE.
US5695457A (en) 1994-07-28 1997-12-09 Heartport, Inc. Cardioplegia catheter system
US5908027A (en) 1994-08-22 1999-06-01 Alaris Medical Systems, Inc. Tonometry system for monitoring blood pressure
WO1996013285A1 (en) 1994-10-28 1996-05-09 Innovative Technologies Limited Dehydrated hydrogels
US5551953A (en) 1994-10-31 1996-09-03 Alza Corporation Electrotransport system with remote telemetry link
US5835684A (en) 1994-11-09 1998-11-10 Amada Company, Ltd. Method for planning/controlling robot motion
US5643296A (en) 1994-12-16 1997-07-01 Devices For Vasclar Intervention Intravascular catheter with guiding structure
US5632754A (en) 1994-12-23 1997-05-27 Devices For Vascular Intervention Universal catheter with interchangeable work element
US7027134B1 (en) 1995-02-08 2006-04-11 University Of South Florida Spectrophotometric system and method for the identification and characterization of a particle in a bodily fluid
US5589932A (en) 1995-02-08 1996-12-31 University Of South Florida Spectrophotometric method and apparatus for the characterization of blood and blood types
US5964773A (en) 1995-02-15 1999-10-12 Automated Medical Products, Inc. Laparascopic suturing device and suture needles
US5643246A (en) 1995-02-24 1997-07-01 Gel Sciences, Inc. Electromagnetically triggered, responsive gel based drug delivery device
US5735276A (en) 1995-03-21 1998-04-07 Lemelson; Jerome Method and apparatus for scanning and evaluating matter
US5599324A (en) * 1995-05-04 1997-02-04 Boston Scientific Corporation Catheter for administering a liquid agent
US6575969B1 (en) 1995-05-04 2003-06-10 Sherwood Services Ag Cool-tip radiofrequency thermosurgery electrode system for tumor ablation
IL113913A (en) 1995-05-30 2000-02-29 Friendly Machines Ltd Navigation method and system
US6255361B1 (en) 1995-11-21 2001-07-03 Acushnet Company Golf ball compositions and method of making same
WO1997008538A1 (en) * 1995-08-24 1997-03-06 Purdue Research Foundation Fluorescence lifetime-based imaging and spectroscopy in tissues and other random media
EP1704878B1 (en) 1995-12-18 2013-04-10 AngioDevice International GmbH Crosslinked polymer compositions and methods for their use
US5683432A (en) 1996-01-11 1997-11-04 Medtronic, Inc. Adaptive, performance-optimizing communication system for communicating with an implanted medical device
US6475639B2 (en) 1996-01-18 2002-11-05 Mohsen Shahinpoor Ionic polymer sensors and actuators
AU733332B2 (en) 1996-02-02 2001-05-10 Transvascular, Inc. Methods and apparatus for blocking flow through blood vessels
US5624398A (en) 1996-02-08 1997-04-29 Symbiosis Corporation Endoscopic robotic surgical tools and methods
US6152899A (en) 1996-03-05 2000-11-28 Vnus Medical Technologies, Inc. Expandable catheter having improved electrode design, and method for applying energy
ATE185006T1 (en) 1996-03-06 1999-10-15 Gmd Gmbh AUTONOMOUS MOBILE ROBOT SYSTEM FOR SENSOR AND CARD-BASED NAVIGATION IN A LINE NETWORK
US5833603A (en) 1996-03-13 1998-11-10 Lipomatrix, Inc. Implantable biosensing transponder
US6453199B1 (en) 1996-04-01 2002-09-17 Valery Ivanovich Kobozev Electrical gastro-intestinal tract stimulator
US5830179A (en) 1996-04-09 1998-11-03 Endocare, Inc. Urological stent therapy system and method
US5800421A (en) 1996-06-12 1998-09-01 Lemelson; Jerome H. Medical devices using electrosensitive gels
US5782798A (en) 1996-06-26 1998-07-21 Medtronic, Inc. Techniques for treating eating disorders by brain stimulation and drug infusion
US5737279A (en) 1996-08-07 1998-04-07 The United States Of America As Represented By The Secretary Of The Navy Retractable sensor array system
DE69727817T2 (en) 1996-09-05 2005-01-05 Children's Medical Center Corp., Boston Kidney prosthesis and its use for treating kidney disease
US5702432A (en) 1996-10-03 1997-12-30 Light Sciences Limited Partnership Intracorporeal light treatment of blood
US6058323A (en) 1996-11-05 2000-05-02 Lemelson; Jerome System and method for treating select tissue in a living being
US6197013B1 (en) * 1996-11-06 2001-03-06 Setagon, Inc. Method and apparatus for drug and gene delivery
US5854078A (en) * 1996-11-06 1998-12-29 University Of Pittsburgh Polymerized crystalline colloidal array sensor methods
US6019729A (en) * 1996-11-15 2000-02-01 Kabushiki Kaisha Tokai-Rika-Denki-Seisakusho Sensor mechanism-equipped catheter
US6410046B1 (en) 1996-11-19 2002-06-25 Intrabrain International Nv Administering pharmaceuticals to the mammalian central nervous system
US5902282A (en) * 1996-12-26 1999-05-11 Johnson & Johnson Medical, Inc. Step-down catheter
EP0904009B1 (en) 1997-01-03 2003-09-10 Biosense, Inc. Pressure-sensing stent
US5705293A (en) * 1997-01-09 1998-01-06 Lockheed Martin Energy Research Corporation Solid state thin film battery having a high temperature lithium alloy anode
US5737379A (en) * 1997-02-21 1998-04-07 General Electric Company Reactor core shroud repair using thermally tensioned ring to apply compression across shroud vertical seam welds
US6695885B2 (en) 1997-02-26 2004-02-24 Alfred E. Mann Foundation For Scientific Research Method and apparatus for coupling an implantable stimulator/sensor to a prosthetic device
US6164284A (en) 1997-02-26 2000-12-26 Schulman; Joseph H. System of implantable devices for monitoring and/or affecting body parameters
WO1998037926A1 (en) * 1997-02-26 1998-09-03 Alfred E. Mann Foundation For Scientific Research Battery-powered patient implantable device
US6111520A (en) 1997-04-18 2000-08-29 Georgia Tech Research Corp. System and method for the wireless sensing of physical properties
JP4090079B2 (en) 1997-05-07 2008-05-28 コンピュメディクス・リミテッド Control of gas or drug delivery to the patient
US6280386B1 (en) 1997-06-16 2001-08-28 The Research Foundation Of The City University Of New York Apparatus for enhancing the visibility of a luminous object inside tissue and methods for same
KR100367144B1 (en) 1997-07-02 2003-01-14 유로-셀티크 소시에떼 아노뉨 prolonged anesthesia in joints and body spaces
US5954675A (en) 1997-07-07 1999-09-21 Dellagatta; Enrico Michael Method of ultrasonic therapy
US6500174B1 (en) 1997-07-08 2002-12-31 Atrionix, Inc. Circumferential ablation device assembly and methods of use and manufacture providing an ablative circumferential band along an expandable member
US6086528A (en) * 1997-09-11 2000-07-11 Adair; Edwin L. Surgical devices with removable imaging capability and methods of employing same
US6226548B1 (en) 1997-09-24 2001-05-01 Surgical Navigation Technologies, Inc. Percutaneous registration apparatus and method for use in computer-assisted surgical navigation
US6585763B1 (en) 1997-10-14 2003-07-01 Vascusense, Inc. Implantable therapeutic device and method
US6409674B1 (en) 1998-09-24 2002-06-25 Data Sciences International, Inc. Implantable sensor with wireless communication
US6240312B1 (en) 1997-10-23 2001-05-29 Robert R. Alfano Remote-controllable, micro-scale device for use in in vivo medical diagnosis and/or treatment
US5908435A (en) 1997-10-23 1999-06-01 Samuels; Shaun L. W. Expandable lumen device and method of use
US6016449A (en) 1997-10-27 2000-01-18 Neuropace, Inc. System for treatment of neurological disorders
US6597954B1 (en) 1997-10-27 2003-07-22 Neuropace, Inc. System and method for controlling epileptic seizures with spatially separated detection and stimulation electrodes
US5947119A (en) 1997-10-31 1999-09-07 Reznick; Jerald M. Therapeutic process and apparatus for nasal passages
EP1037687B8 (en) 1997-12-11 2008-10-22 Alza Corporation Device for enhancing transdermal agent flux
US6186986B1 (en) * 1998-01-21 2001-02-13 St. Jude Medical Cardiovascular Group, Inc. Micro-catheters and methods of their manufacture
US6261312B1 (en) 1998-06-23 2001-07-17 Innercool Therapies, Inc. Inflatable catheter for selective organ heating and cooling and method of using the same
US6843800B1 (en) 1998-01-23 2005-01-18 Innercool Therapies, Inc. Patient temperature regulation method and apparatus
US6175757B1 (en) * 1998-02-02 2001-01-16 General Electric Company Luminal mapping
US6676637B1 (en) 1998-02-06 2004-01-13 Possis Medical, Inc. Single operator exchange fluid jet thrombectomy method
US6045551A (en) 1998-02-06 2000-04-04 Bonutti; Peter M. Bone suture
US6022316A (en) * 1998-03-06 2000-02-08 Spectrx, Inc. Apparatus and method for electroporation of microporated tissue for enhancing flux rates for monitoring and delivery applications
US6278379B1 (en) 1998-04-02 2001-08-21 Georgia Tech Research Corporation System, method, and sensors for sensing physical properties
US6219577B1 (en) 1998-04-14 2001-04-17 Global Vascular Concepts, Inc. Iontophoresis, electroporation and combination catheters for local drug delivery to arteries and other body tissues
US6249076B1 (en) 1998-04-14 2001-06-19 Massachusetts Institute Of Technology Conducting polymer actuator
US7647237B2 (en) 1998-04-29 2010-01-12 Minimed, Inc. Communication station and software for interfacing with an infusion pump, analyte monitor, analyte meter, or the like
US6018682A (en) * 1998-04-30 2000-01-25 Medtronic, Inc. Implantable seizure warning system
US6206914B1 (en) 1998-04-30 2001-03-27 Medtronic, Inc. Implantable system with drug-eluting cells for on-demand local drug delivery
DE19822508A1 (en) 1998-05-19 1999-12-02 Daimler Chrysler Ag Method for generating coupling paths, usable for guiding a vehicle to a predetermined target path
US6294281B1 (en) 1998-06-17 2001-09-25 Therasense, Inc. Biological fuel cell and method
US6322532B1 (en) 1998-06-24 2001-11-27 3M Innovative Properties Company Sonophoresis method and apparatus
US6735474B1 (en) 1998-07-06 2004-05-11 Advanced Bionics Corporation Implantable stimulator system and method for treatment of incontinence and pain
US6497714B1 (en) 1998-07-16 2002-12-24 Olympus Optical Co., Ltd. Ultrasonic trocar
US6240316B1 (en) 1998-08-14 2001-05-29 Advanced Bionics Corporation Implantable microstimulation system for treatment of sleep apnea
US6554798B1 (en) 1998-08-18 2003-04-29 Medtronic Minimed, Inc. External infusion device with remote programming, bolus estimator and/or vibration alarm capabilities
US7235096B1 (en) 1998-08-25 2007-06-26 Tricardia, Llc Implantable device for promoting repair of a body lumen
AU770909B2 (en) * 1998-08-26 2004-03-04 Sensors For Medicine And Science, Inc. Optical-based sensing devices
US6385472B1 (en) 1999-09-10 2002-05-07 Stereotaxis, Inc. Magnetically navigable telescoping catheter and method of navigating telescoping catheter
US6358276B1 (en) 1998-09-30 2002-03-19 Impra, Inc. Fluid containing endoluminal stent
US6306926B1 (en) * 1998-10-07 2001-10-23 3M Innovative Properties Company Radiopaque cationically polymerizable compositions comprising a radiopacifying filler, and method for polymerizing same
ID29093A (en) * 1998-10-16 2001-07-26 Lanisco Holdings Ltd DEEP CONVERSION THAT COMBINES DEMETALIZATION AND CONVERSION OF CRUDE OIL, RESIDUES OR HEAVY OILS BECOME LIGHTWEIGHT LIQUID WITH COMPOUNDS OF OXYGENATE PURE OR PURE
US6530950B1 (en) * 1999-01-12 2003-03-11 Quanam Medical Corporation Intraluminal stent having coaxial polymer member
US6314317B1 (en) 1999-02-18 2001-11-06 Biovalve Technologies, Inc. Electroactive pore
US8636648B2 (en) 1999-03-01 2014-01-28 West View Research, Llc Endoscopic smart probe
US6464687B1 (en) 1999-03-09 2002-10-15 Ball Semiconductor, Inc. Implantable drug delivery system
US6170488B1 (en) * 1999-03-24 2001-01-09 The B. F. Goodrich Company Acoustic-based remotely interrogated diagnostic implant device and system
US6436120B1 (en) 1999-04-20 2002-08-20 Allen J. Meglin Vena cava filter
US20050113460A1 (en) 1999-04-30 2005-05-26 The Regents Of The University Of Michigan Compositions and methods relating to novel compounds and targets thereof
US6179789B1 (en) * 1999-05-03 2001-01-30 Lily Chen Tu Enhanced radioactive stent for reduction of restenosis
US6149603A (en) 1999-05-14 2000-11-21 Ventrex, Inc. Method and apparatus for determining whether an intubated patient has been properly intubated
US6743211B1 (en) 1999-11-23 2004-06-01 Georgia Tech Research Corporation Devices and methods for enhanced microneedle penetration of biological barriers
JP3490933B2 (en) 1999-06-07 2004-01-26 ペンタックス株式会社 Swallowable endoscope device
JP3793368B2 (en) 1999-06-07 2006-07-05 ペンタックス株式会社 Swallowing endoscope device
US6464625B2 (en) 1999-06-23 2002-10-15 Robert A. Ganz Therapeutic method and apparatus for debilitating or killing microorganisms within the body
US6512949B1 (en) * 1999-07-12 2003-01-28 Medtronic, Inc. Implantable medical device for measuring time varying physiologic conditions especially edema and for responding thereto
GB2352636B (en) 1999-08-03 2003-05-14 Univ College London Hospitals Improved passage-travelling device
US6263245B1 (en) 1999-08-12 2001-07-17 Pacesetter, Inc. System and method for portable implantable device interogation
CA2381951A1 (en) 1999-08-18 2001-02-22 Microchips, Inc. Thermally-activated microchip chemical delivery devices
US6666860B1 (en) 1999-08-24 2003-12-23 Olympus Optical Co., Ltd. Electric treatment system
US6802811B1 (en) 1999-09-17 2004-10-12 Endoluminal Therapeutics, Inc. Sensing, interrogating, storing, telemetering and responding medical implants
US6440082B1 (en) * 1999-09-30 2002-08-27 Medtronic Physio-Control Manufacturing Corp. Method and apparatus for using heart sounds to determine the presence of a pulse
WO2001024731A1 (en) 1999-10-04 2001-04-12 Tapic International Co., Ltd. Artificial trachea
US6882881B1 (en) 1999-10-19 2005-04-19 The Johns Hopkins University Techniques using heat flow management, stimulation, and signal analysis to treat medical disorders
US6383162B1 (en) 1999-11-12 2002-05-07 Paul H. Sugarbaker Apparatus and method for abdomino-pelvic chemotherapy perfusion and lavage
EP1229901B1 (en) 1999-11-17 2009-03-18 Boston Scientific Limited Microfabricated devices for the delivery of molecules into a carrier fluid
US7195641B2 (en) * 1999-11-19 2007-03-27 Advanced Bio Prosthetic Surfaces, Ltd. Valvular prostheses having metal or pseudometallic construction and methods of manufacture
US6548982B1 (en) 1999-11-19 2003-04-15 Regents Of The University Of Minnesota Miniature robotic vehicles and methods of controlling same
US6673042B1 (en) * 1999-11-22 2004-01-06 Wilfred J. Samson Expandable venous cannula and method of use
US6861001B2 (en) * 1999-12-02 2005-03-01 The General Hospital Corporation Methods for removal, purification, and concentration of viruses, and methods of therapy based thereupon
US6592567B1 (en) 1999-12-07 2003-07-15 Chf Solutions, Inc. Kidney perfusion catheter
US6673363B2 (en) * 1999-12-16 2004-01-06 Dermatrends, Inc. Transdermal and topical administration of local anesthetic agents using basic enhancers
US6450937B1 (en) 1999-12-17 2002-09-17 C. R. Bard, Inc. Needle for implanting brachytherapy seeds
GB9930000D0 (en) 1999-12-21 2000-02-09 Phaeton Research Ltd An ingestible device
US6970742B2 (en) * 2000-01-11 2005-11-29 Savacor, Inc. Method for detecting, diagnosing, and treating cardiovascular disease
US6873268B2 (en) * 2000-01-21 2005-03-29 Medtronic Minimed, Inc. Microprocessor controlled ambulatory medical apparatus with hand held communication device
US7039453B2 (en) 2000-02-08 2006-05-02 Tarun Mullick Miniature ingestible capsule
US6920359B2 (en) 2000-02-15 2005-07-19 Advanced Bionics Corporation Deep brain stimulation system for the treatment of Parkinson's Disease or other disorders
US6816632B1 (en) 2000-02-17 2004-11-09 Wake Forest University Health Sciences Geometric motion analysis
US6512950B2 (en) * 2000-02-18 2003-01-28 University Of Utah Research Foundation Methods for delivering agents using alternating current
AU2001251134B2 (en) * 2000-03-31 2006-02-02 Angiodynamics, Inc. Tissue biopsy and treatment apparatus and method
US6398280B1 (en) 2000-05-11 2002-06-04 Zyvex Corporation Gripper and complementary handle for use with microcomponents
US6442413B1 (en) 2000-05-15 2002-08-27 James H. Silver Implantable sensor
US7181261B2 (en) * 2000-05-15 2007-02-20 Silver James H Implantable, retrievable, thrombus minimizing sensors
KR20020010257A (en) 2000-07-28 2002-02-04 김인광 Apparatus and method for recognizing self-position in robort system
US6402678B1 (en) 2000-07-31 2002-06-11 Neuralieve, Inc. Means and method for the treatment of migraine headaches
US6921413B2 (en) 2000-08-16 2005-07-26 Vanderbilt University Methods and devices for optical stimulation of neural tissues
US7840271B2 (en) 2000-09-27 2010-11-23 Cvrx, Inc. Stimulus regimens for cardiovascular reflex control
US6898464B2 (en) 2000-10-05 2005-05-24 Innersea Technology Optical telemetry of data and power for wireless biomedical sensors and actuators
AU2002224453A1 (en) 2000-10-11 2002-04-22 Microchips, Inc. Microchip reservoir devices and facilitated corrosion of electrodes
US6512940B1 (en) * 2000-10-31 2003-01-28 Medtronic, Inc. Subcutaneous spiral electrode for sensing electrical signals of the heart
AU2001295350A1 (en) * 2000-11-03 2002-05-15 Endoart S.A. Implantable medical device for delivering a liquid
US6514237B1 (en) * 2000-11-06 2003-02-04 Cordis Corporation Controllable intralumen medical device
US6929636B1 (en) 2000-11-08 2005-08-16 Hewlett-Packard Development Company, L.P. Internal drug dispenser capsule medical device
US6591137B1 (en) 2000-11-09 2003-07-08 Neuropace, Inc. Implantable neuromuscular stimulator for the treatment of gastrointestinal disorders
US6679893B1 (en) * 2000-11-16 2004-01-20 Chestnut Medical Technologies, Inc. Grasping device and method of use
US8372139B2 (en) 2001-02-14 2013-02-12 Advanced Bio Prosthetic Surfaces, Ltd. In vivo sensor and method of making same
US6607553B1 (en) 2000-11-17 2003-08-19 B. Braun Medical, Inc. Method for deploying a thermo-mechanically expandable stent
JP2002153569A (en) 2000-11-20 2002-05-28 Motokuni Mori Nasal plug
US6950707B2 (en) 2000-11-21 2005-09-27 Advanced Bionics Corporation Systems and methods for treatment of obesity and eating disorders by electrical brain stimulation and/or drug infusion
WO2002055136A2 (en) 2000-12-01 2002-07-18 Nephros Therapeutics Inc Intrasvascular drug delivery device and use therefor
WO2002060523A2 (en) 2000-12-15 2002-08-08 Brown Tony R Atrial fibrillation rf treatment device and method
US7553276B2 (en) * 2001-01-16 2009-06-30 Given Imaging Ltd. Method and device for imaging body lumens
US6384741B1 (en) * 2001-01-16 2002-05-07 O'leary, Sr. Jerry P. Apparatus and method for providing high mounted view of traffic
US6735475B1 (en) 2001-01-30 2004-05-11 Advanced Bionics Corporation Fully implantable miniature neurostimulator for stimulation as a therapy for headache and/or facial pain
US6754536B2 (en) 2001-01-31 2004-06-22 Medtronic, Inc Implantable medical device affixed internally within the gastrointestinal tract
US20020116034A1 (en) 2001-02-20 2002-08-22 Victor Miller Controllable, wearable MRI-compatible pacemaker with power carrying photonic catheter and VOO functionality
US20020116029A1 (en) 2001-02-20 2002-08-22 Victor Miller MRI-compatible pacemaker with power carrying photonic catheter and isolated pulse generating electronics providing VOO functionality
US6592549B2 (en) 2001-03-14 2003-07-15 Scimed Life Systems, Inc. Rapid exchange stent delivery system and associated components
US20020188323A1 (en) 2001-03-19 2002-12-12 Remon Medical Technologies Ltd. Methods, systems and devices for in vivo electrochemical production of therapeutic agents
US6691617B2 (en) * 2001-03-27 2004-02-17 Heidelberger Druckmaschinen Ag Apparatus for selectively cleaning a printing press cylinder
WO2002080753A2 (en) 2001-04-04 2002-10-17 Given Imaging Ltd. Induction powered in vivo imaging device
US20020147480A1 (en) 2001-04-04 2002-10-10 Mamayek Donald S. Treatment of lipid pool
US6616676B2 (en) 2001-04-10 2003-09-09 Scimed Life Systems, Inc. Devices and methods for removing occlusions in vessels
US7083593B2 (en) * 2001-04-18 2006-08-01 Advanced Bionics Corporation Programmable implantable pump with accessory reservoirs and multiple independent lumen catheter
US6676692B2 (en) 2001-04-27 2004-01-13 Intek Technology L.L.C. Apparatus for delivering, repositioning and/or retrieving self-expanding stents
US20040225326A1 (en) 2001-05-07 2004-11-11 Weiner Mike L. Apparatus for the detection of restenosis
US20020169436A1 (en) 2001-05-08 2002-11-14 Hitinder Gurm Percutaneous method of preventing distal embolisation while maintaining adequate distal perfusion in percutaneous interventional procedures
KR100402920B1 (en) 2001-05-19 2003-10-22 한국과학기술연구원 Micro robot
KR100426613B1 (en) 2001-05-19 2004-04-08 한국과학기술연구원 Micro robot driving system
US6733485B1 (en) 2001-05-25 2004-05-11 Advanced Bionics Corporation Microstimulator-based electrochemotherapy methods and systems
US6875208B2 (en) 2001-05-31 2005-04-05 Massachusetts Institute Of Technology Microchip devices with improved reservoir opening
US6890303B2 (en) 2001-05-31 2005-05-10 Matthew Joseph Fitz Implantable device for monitoring aneurysm sac parameters
US6626940B2 (en) 2001-06-15 2003-09-30 Scimed Life Systems, Inc. Medical device activation system
US7160258B2 (en) 2001-06-26 2007-01-09 Entrack, Inc. Capsule and method for treating or diagnosing the intestinal tract
US7044911B2 (en) * 2001-06-29 2006-05-16 Philometron, Inc. Gateway platform for biological monitoring and delivery of therapeutic compounds
US7013177B1 (en) * 2001-07-05 2006-03-14 Advanced Bionics Corporation Treatment of pain by brain stimulation
AU2002317466B2 (en) 2001-07-12 2008-02-28 Given Imaging Ltd Device and method for examining a body lumen
US7150737B2 (en) * 2001-07-13 2006-12-19 Sci/Med Life Systems, Inc. Methods and apparatuses for navigating the subarachnoid space
US7547321B2 (en) 2001-07-26 2009-06-16 Alveolus Inc. Removable stent and method of using the same
US6951536B2 (en) * 2001-07-30 2005-10-04 Olympus Corporation Capsule-type medical device and medical system
WO2003013374A1 (en) 2001-08-06 2003-02-20 Penn State Research Foundation Multifunctional tool and method for minimally invasive surgery
US7063714B2 (en) * 2001-08-22 2006-06-20 Gore Enterprise Holdings, Inc. Apparatus and methods for treating stroke and controlling cerebral flow characteristics
US20060241717A1 (en) * 2001-08-30 2006-10-26 Whitehurst Todd K Treatment of movement disorders by extra dural motor cortex stimulation
DE60120155T2 (en) 2001-09-10 2006-10-26 Thermocore Medical Systems Nv Arrangement for positioning catheters
US6764441B2 (en) 2001-09-17 2004-07-20 Case Western Reserve University Peristaltically self-propelled endoscopic device
US6860867B2 (en) * 2001-09-20 2005-03-01 The Regents Of The University Of California Method of interventional surgery
EP1429820A4 (en) 2001-09-27 2007-11-14 Galil Medical Ltd Cryoplasty apparatus and method
US6770027B2 (en) 2001-10-05 2004-08-03 Scimed Life Systems, Inc. Robotic endoscope with wireless interface
US6849183B2 (en) * 2002-08-13 2005-02-01 Transvivo, Inc. Method and apparatus for therapeutic apheresis
US6939376B2 (en) 2001-11-05 2005-09-06 Sun Biomedical, Ltd. Drug-delivery endovascular stent and method for treating restenosis
US20030153866A1 (en) 2001-11-09 2003-08-14 Long Gary L. Self-propelled, intraluminal device with hollow, cylindrical head and method of use
US20030093031A1 (en) 2001-11-09 2003-05-15 Long Gary L. Self-propelled, intraluminal device with medical agent applicator and method of use
US6866626B2 (en) 2001-11-09 2005-03-15 Ethicon-Endo Surgery, Inc. Self-propelled, intraluminal device with working channel and method of use
KR100417163B1 (en) 2001-11-12 2004-02-05 한국과학기술연구원 Micro capsule robot
US20050121411A1 (en) 2002-10-29 2005-06-09 Microfabrica Inc. Medical devices and EFAB methods and apparatus for producing them
US7498714B2 (en) 2003-09-24 2009-03-03 Microfabrica Inc. Multi-layer three-dimensional structures having features smaller than a minimum feature size associated with the formation of individual layers
US7372616B2 (en) 2001-12-06 2008-05-13 Microfabrica, Inc. Complex microdevices and apparatus and methods for fabricating such devices
US7404444B2 (en) 2002-09-20 2008-07-29 Enventure Global Technology Protective sleeve for expandable tubulars
WO2003061711A2 (en) 2002-01-16 2003-07-31 Visen Medical, Inc. Chromophore probes for optical imaging
US6923054B2 (en) 2002-01-18 2005-08-02 The Board Of Trustees Of The University Of Illinois Microscale out-of-plane anemometer
US20030163177A1 (en) 2002-01-18 2003-08-28 Eggers Philip E. System method and apparatus for localized heating of tissue
US6855115B2 (en) * 2002-01-22 2005-02-15 Cardiomems, Inc. Implantable wireless sensor for pressure measurement within the heart
US6828908B2 (en) 2002-02-06 2004-12-07 Ronald Scott Clark Locator system with an implanted transponder having an organically-rechargeable battery
IL154391A (en) 2002-02-11 2009-05-04 Given Imaging Ltd Self propelled device
IL154392A (en) 2002-02-11 2010-06-30 Given Imaging Ltd Self propelled device having a magnetohydrodynamic propulsion
US7236821B2 (en) 2002-02-19 2007-06-26 Cardiac Pacemakers, Inc. Chronically-implanted device for sensing and therapy
WO2003070190A2 (en) 2002-02-19 2003-08-28 Syntherica Corporation Surrogate antibodies and methods of preparation and use thereof
JP4489437B2 (en) 2002-02-21 2010-06-23 エンセル,インコーポレイテッド Immobilized bioactive hydrogel matrix as a surface coating
US6889091B2 (en) 2002-03-06 2005-05-03 Medtronic, Inc. Method and apparatus for placing a coronary sinus/cardiac vein pacing lead using a multi-purpose side lumen
WO2003081762A1 (en) * 2002-03-18 2003-10-02 Sri International Electroactive polymer devices for moving fluid
US7797033B2 (en) 2002-04-08 2010-09-14 Smart Pill Corporation Method of using, and determining location of, an ingestible capsule
US20030216622A1 (en) 2002-04-25 2003-11-20 Gavriel Meron Device and method for orienting a device in vivo
GB2389791B (en) * 2002-04-30 2006-12-13 Steven Gill Implantable drug delivery pump
US7368190B2 (en) 2002-05-02 2008-05-06 Abbott Diabetes Care Inc. Miniature biological fuel cell that is operational under physiological conditions, and associated devices and methods
US6755802B2 (en) 2002-05-06 2004-06-29 Beckman Coulter, Inc. Whole blood sampling device
CA2485285A1 (en) * 2002-05-10 2003-11-20 Cordis Corporation Method of making a medical device having a thin wall tubular membrane over a structural frame
MXPA04011423A (en) 2002-05-16 2005-02-17 Scott Laborotories Inc Kits of medical supplies for sedation and analgesia.
JP2005525866A (en) 2002-05-17 2005-09-02 オーナックス・メディカル・インコーポレーテッド Surgical suture instrument and method of use thereof
US20030220556A1 (en) 2002-05-20 2003-11-27 Vespro Ltd. Method, system and device for tissue characterization
US7003352B1 (en) * 2002-05-24 2006-02-21 Advanced Bionics Corporation Treatment of epilepsy by brain stimulation
US7399313B2 (en) * 2002-06-07 2008-07-15 Brown Peter S Endovascular graft with separable sensors
US6833003B2 (en) 2002-06-24 2004-12-21 Cordis Neurovascular Expandable stent and delivery system
US7314484B2 (en) 2002-07-02 2008-01-01 The Foundry, Inc. Methods and devices for treating aneurysms
US6925357B2 (en) 2002-07-25 2005-08-02 Intouch Health, Inc. Medical tele-robotic system
JP2006512109A (en) 2002-08-01 2006-04-13 ザ ジョンズ ホプキンズ ユニバーシティ Identification technology of molecular structure using fluorescent light emission, and treatment technology of cell types lined inside the body lumen
KR100482275B1 (en) 2002-08-09 2005-04-13 한국과학기술연구원 Micro capsule robot
EP1534120B1 (en) * 2002-08-13 2010-06-09 Given Imaging Ltd. System for in vivo sampling and analysis
US6991617B2 (en) * 2002-08-21 2006-01-31 Hektner Thomas R Vascular treatment method and device
US20040049240A1 (en) * 2002-09-06 2004-03-11 Martin Gerber Electrical and/or magnetic stimulation therapy for the treatment of prostatitis and prostatodynia
US6776165B2 (en) 2002-09-12 2004-08-17 The Regents Of The University Of California Magnetic navigation system for diagnosis, biopsy and drug delivery vehicles
US7118531B2 (en) 2002-09-24 2006-10-10 The Johns Hopkins University Ingestible medical payload carrying capsule with wireless communication
US8449452B2 (en) 2002-09-30 2013-05-28 Given Imaging Ltd. In-vivo sensing system
US7794494B2 (en) 2002-10-11 2010-09-14 Boston Scientific Scimed, Inc. Implantable medical devices
WO2004036376A2 (en) 2002-10-15 2004-04-29 Medtronic Inc. Multi-modal operation of a medical device system
US6936003B2 (en) 2002-10-29 2005-08-30 Given Imaging Ltd In-vivo extendable element device and system, and method of use
US7037344B2 (en) 2002-11-01 2006-05-02 Valentx, Inc. Apparatus and methods for treatment of morbid obesity
US20040133147A1 (en) 2002-11-06 2004-07-08 Woo Sang Hoon Intestinal bypass device to treat obesity
US7039450B2 (en) 2002-11-15 2006-05-02 Biosense Webster, Inc. Telescoping catheter
US7697972B2 (en) 2002-11-19 2010-04-13 Medtronic Navigation, Inc. Navigation system for cardiac therapies
US20040138586A1 (en) * 2002-11-20 2004-07-15 Ganz Robert A. Apparatus and method for determining yield pressure
US7226410B2 (en) 2002-12-05 2007-06-05 Ethicon-Endo Surgery, Inc. Locally-propelled, intraluminal device with cable loop track and method of use
US6959215B2 (en) 2002-12-09 2005-10-25 Northstar Neuroscience, Inc. Methods for treating essential tremor
US7037343B2 (en) 2002-12-23 2006-05-02 Python, Inc. Stomach prosthesis
WO2004058041A2 (en) 2002-12-26 2004-07-15 Given Imaging Ltd. Immobilizable in vivo sensing device
US7628753B2 (en) 2002-12-30 2009-12-08 Given Imaging, Ltd. Method for in vivo sensing
US7228162B2 (en) 2003-01-13 2007-06-05 Isense Corporation Analyte sensor
US20040267240A1 (en) 2003-01-29 2004-12-30 Yossi Gross Active drug delivery in the gastrointestinal tract
US20050058701A1 (en) * 2003-01-29 2005-03-17 Yossi Gross Active drug delivery in the gastrointestinal tract
US20040152988A1 (en) 2003-01-31 2004-08-05 Weirich John Paul Capsule imaging system
IL161096A (en) 2003-03-27 2008-08-07 Given Imaging Ltd Device, system and method for measuring a gradient in-vivo
JP2004298241A (en) 2003-03-28 2004-10-28 Olympus Corp Capsulated endoscope
US20040199246A1 (en) 2003-04-02 2004-10-07 Scimed Life Systems, Inc. Expandable stent
US20040199054A1 (en) 2003-04-03 2004-10-07 Wakefield Glenn Mark Magnetically propelled capsule endoscopy
KR20040086940A (en) * 2003-04-03 2004-10-13 엘지전자 주식회사 Mobile robot in using image sensor and his mobile distance mesurement method
US20050107870A1 (en) 2003-04-08 2005-05-19 Xingwu Wang Medical device with multiple coating layers
US20050079132A1 (en) 2003-04-08 2005-04-14 Xingwu Wang Medical device with low magnetic susceptibility
US20050278020A1 (en) 2003-04-08 2005-12-15 Xingwu Wang Medical device
US20050182482A1 (en) 2003-04-08 2005-08-18 Xingwu Wang MRI imageable medical device
US7736300B2 (en) 2003-04-14 2010-06-15 Softscope Medical Technologies, Inc. Self-propellable apparatus and method
US7383071B1 (en) 2003-04-25 2008-06-03 United States Of America As Represented By The Secretary Of The Navy Microsensor system and method for measuring data
US7214182B2 (en) 2003-04-25 2007-05-08 Olympus Corporation Wireless in-vivo information acquiring system, body-insertable device, and external device
US7297113B1 (en) 2003-04-25 2007-11-20 United States Of America As Represented By The Secretary Of The Navy Microsensor system and method for measuring data
DE10323216B3 (en) * 2003-05-22 2004-12-23 Siemens Ag Endoscope apparatus has cameras which are provided at respective ends of endoscope capsule, such that one of camera is tilted or rotated to change photography range
DE60314379T2 (en) 2003-06-17 2008-06-26 Raymond Moser Implantable and recoverable sensor device
US20050004553A1 (en) * 2003-07-02 2005-01-06 Medtronic Ave, Inc. Sheath catheter having variable over-the-wire length and methods of use
US7126303B2 (en) 2003-07-08 2006-10-24 Board Of Regents Of The University Of Nebraska Robot for surgical applications
US7042184B2 (en) 2003-07-08 2006-05-09 Board Of Regents Of The University Of Nebraska Microrobot for surgical applications
US7066180B2 (en) 2003-07-09 2006-06-27 Airmatrix Technologies, Inc. Method and system for measuring airflow of nares
US20050021023A1 (en) * 2003-07-23 2005-01-27 Scimed Life Systems, Inc. System and method for electrically determining position and detachment of an implantable device
US20050027236A1 (en) * 2003-07-30 2005-02-03 Medtronic Ave, Inc. Aspiration catheter having a variable over-the-wire length and methods of use
KR20110041579A (en) 2003-08-15 2011-04-21 애니머스 테크놀로지스 엘엘씨 Microprocessors, devices, and methods for use in monitoring of physiological analytes
JP2007515195A (en) 2003-09-18 2007-06-14 アドヴァンスド バイオ プロスセティック サーフェシーズ リミテッド MEDICAL DEVICE HAVING MICRO ELECTRO-MACHINE SYSTEM FUNCTION AND METHOD FOR MANUFACTURING THE SAME
DE10343494B4 (en) * 2003-09-19 2006-06-14 Siemens Ag Magnetically navigable device for use in the field of medical endoscopy
US20050065592A1 (en) * 2003-09-23 2005-03-24 Asher Holzer System and method of aneurism monitoring and treatment
US20050153309A1 (en) 2003-12-22 2005-07-14 David Hoon Method and apparatus for in vivo surveillance of circulating biological components
US7625338B2 (en) 2003-12-31 2009-12-01 Given Imaging, Ltd. In-vivo sensing device with alterable fields of view
US20050171418A1 (en) 2004-01-08 2005-08-04 Tah-Yeong Lin Capsule endoscopy system
US7002331B2 (en) 2004-01-13 2006-02-21 Delta Electronics, Inc. Modular power supply system including a power status signal generator to perform fast sag detection to input peak voltage
WO2005067817A1 (en) 2004-01-13 2005-07-28 Remon Medical Technologies Ltd Devices for fixing a sensor in a body lumen
JP4455067B2 (en) 2004-01-14 2010-04-21 オリンパス株式会社 Capsule endoscope device
US8082024B2 (en) 2004-01-16 2011-12-20 Alfano Robert R Micro-scale compact device for in vivo medical diagnosis combining optical imaging and point fluorescence spectroscopy
ITPI20040008A1 (en) 2004-02-17 2004-05-17 Dino Accoto ROBOTIC CAPSULE FOR INTRA-BODY BIOMEDICAL APPLICATIONS
US8915957B2 (en) 2004-03-11 2014-12-23 Alcatel Lucent Drug delivery stent
US7365614B2 (en) 2004-03-22 2008-04-29 Mobius Microsystems, Inc. Integrated clock generator and timing/frequency reference
US7989490B2 (en) 2004-06-02 2011-08-02 Cordis Corporation Injectable formulations of taxanes for cad treatment
US8163269B2 (en) 2004-04-05 2012-04-24 Carpenter Kenneth W Bioactive stents for type II diabetics and methods for use thereof
US9011329B2 (en) 2004-04-19 2015-04-21 Searete Llc Lumenally-active device
US8353896B2 (en) 2004-04-19 2013-01-15 The Invention Science Fund I, Llc Controllable release nasal system
US7212110B1 (en) 2004-04-19 2007-05-01 Advanced Neuromodulation Systems, Inc. Implantable device and system and method for wireless communication
US20060037617A1 (en) * 2004-04-19 2006-02-23 Walke Amrish J Airway implant devices and methods of use
US20050234440A1 (en) 2004-04-19 2005-10-20 Searete Llc, A Limited Liability Corporation Of The State Of Delaware System with a sensor for perfusion management
US8361013B2 (en) 2004-04-19 2013-01-29 The Invention Science Fund I, Llc Telescoping perfusion management system
US20070010868A1 (en) 2004-04-19 2007-01-11 Searete Llc, A Limited Liability Corporation Of The State Of Delaware Lumenally-active device
US7850676B2 (en) 2004-04-19 2010-12-14 The Invention Science Fund I, Llc System with a reservoir for perfusion management
US8000784B2 (en) 2004-04-19 2011-08-16 The Invention Science Fund I, Llc Lumen-traveling device
US7998060B2 (en) 2004-04-19 2011-08-16 The Invention Science Fund I, Llc Lumen-traveling delivery device
US8092549B2 (en) * 2004-09-24 2012-01-10 The Invention Science Fund I, Llc Ciliated stent-like-system
US8337482B2 (en) 2004-04-19 2012-12-25 The Invention Science Fund I, Llc System for perfusion management
US8512219B2 (en) 2004-04-19 2013-08-20 The Invention Science Fund I, Llc Bioelectromagnetic interface system
US7125382B2 (en) 2004-05-20 2006-10-24 Digital Angel Corporation Embedded bio-sensor system
US20050277839A1 (en) 2004-06-10 2005-12-15 Honeywell International, Inc. Wireless flow measurement in arterial stent
EP1618831A3 (en) 2004-06-29 2006-04-19 Nippon Cable System Inc. A moving device in pipe lines
US7857369B2 (en) 2004-06-30 2010-12-28 Case Western Reserve University Biologically inspired gripping device
US7596403B2 (en) 2004-06-30 2009-09-29 Given Imaging Ltd. System and method for determining path lengths through a body lumen
US7729761B2 (en) 2004-07-14 2010-06-01 Cardiac Pacemakers, Inc. Method and apparatus for controlled gene or protein delivery
US20060042632A1 (en) * 2004-08-31 2006-03-02 Bishop Gregory D Apparatus for monitoring a patient during drug delivery
US7020231B1 (en) * 2004-10-21 2006-03-28 Delphi Technologies, Inc. Technique for creating extended bit timer on a time processing unit
US7486967B2 (en) * 2005-04-13 2009-02-03 Lemko Corporation System, method, and device for providing communications using a distributed mobile architecture
US20060169294A1 (en) 2004-12-15 2006-08-03 Kaler Karan V Inertial navigation method and apparatus for wireless bolus transit monitoring in gastrointestinal tract
US8235055B2 (en) 2005-01-11 2012-08-07 Uti Limited Partnership Magnetic levitation of intraluminal microelectronic capsule
KR100702155B1 (en) 2005-05-12 2007-04-02 한국과학기술연구원 Capsule type micro-robot moving system
US9314222B2 (en) * 2005-07-07 2016-04-19 Stereotaxis, Inc. Operation of a remote medical navigation system using ultrasound image
US7398734B1 (en) 2006-03-09 2008-07-15 The United States Of America As Represented By The Secretary Of The Navy MEMS resettable timer
US7744542B2 (en) 2006-04-20 2010-06-29 Cardiac Pacemakers, Inc. Implanted air passage sensors
EP2034922B1 (en) * 2006-06-22 2017-03-15 Board of Regents of the University of Nebraska Magnetically coupleable robotic devices
US7669475B2 (en) 2006-09-28 2010-03-02 Rosemount Aerospace Inc. System and method for measuring rotational movement about an axis
EP2114260B1 (en) * 2007-02-08 2013-04-17 Technion Research & Development Foundation Ltd. Inflatable chamber device for motion through a passage
US8430810B2 (en) * 2007-02-12 2013-04-30 Technion Research And Development Foundation, Ltd. Inflatable balloon device and applications
US7713196B2 (en) 2007-03-09 2010-05-11 Nellcor Puritan Bennett Llc Method for evaluating skin hydration and fluid compartmentalization
KR100859093B1 (en) 2007-04-30 2008-09-17 광주과학기술원 Apparatus and method for navigating using rfid
US8192360B2 (en) * 2007-09-25 2012-06-05 Pacesetter, Inc. Implantable body fluid analyzer
US8401659B2 (en) 2008-01-15 2013-03-19 Cardiac Pacemakers, Inc. Implantable medical device with wireless communications
ES2401166T3 (en) 2008-09-16 2013-04-17 Scuola Superiore Di Studi Universitari E Di Perfezionamento Sant'anna Wireless capsule that releases a surgical clamp

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6295990B1 (en) * 1998-02-03 2001-10-02 Salient Interventional Systems, Inc. Methods and systems for treating ischemia

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