US3523539A - Demand cardiac pacemaker and method - Google Patents

Demand cardiac pacemaker and method Download PDF

Info

Publication number
US3523539A
US3523539A US708127A US3523539DA US3523539A US 3523539 A US3523539 A US 3523539A US 708127 A US708127 A US 708127A US 3523539D A US3523539D A US 3523539DA US 3523539 A US3523539 A US 3523539A
Authority
US
United States
Prior art keywords
pulse
heartbeat
patient
stimulating
pace
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Lifetime
Application number
US708127A
Inventor
Kenneth E Lavezzo
Harold R Riggert
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
HP Inc
Original Assignee
Hewlett Packard Co
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
Application filed by Hewlett Packard Co filed Critical Hewlett Packard Co
Application granted granted Critical
Publication of US3523539A publication Critical patent/US3523539A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/18Applying electric currents by contact electrodes
    • A61N1/32Applying electric currents by contact electrodes alternating or intermittent currents
    • A61N1/36Applying electric currents by contact electrodes alternating or intermittent currents for stimulation
    • A61N1/362Heart stimulators
    • A61N1/365Heart stimulators controlled by a physiological parameter, e.g. heart potential

Definitions

  • next beat interval is thus synchronized to the QRS portion of the electrocardial signal of the heartbeat thus stimulated.
  • this next beat interval is increased by the time delay occurring between the beat-stimulating signal and the resulting heartbeat, thereby producing a lower heartbeat rate per unit time than the preset rate of a beat per selected time interval.
  • the beat-stimulating signal applied to the heart of a patient may decrease in magnitude below a selected value due to pacing electrode contact problems, or the like, and become insufficient to reliably stimulate the patients heartbeat.
  • the cardiac pacing apparatus and method of the present invention provides heartbeat-stimulating signals in response to the absence of natural heartbeat within a preselected time interval which is not altered by the appearance of a stimulated heartbeat signal.
  • FIGURE 1 is a block schematic diagram of the cardiac pacing circuit of the present invention.
  • FIGURES 2a and b are graphs on a common time axis of the relationships of the cardiac signal and heartbeat-stimulating signals.
  • FIGURE I there is shown a rate generator 5 which triggers pace pulse generator 7 at a pulse rate which is selected by the rate control 8 of the rate generator.
  • the electro-cardiograph (ECG) circuit 9 which is connected to receive electro-cardial signals from a patient produces inhibit pulses on line ll representative of the occurrence of a QRS portion of an electro-cardial signal from a patient.
  • An inhibit pulse appearing on line 11 due to a natural heartbeat occurring prior to the end of the normal period of rate generator 5 resets the rate generator 5 to the start of a new pulse period and thereby inhibits rate generator 5 from triggering the pace pulse generator 7 as a result of the appearance of the natural heartbeat.
  • no stimulating pace pulses are produced during normal heart activity which produces beats at a rate faster than the preset slower pacing rate.
  • rate generator 5 triggers pulse generator 7 and activates the monostable multivibrator 13.
  • the pace pulse generator 7 supplies a pace pulse to the amplifier 16 including buffer and amplifier stages [5 and 17 which, together with the pace current control 19 in the return path, constitute a negative-feedback stabilized source of pulse current having a value set by the pace current control l9.
  • This amplified pulse isapplied to the primary winding of an output transformer 21 to produce the desired heartbeat-stimulating pulse 23, as shown in FIGURE 2a, at the output terminals 25 which are connected to the secondary of the output transformer 21.
  • the output terminals 25 may be connected to apply the pulses 23 directly to the myocardium of the patient, as by suitable catheters, or the like.
  • the output terminals 25 may also be connected to the chest wall by suitable fluid column electrodes, or the like.
  • Transformer 21 provides electrical isolation of the patient from the circuitry of the present invention.
  • the rate generator 5 triggers the pace pulse generator 7 it also triggers the monostable multivibrator 13.
  • This multivibrator produces a disabling signal on line 27 for a selected period t that is longer than the time interval which normally exists between the pace pulse 23 and the resulting stimulated QRS portion of the electrocardial signal from the patient.
  • This disabling signal prevents the rate generator reset 29'from resetting on the stimulated heartbeat and thereby delaying a subsequent pace pulse by the preset pulse interval plus the delay interval, as shown in the graph of FIGURE 2b.
  • the rate generator 5 triggers the pace pulse generator 7 after each t time interval independent of the occurrence of a stimulated QRS pulse at a delayed time t,, after application of the pace pulse 23.
  • the stimulated pulse rate is thus accurately set at a pulse per time interval t and is not affected by the time delay t normally occurring between the pace pulse and the stimulated QRS portion of the patients electrocardial signal.
  • the monostable multivibrator 13 also applies a signal to meter driver 30 which, in turn, produces an indication on meter 31 representative of the pace pulse rate established by the rate generator 5.
  • the output impedance detector 33 is connected in the primary circuit of the transformer 21 to detect the current level of pace pulses 23 delivered to a patient. Detector 33 responds to the voltage across the primary winding of the output transformer 21 for determining the impedance presented to the secondary of transformer 21 by the patient during the beat stimulating pulses. This information may be used to provide an indication of proper conduction at electrode-tissue interface, and the like, rather than a mere indication of the formation of a pace pulse, so that appropriate and timely corrections may be made to insure continued conduction of adequate current through the patient for proper heartbeat stimulation.
  • the actual current delivered to the patient with each pace pulse 23, as determined by the setting of pace current control 19, may also be indicated by the indicator device 35 which may, for example, include an audible or visual alarm or a meter. Where alarms are used, the indicator 35 may include a level detector which is responsive to the setting of control 19 to provide an alarm only when the pulse current delivered to the patient drops below a selected value determined by the setting of control 19.
  • the cardiac pacer of the present invention sup-' plies heartbeat-stimulating pulses to a patient only upon failure of the natural rhythm.
  • the stimulating pulses thus supplied recur at a preselected rate which is unaltered by the occurrence of a stimulated heartbeat that might otherwise be detected to be a natural beat.
  • the present invention pro vides an indication responsive to the pace pulse current con-' ducted by the patient rather than a mere indication of the formation of a pace pulse so that electrode conduction and the like may be checked upon each delivery of a pace pulse.
  • Heart pacing apparatus comprising: I
  • heart-stimulating pulse-generating means for normally producing pulses at preselected intervals
  • electrode means connected to said pulse-generating means for supplying heart-stimulating electrical pulses to a pa-' tient;
  • monitoring means connected to a patient to monitor the beating action of such patients heart
  • reset means connected to said monitoring means and to said generating means and responsive to said monitoring means detecting a heartbeat of a patient within a preselected interval for resetting said generating means and initiating a new preselected interval and preventing generation of a heart-stimulating electrical pulse; and circuit means responsive to an electrical pulse delivered to said electrode means at the end of a preselected interval for inhibiting the resetting of said generating means to initiate a new preselected interval in response to said monitoring means detecting a heartbeat of a patient stimulated by said electrical pulse delivered to said electrode means.
  • Heart pacing apparatus as in Claim 1 wherein:
  • said circuit means includes delay means for producing an inhibit signal having a period which is longer than the period normally occurring between the application of a heartbeat-stimulating electrical pulse to a patient and the resulting stimulated heartbeat of such patient.
  • said monitoring means includes means responsive to the electro-cardial signals of a patient and said circuit means includes a monostable multivibrator which is triggered upon delivery of an electrical pulse;
  • said resetting means is rendered inoperative by the output of said multivibrator to activate the pulse generating means to initiate a new preselected interval at the occurrence ofa heartbeat detected by said monitoring means.
  • Heart pacing apparatus comprising:
  • heartbeat-stimulating pulse generating means including means for setting the electrical pulse current at a preselected value
  • an output transformer having a secondary winding and having a primary winding connected to receive pulses from said pulse generating means
  • electrode means connected to the secondary winding of said output transformer for applying heartbeat-stimulating electrical pulses to a patient
  • circuit means connected to the primary winding of said output transformer for producing an indication in response to the electrical pulse current supplied to a patient decreasing below a level related to said preselected value 5.

Description

United States Patent Inventors Appl. No. Filed Patented Assignee DEMAND CARDIAC PACEMAKER AND METHOD [56] References Cited UNITED STATES PATENTS 3,345,990 /1967 Berkovits l28/4l9 Primary Examiner William E. Kamm Attorney- A. C. Smith ABSTRACT: The method and means for demand pacing the 5 Cl 2 D heart of a patientinhibits beat synchronization from artificially rawmg stimulated heartbeats so that the heart is correctly stimulated 128/422 at not less than a preselected beat rate during intermittent or A6lh 31/00 continuous failure of natural rhythm. The beat-stimulating 128/419- pulses applied to the patient are monitored to provide an indi- 424, 4 l 9P digest cation ofdrop in pulse magnitude below a preselected level.
F l 5 7 1s 17 l i6 21 8 i r l V f r Y [El RATE PACE PULSE l sumrmc ms PULSE flgig'gh fl csuemon BUFFER mpiinen I Z l 25 9 29 19 I l r ms o Ecc rm: I cmcun cgr gg on 1 OUTPUT MONOSTABLE METER MULTIVIBRATOR INDICATOR DEMAND CARDIAC PACEMAKER AND METHOD BACKGROUND OF THE INVENTION Certain known demand cardiac pacers are inhibited from producing a beat-stimulating pulse in response to the appearance of a natural beat within a preselected interval following the preceding beat. The next beat interval is thus synchronized to the QRS portion of the electrocardial signal of the heartbeat thus stimulated. However, in these known pacers, this next beat interval is increased by the time delay occurring between the beat-stimulating signal and the resulting heartbeat, thereby producing a lower heartbeat rate per unit time than the preset rate of a beat per selected time interval. Also, the beat-stimulating signal applied to the heart of a patient may decrease in magnitude below a selected value due to pacing electrode contact problems, or the like, and become insufficient to reliably stimulate the patients heartbeat.
SUMMARY OF THE INVENTION Accordingly, the cardiac pacing apparatus and method of the present invention provides heartbeat-stimulating signals in response to the absence of natural heartbeat within a preselected time interval which is not altered by the appearance of a stimulated heartbeat signal.
DESCRIPTION OF THE DRAWING FIGURE 1 is a block schematic diagram of the cardiac pacing circuit of the present invention; and
FIGURES 2a and b are graphs on a common time axis of the relationships of the cardiac signal and heartbeat-stimulating signals.
DESCRIPTION OF THE PREFERRED EMBODIMENT Referring now to FIGURE I there is shown a rate generator 5 which triggers pace pulse generator 7 at a pulse rate which is selected by the rate control 8 of the rate generator. The electro-cardiograph (ECG) circuit 9 which is connected to receive electro-cardial signals from a patient produces inhibit pulses on line ll representative of the occurrence of a QRS portion of an electro-cardial signal from a patient. An inhibit pulse appearing on line 11 due to a natural heartbeat occurring prior to the end of the normal period of rate generator 5 resets the rate generator 5 to the start of a new pulse period and thereby inhibits rate generator 5 from triggering the pace pulse generator 7 as a result of the appearance of the natural heartbeat. Thus no stimulating pace pulses are produced during normal heart activity which produces beats at a rate faster than the preset slower pacing rate.
When no heartbeat occurs naturally prior to the end of the preset pacing period, rate generator 5 triggers pulse generator 7 and activates the monostable multivibrator 13. The pace pulse generator 7 supplies a pace pulse to the amplifier 16 including buffer and amplifier stages [5 and 17 which, together with the pace current control 19 in the return path, constitute a negative-feedback stabilized source of pulse current having a value set by the pace current control l9. This amplified pulse isapplied to the primary winding of an output transformer 21 to produce the desired heartbeat-stimulating pulse 23, as shown in FIGURE 2a, at the output terminals 25 which are connected to the secondary of the output transformer 21. The output terminals 25 may be connected to apply the pulses 23 directly to the myocardium of the patient, as by suitable catheters, or the like. The output terminals 25 may also be connected to the chest wall by suitable fluid column electrodes, or the like. Transformer 21 provides electrical isolation of the patient from the circuitry of the present invention.
At the same time the rate generator 5 triggers the pace pulse generator 7 it also triggers the monostable multivibrator 13. This multivibrator produces a disabling signal on line 27 for a selected period t that is longer than the time interval which normally exists between the pace pulse 23 and the resulting stimulated QRS portion of the electrocardial signal from the patient. This disabling signal prevents the rate generator reset 29'from resetting on the stimulated heartbeat and thereby delaying a subsequent pace pulse by the preset pulse interval plus the delay interval, as shown in the graph of FIGURE 2b. Instead, the rate generator 5 triggers the pace pulse generator 7 after each t time interval independent of the occurrence of a stimulated QRS pulse at a delayed time t,, after application of the pace pulse 23. The stimulated pulse rate is thus accurately set at a pulse per time interval t and is not affected by the time delay t normally occurring between the pace pulse and the stimulated QRS portion of the patients electrocardial signal.
The monostable multivibrator 13 also applies a signal to meter driver 30 which, in turn, produces an indication on meter 31 representative of the pace pulse rate established by the rate generator 5. Also, the output impedance detector 33 is connected in the primary circuit of the transformer 21 to detect the current level of pace pulses 23 delivered to a patient. Detector 33 responds to the voltage across the primary winding of the output transformer 21 for determining the impedance presented to the secondary of transformer 21 by the patient during the beat stimulating pulses. This information may be used to provide an indication of proper conduction at electrode-tissue interface, and the like, rather than a mere indication of the formation of a pace pulse, so that appropriate and timely corrections may be made to insure continued conduction of adequate current through the patient for proper heartbeat stimulation. The actual current delivered to the patient with each pace pulse 23, as determined by the setting of pace current control 19, may also be indicated by the indicator device 35 which may, for example, include an audible or visual alarm or a meter. Where alarms are used, the indicator 35 may include a level detector which is responsive to the setting of control 19 to provide an alarm only when the pulse current delivered to the patient drops below a selected value determined by the setting of control 19.
Therefore, the cardiac pacer of the present invention sup-' plies heartbeat-stimulating pulses to a patient only upon failure of the natural rhythm. The stimulating pulses thus supplied recur at a preselected rate which is unaltered by the occurrence of a stimulated heartbeat that might otherwise be detected to be a natural beat. Also, the present invention pro vides an indication responsive to the pace pulse current con-' ducted by the patient rather than a mere indication of the formation of a pace pulse so that electrode conduction and the like may be checked upon each delivery of a pace pulse.
We claim:
1. Heart pacing apparatus comprising: I
heart-stimulating pulse-generating means for normally producing pulses at preselected intervals;
electrode means connected to said pulse-generating means for supplying heart-stimulating electrical pulses to a pa-' tient;
monitoring means connected to a patient to monitor the beating action of such patients heart;
reset means connected to said monitoring means and to said generating means and responsive to said monitoring means detecting a heartbeat of a patient within a preselected interval for resetting said generating means and initiating a new preselected interval and preventing generation of a heart-stimulating electrical pulse; and circuit means responsive to an electrical pulse delivered to said electrode means at the end of a preselected interval for inhibiting the resetting of said generating means to initiate a new preselected interval in response to said monitoring means detecting a heartbeat of a patient stimulated by said electrical pulse delivered to said electrode means.
2. Heart pacing apparatus as in Claim 1 wherein:
said circuit means includes delay means for producing an inhibit signal having a period which is longer than the period normally occurring between the application of a heartbeat-stimulating electrical pulse to a patient and the resulting stimulated heartbeat of such patient.
3. Heart pacing apparatus as in Claim 1 wherein:
said monitoring means includes means responsive to the electro-cardial signals of a patient and said circuit means includes a monostable multivibrator which is triggered upon delivery of an electrical pulse;
said resetting means is rendered inoperative by the output of said multivibrator to activate the pulse generating means to initiate a new preselected interval at the occurrence ofa heartbeat detected by said monitoring means.
4. Heart pacing apparatus comprising:
heartbeat-stimulating pulse generating means including means for setting the electrical pulse current at a preselected value;
an output transformer having a secondary winding and having a primary winding connected to receive pulses from said pulse generating means;
electrode means connected to the secondary winding of said output transformer for applying heartbeat-stimulating electrical pulses to a patient; and
circuit means connected to the primary winding of said output transformer for producing an indication in response to the electrical pulse current supplied to a patient decreasing below a level related to said preselected value 5. The method of pacing the heart of a patient comprising the steps of:
normally supplying heartbeat-stimulating electrical pulses to a patient at the ends of preselected intervals;
detecting the heartbeat of a patient and, in response to a natural heartbeat occurring within a preselected interval, initiating a new preselected interval; and
in response to application of a heartbeat-stimulating electrical pulse to a patient, inhibiting initiation of a new preselected interval in response to detection of the heartbeat stimulated by such electrical pulse.
US708127A 1968-02-26 1968-02-26 Demand cardiac pacemaker and method Expired - Lifetime US3523539A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US70812768A 1968-02-26 1968-02-26

Publications (1)

Publication Number Publication Date
US3523539A true US3523539A (en) 1970-08-11

Family

ID=24844468

Family Applications (1)

Application Number Title Priority Date Filing Date
US708127A Expired - Lifetime US3523539A (en) 1968-02-26 1968-02-26 Demand cardiac pacemaker and method

Country Status (1)

Country Link
US (1) US3523539A (en)

Cited By (27)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3638656A (en) * 1968-08-26 1972-02-01 Liechti Ag Fred Method and apparatus for monitoring and stimulating the activity of the heart
US3651799A (en) * 1970-05-11 1972-03-28 American Optical Corp System for mutually exclusive monitoring of natural heartbeat and pacer-stimulated heartbeat
US3661158A (en) * 1969-12-15 1972-05-09 American Optical Corp Atrio-ventricular demand pacer with atrial stimuli discrimination
US3746006A (en) * 1971-07-15 1973-07-17 American Optical Corp Controlled energy output pacer
US3757792A (en) * 1971-11-11 1973-09-11 Medtronic Inc Automatic threshold compensating demand pacemaker
US3769986A (en) * 1971-05-05 1973-11-06 Esb Inc Body organ threshold analyzer
US3791373A (en) * 1972-03-02 1974-02-12 Univ Southern Illinois Portable electroanesthesia device with automatic power control
US3860009A (en) * 1973-11-29 1975-01-14 David Bell Computer controlled defibrillator
US3867950A (en) * 1971-06-18 1975-02-25 Univ Johns Hopkins Fixed rate rechargeable cardiac pacemaker
US3924641A (en) * 1974-08-19 1975-12-09 Axotronics Inc Bi-phasic current stimulation system
US3958577A (en) * 1971-11-22 1976-05-25 Rodler Ing Hans Apparatus for treatment with sum currents
US4043347A (en) * 1975-08-28 1977-08-23 Vitatron Medical B.V. Multiple-function demand pacer with low current drain
US4088141A (en) * 1976-04-27 1978-05-09 Stimulation Technology, Inc. Fault circuit for stimulator
US4096866A (en) * 1976-04-30 1978-06-27 The Johns Hopkins University Rechargeable body tissue stimulator with back-up battery and pulse generator
US4126137A (en) * 1977-01-21 1978-11-21 Minnesota Mining And Manufacturing Company Electrosurgical unit
US4140131A (en) * 1976-11-03 1979-02-20 Medtronic, Inc. Body tissue stimulation apparatus with warning device
US4141367A (en) * 1977-04-29 1979-02-27 Med Telectronics Ltd. Cardiac electrode/pacer system analyzer
EP0218007A1 (en) * 1985-10-04 1987-04-15 Siemens Aktiengesellschaft Heart pace maker
US4719922A (en) * 1986-03-03 1988-01-19 147638 Canada Inc. Stimulator apparatus
US5312447A (en) * 1992-09-24 1994-05-17 Vitatron Medical, B.V. Pacemaker with improved inhibit and trigger control
US5713931A (en) * 1996-09-16 1998-02-03 Sulzer Intermedics Inc. Method and apparatus for detecting amplitude loss in cardiac pacing pulses
US20040167589A1 (en) * 2003-02-22 2004-08-26 Chester Heath Viral-inhibiting apparatus and methods
US20050113886A1 (en) * 2003-11-24 2005-05-26 Fischell David R. Implantable medical system with long range telemetry
US20050234360A1 (en) * 2004-03-05 2005-10-20 Richardson Charles L Systems, methods and computer program products for heart monitoring
US20070156030A1 (en) * 2006-01-05 2007-07-05 Charles Richardson Assessment of medical conditions
US20070191722A1 (en) * 2004-03-05 2007-08-16 Lifescience Solutions, Llc System and method for heart monitoring
US20110009758A1 (en) * 2009-07-10 2011-01-13 Lifescience Solutions Llc System and method for heart monitoring

Cited By (34)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3638656A (en) * 1968-08-26 1972-02-01 Liechti Ag Fred Method and apparatus for monitoring and stimulating the activity of the heart
US3661158A (en) * 1969-12-15 1972-05-09 American Optical Corp Atrio-ventricular demand pacer with atrial stimuli discrimination
US3651799A (en) * 1970-05-11 1972-03-28 American Optical Corp System for mutually exclusive monitoring of natural heartbeat and pacer-stimulated heartbeat
US3769986A (en) * 1971-05-05 1973-11-06 Esb Inc Body organ threshold analyzer
US3867950A (en) * 1971-06-18 1975-02-25 Univ Johns Hopkins Fixed rate rechargeable cardiac pacemaker
US3746006A (en) * 1971-07-15 1973-07-17 American Optical Corp Controlled energy output pacer
US3757792A (en) * 1971-11-11 1973-09-11 Medtronic Inc Automatic threshold compensating demand pacemaker
US3958577A (en) * 1971-11-22 1976-05-25 Rodler Ing Hans Apparatus for treatment with sum currents
US3791373A (en) * 1972-03-02 1974-02-12 Univ Southern Illinois Portable electroanesthesia device with automatic power control
US3860009A (en) * 1973-11-29 1975-01-14 David Bell Computer controlled defibrillator
US3924641A (en) * 1974-08-19 1975-12-09 Axotronics Inc Bi-phasic current stimulation system
US4043347A (en) * 1975-08-28 1977-08-23 Vitatron Medical B.V. Multiple-function demand pacer with low current drain
US4088141A (en) * 1976-04-27 1978-05-09 Stimulation Technology, Inc. Fault circuit for stimulator
US4096866A (en) * 1976-04-30 1978-06-27 The Johns Hopkins University Rechargeable body tissue stimulator with back-up battery and pulse generator
US4140131A (en) * 1976-11-03 1979-02-20 Medtronic, Inc. Body tissue stimulation apparatus with warning device
US4126137A (en) * 1977-01-21 1978-11-21 Minnesota Mining And Manufacturing Company Electrosurgical unit
US4141367A (en) * 1977-04-29 1979-02-27 Med Telectronics Ltd. Cardiac electrode/pacer system analyzer
EP0218007A1 (en) * 1985-10-04 1987-04-15 Siemens Aktiengesellschaft Heart pace maker
US4694830A (en) * 1985-10-04 1987-09-22 Siemens Aktiengesellschaft Heart pacemaker with respiratory signal generation capability
US4719922A (en) * 1986-03-03 1988-01-19 147638 Canada Inc. Stimulator apparatus
US5312447A (en) * 1992-09-24 1994-05-17 Vitatron Medical, B.V. Pacemaker with improved inhibit and trigger control
US5713931A (en) * 1996-09-16 1998-02-03 Sulzer Intermedics Inc. Method and apparatus for detecting amplitude loss in cardiac pacing pulses
US20070073372A1 (en) * 2003-02-22 2007-03-29 Chester Heath Viral-inhibiting apparatus and methods
US20040167589A1 (en) * 2003-02-22 2004-08-26 Chester Heath Viral-inhibiting apparatus and methods
US20050113886A1 (en) * 2003-11-24 2005-05-26 Fischell David R. Implantable medical system with long range telemetry
US20070100384A1 (en) * 2003-11-24 2007-05-03 Fischell David R Implantable medical system with long range telemetry
US20050234360A1 (en) * 2004-03-05 2005-10-20 Richardson Charles L Systems, methods and computer program products for heart monitoring
US20070191722A1 (en) * 2004-03-05 2007-08-16 Lifescience Solutions, Llc System and method for heart monitoring
US7917195B2 (en) 2004-03-05 2011-03-29 Lifesciences Solutions LLC Systems, methods and computer program products for heart monitoring
US8611990B2 (en) 2004-03-05 2013-12-17 Lifescience Solutions Llc Systems, methods and computer program products for heart monitoring
US10499828B2 (en) 2004-03-05 2019-12-10 Lifescience Solutions, Llc System and method for heart monitoring
US20070156030A1 (en) * 2006-01-05 2007-07-05 Charles Richardson Assessment of medical conditions
US8103065B2 (en) 2006-01-05 2012-01-24 Lifescience Solutions Llc Assessment of medical conditions
US20110009758A1 (en) * 2009-07-10 2011-01-13 Lifescience Solutions Llc System and method for heart monitoring

Similar Documents

Publication Publication Date Title
US3523539A (en) Demand cardiac pacemaker and method
US4552150A (en) Method and apparatus to assist cardiac muscle functioning
US4228803A (en) Physiologically adaptive cardiac pacemaker
US5776167A (en) System and method for alleviating the effects of pacemaker crosstalk
US5042497A (en) Arrhythmia prediction and prevention for implanted devices
US4202340A (en) Method and apparatus for monitoring heart activity, detecting abnormalities, and cardioverting a malfunctioning heart
US5269301A (en) Multimode system for monitoring and treating a malfunctioning heart
US3460542A (en) Instrument for electrically stimulating the activity of the heart
US7917210B2 (en) Method and apparatus for cardiac protection pacing
US5417717A (en) Implantable cardiac function monitor and stimulator for diagnosis and therapy delivery
CA1321815C (en) Antitachyarrythmia pacemaker using pre-ejection period to distinguish physiologic from pathologic tachycardia
US7894896B2 (en) Method and apparatus for initiating and delivering cardiac protection pacing
US5865838A (en) Low energy implantable atrial defibrillator using multiple electrodes and stimulation rates
EP0008505B1 (en) Apparatus for tachycardia investigation or control
DE60316036T2 (en) PACEMAKER WHO DETERMINES FORESTHOF ARRHYTHMIA BY MEANS OF DETERMINATION OF WALL TERMINATION BY MEANS OF IMPEDANCE MEASUREMENT
JPH09644A (en) Implantable heart stimulating device
JPH06125995A (en) System and method for detecting pace maker- mediated pulsus frequens
EP0007189B1 (en) Physiologically adaptive cardiac pacemaker
US5253644A (en) PMT detecting pacemaker
US3783878A (en) Atrial and ventricular pacer having independent rate and av delay controls
EP1590044B1 (en) Automatic adjustment of capture test frequency
GB1300416A (en) Improvements in or relating to cardiac pacemakers
US5385576A (en) Method for detecting ventricular fibrillation and apparatus for detecting and treating ventricular fibrillation
US3881493A (en) Synchronously reinforcing pacer
US5395396A (en) Method and apparatus for stimulating a heart