CA2039996C - Lancet actuator with retractable mechanism - Google Patents

Lancet actuator with retractable mechanism Download PDF

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Publication number
CA2039996C
CA2039996C CA002039996A CA2039996A CA2039996C CA 2039996 C CA2039996 C CA 2039996C CA 002039996 A CA002039996 A CA 002039996A CA 2039996 A CA2039996 A CA 2039996A CA 2039996 C CA2039996 C CA 2039996C
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CA
Canada
Prior art keywords
drive carriage
leaf
carriage means
lancet needle
leaf members
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
CA002039996A
Other languages
French (fr)
Other versions
CA2039996A1 (en
Inventor
Joseph Vincent Ranalletta
Fred Edward Williams, Jr.
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.)
Roche Diagnostics Corp
Ryder International Corp
Original Assignee
Ryder International Corp
Boehringer Mannheim Corp
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 Ryder International Corp, Boehringer Mannheim Corp filed Critical Ryder International Corp
Publication of CA2039996A1 publication Critical patent/CA2039996A1/en
Application granted granted Critical
Publication of CA2039996C publication Critical patent/CA2039996C/en
Anticipated expiration legal-status Critical
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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/15Devices for taking samples of blood
    • A61B5/151Devices specially adapted for taking samples of capillary blood, e.g. by lancets, needles or blades
    • A61B5/15186Devices loaded with a single lancet, i.e. a single lancet with or without a casing is loaded into a reusable drive device and then discarded after use; drive devices reloadable for multiple use
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/15Devices for taking samples of blood
    • A61B5/150007Details
    • A61B5/150015Source of blood
    • A61B5/150022Source of blood for capillary blood or interstitial fluid
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/15Devices for taking samples of blood
    • A61B5/150007Details
    • A61B5/150374Details of piercing elements or protective means for preventing accidental injuries by such piercing elements
    • A61B5/150381Design of piercing elements
    • A61B5/150412Pointed piercing elements, e.g. needles, lancets for piercing the skin
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/15Devices for taking samples of blood
    • A61B5/151Devices specially adapted for taking samples of capillary blood, e.g. by lancets, needles or blades
    • A61B5/15101Details
    • A61B5/15103Piercing procedure
    • A61B5/15107Piercing being assisted by a triggering mechanism
    • A61B5/15113Manually triggered, i.e. the triggering requires a deliberate action by the user such as pressing a drive button
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/15Devices for taking samples of blood
    • A61B5/151Devices specially adapted for taking samples of capillary blood, e.g. by lancets, needles or blades
    • A61B5/15101Details
    • A61B5/15115Driving means for propelling the piercing element to pierce the skin, e.g. comprising mechanisms based on shape memory alloys, magnetism, solenoids, piezoelectric effect, biased elements, resilient elements, vacuum or compressed fluids
    • A61B5/15117Driving means for propelling the piercing element to pierce the skin, e.g. comprising mechanisms based on shape memory alloys, magnetism, solenoids, piezoelectric effect, biased elements, resilient elements, vacuum or compressed fluids comprising biased elements, resilient elements or a spring, e.g. a helical spring, leaf spring, or elastic strap
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/15Devices for taking samples of blood
    • A61B5/151Devices specially adapted for taking samples of capillary blood, e.g. by lancets, needles or blades
    • A61B5/15142Devices intended for single use, i.e. disposable
    • A61B5/15144Devices intended for single use, i.e. disposable comprising driving means, e.g. a spring, for retracting the piercing unit into the housing
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/15Devices for taking samples of blood
    • A61B5/151Devices specially adapted for taking samples of capillary blood, e.g. by lancets, needles or blades
    • A61B5/15186Devices loaded with a single lancet, i.e. a single lancet with or without a casing is loaded into a reusable drive device and then discarded after use; drive devices reloadable for multiple use
    • A61B5/15188Constructional features of reusable driving devices
    • A61B5/15192Constructional features of reusable driving devices comprising driving means, e.g. a spring, for retracting the lancet unit into the driving device housing
    • A61B5/15194Constructional features of reusable driving devices comprising driving means, e.g. a spring, for retracting the lancet unit into the driving device housing fully automatically retracted, i.e. the retraction does not require a deliberate action by the user, e.g. by terminating the contact with the patient's skin
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/15Devices for taking samples of blood
    • A61B5/150007Details
    • A61B5/150206Construction or design features not otherwise provided for; manufacturing or production; packages; sterilisation of piercing element, piercing device or sampling device
    • A61B5/150259Improved gripping, e.g. with high friction pattern or projections on the housing surface or an ergonometric shape

Abstract

The present invention provides an actuator mechanism for sequentially advancing and retracting a lancet needle and includes a drive carriage for advancing and retracting the lancet needle and a hinge structure operatively connected to displace the drive carriage. The hinge structure includes first and second coupled leaf members relatively pivotal between a first position thereof in which the drive carriage is advanced to project and thrust the lancet needle into a tissue penetration position, and the second pivotal position of the leaf members in which the drive carriage is retracted to withdraw the lancet needle from the penetration position. The leaf members can also be pivotal to a third position in which the drive carriage is retracted prior to initiating the advancement so that the first position of the leaf members is pivotally intermediate between the second and third~relative positions thereof. The drive carriage is thus advanced and thereafter retracted for thrusting and then withdrawing the lancet needle in continuous reversal motions thereof. The drive carriage is guided so that the advancement and retraction motions are along a highly accurate linear path.

Description

LANCET ACTUATOR WITH RETRACTABLE MECHANISM
BACKGROUND OF THE INVENTION
This invention relates to lancet devices for use by physicians and technicians to extract a patient's blood sample, and more particularly reJ.ates to a mechanism for effecting the initial puncture and thereafter retracting the lancet needle following the skin puncturing procedure.
In order to reduce trauma to the patient during blood sampling procedures, automated finger lancet devices have been developed which eliminate the patient's view of both skin puncture and the lancet needle or blade itself. As ,:
described fox example in U.S. Patent x,892,097, the lancet needle can be housed within a small device which provides a spring-driven mechanism for thrusting and retracting the needle. While such devices obstruct the patient's view, considerable patient discomfort has been experienced when all lateral motion of the lancet needle is not prevented. This disadvantage is eliminated by the lancet actuator in accordance with the present invention which provides improved patient comfort in that initial puncture and withdrawal of the lancet needle is effected in a continuous, smooth motion, and this is done rapidly, so that little or no lateral movement can take place.

SUMMARY OF THE INVENTION
In accordance with the present invention, an actuator mechanism for sequentially advancing and retracting a lancet needle comprises (a) drive carriage means for carrying, advancing, and retracting the lancet needle; (b) a hinge structure operatively connected to linearly displace said drive carriage means on a linear path along an axis of said drive carriage means and including first and second coupled leaf members, said drive carriage means being connected to one of said first and second leaf members which are relatively pivotal between a first position thereof in which said drive carriage means is advanced to project and thrust the lancet needle into a tissue penetration position and a second position in which said drive carriage means is retracted from said advance to withdraw the lancet needle from the penetration position the other of said first and second leaf members being further coupled to a pivot bearing structure of said mechanism for supporting said relative pivotal movement between said first and second leaf members. The leaf members are preferably also pivotal to a third position in which the drive carriage is retracted prior to initiating the advancement so that the first position of the leaf members is pivotally intermediate between the second and third relative positions thereof. The drive carriage is thus advanced and thereafter retracted for thrusting and then withdrawing the lancet needle in continuous reversal motions thereof. The drive carriage is guided so that the advancement and retraction motions are along a highly accurate linear path.
In a preferred embodiment, the drive carriage is integrally molded with a double hinge structure to form a transmission linkage including two "living hinge" portions which convert the radial motion of the leaf members into the linear motions of the drive carriage and lancet needle. The smoothly guided and highly accurate linear motions of the lancet needle reduce the user discomfort. The drive carriage accepts removable lancet needle units so that the actuator is reusable with successive lancet needles. The actuator includes trigger and rearming structures which tension and release a torsion spring bearing against one of the leaf members to drive the transmission linkage and actuator operation.
A second preferred embodiment of the actuator is designed for single-use disposability, in which the lancet needle is insert molded within the drive carriage, and 2a trigger and rearming structures which tension and release a torsion spring bearing against one of the leaf members to drive the transmission linkage and actuator operation.
A second preferred embodiment of the actuator is designed for single-use disposability, in which the lancet needle is insert molded within the drive carriage, and -2a-~~~~J~~~
accordingly reuse of the unit by rearming or resetting of the structure is precluded.
BRIEF DESCRIPTION OF THE DRAWINGS
FIG. 1 is a cross-sectional view of a first embodiment of a lancet actuator device in accordance with the present invention;
FIGS. 2-4 are sectional views similar to FIG. 1 illustrating sequential operating positions of the actuator mechanism of the device;
FIG. 5 is a fragmentary sectional view similar to FIGS. 1-4 and illustrating removal of a lancet unit from the device;
FIG. 6 is a sectional view along a plane indicated at line 6-6 in FIG. 2;
FIG. 7 is a sectional view along a plane indicated at line 7-7 in FIG. 2; and FIGS. 8-10 are cross-sectional views of sequential operating positions of an actuator mechanism within a second embodiment of the lancet actuator device in accordance with the present invention.
DESCRIPTION OF THE ILLUSTRATED EMBODTMENT
Referring to FIG. 1, an embodiment of a lancet actuator in accordance with the present invention is generally designated by reference character 10. The actuator 10 accommodates the use of conventional, disposable lancet needle-and-support-body units A. The units A comprise a metal needle 11 carried by a plastic body 15. A lancet unit A is inserted into a lancet holder or carriage means ~.2 within the actuator 10, as more fully described hereinafter, prior to operation of the actuator 10 to puncture tissue in a blood sample extraction procedure, after which the lancet unit A is removed from the holder or carriage 12 for disposal. In the actuator 10 of the first embodiment, a split housing 14 has an access and operation aperture 16 formed at one end, 'through which the disposable lancet unit A
is inserted and removed. The actuator 10 also has a cap 18 which is snap-fitted to the housing 14 to cover the aperture 16 and the inserted lancet unit A during the blood extraction procedure, and therefore the cap 18 will be exposed to the blood sample and will consequently be disposable with the used lancet unit A. The cap 18 includes an opening 18a through which the needle 11 of lancet A can project. The extension of the cap 18 determines the length of the projection of the needle portion 11 therefrom, and therefore also determines the puncture depth when the cap 18 is seated on the donor's skin. FIG. 1 illustrates the mechanism of the actuator 10 preparatory to insertion of the lancet unit A and before the actuating mechanism has been cocked to prepare the actuator for operation. As can be appreciated, this condition of the actuator 10 also corresponds to that as would occur after completion of a prior procedure. Thus, the lancet unit A is positioned within the carriage or balder 12 and the cap 18 is snapped into place. The actuator is then cocked to arrive at the position shown in FIG. 2, as explained more fully hereinafter, and is thus ready for operation.
In operation of the actuator l0, the lancet holder 12 carries the lancet unit A from the retracted position shown in FIG. 2 to the linearly advanced position shown in FIG. 3 in which the lancet needle 11 projects from the clearance hole 18a to puncture the tissue, and then immediately retracts the lancet unit A into the position shown in FIG. 4. FIGS. 1 and 4 illustrate the same retracted position of the holder 12, although FIG. 1 also shows the cap 18 and lancet unit A prior to assembly.
The holder or carriage 12 is integrally molded and connected with a double hinge linkage structure 13 including first and second hinge leaf members 20 and 22 respectively, which form a transmission linkage to convert the radial motion of the leaf members 20 and 22 into linear motion of the holder or carriage 12 and the associated lancet unit A.
The second leaf 22 is directly coupled to the rear wall of the carriage 12 by a first integrally attenuated, flexible pivot portion 24 forming a '°living hinge" at the forward end of the second leaf member 22. A second integrally attenuated flexible portion 26 forms a "living hinge" joining the rear end of the second leaf 22 to the forward end of the first leaf 20 enabling relative pivot of the two leaves 20 and 22. ' A rotatable hub 28 is integrally molded at the rear end of the first leaf member 20. The first leaf 20 pivots with the rotation of the hub 28, as indicated by arrow 29, FIG. 3, which hub 28 is journaled on a stationary pivot bearing pin 30 which projects inwardly from the housing half 14. The hub 30 has a radially projecting boss 32 which seats the movable end 34 of a torsion spring 36 which is wound around the hub 30 and drives the hub rotation in the lancet displacement operation. The generally anchored end 38 of the torsion spring 36 is seated against a spring seat portion 40 of a pivoted trigger member, generally designated by reference character 42. The trigger member 42 has an integral pivot bearing pin 44 which is pivotally supported on an arcuate journal bearing 46 which projects inwardly from the housing half 14. The interior end of the trigger 42 is formed as a latch portion 48 which releasably engages a retainer cam 50 projecting from the hub 28 as shown in FIG. 2. The releasable trigger latching of the cam 50 retains the tension in the torsion spring 36 which maintains force against both the boss 32 and the trigger seat 40 in the cocked or armed condition of the actuator 10 shown in FIG. 2.
Tn order to arm the actuator 10 from the released condition of the spring 36 or previously fired position as shown in FIG. 1 in which the latch 48 is disengaged from the cam 50, a displaceable cocking member 52 is slidably mounted as shown for rearward movement into engagement with a laterally projecting foot portian 54 formed on the end of the boss 32. The cocking, counter-rotation of the foot 54 and hub 28 continue until the cam 50 reaches the latch 48, which is under tension from the spring 36. The element or cam 50 will pivot the latch position 48 of trigger 42 upwardly, ~~3~ i~
until said latch portion engages over the cam 50, to attain the armed or cocked position as shown in FzG. 2.
The rearward cocking motion of the cocking member 52 also compresses an attached, biasing coil spring 58 within a blind guide bore 60 formed in the housing 14. When this cocking motion is completed, manual disengagement from the cocking member 52 will permit the biasing spring 58 to return the cocking member 52 to a neutral position (FIGS. 1, 3 and 4) in which 'the biasing spring 58 is in expanded Condition.
Comparison of FIGS. 1 and 2 illustrates that the counterclockwise cocking motion of the hub 28 pivots the first leaf member 20 and the second hinge portion 26 downwardly as indicated by the motion arrows in FIG. 2.
At the other end of the integral linkage structure 13, as best shown in FIG. 6, the holder or carriage 12 has a laterally projecting and longitudinally extending guide flange 62 and an upwardly projecting and similarly longitudinally extended guide flange 64 which has a modified dove-tail or similarly convoluted cross-sectional configuration; the two guide flanges 62 and 64 are slidably displaceable through corresponding, mating receiving slots formed in the housing halves 14 and 15. FIG. 7 also illustrates that the slot 68 is vertically split between the housing halves 14 and 15. The guide flanges 62 and 64 insure that the holder 12 and lancet unit A are displaceable only in a smooth and accurately linear longitudinal path during advancement and retraction, without any lateral motion so that the lancet needle 11 enters and withdraws from the skin at a highly focused point of penetration, which eliminates any side-to-side motion of the lancet needle and the resulting penetration trauma and user discomfort experienced with prior actuator devices.
Since the holder or carriage 12 is constrained to an accurately linear longitudinal path of the advancement and retraction, the first hinge portion 24 adjacent the rear wall of the holder 12 is similarly limited to the highly linear motion of the holder displacement; therefor the downwardly pivotal motion of the second hinge portion 26 about the pin ~~3~~~°
30 pulls the rear end of the leaf 22 downwardly to induce a combined pivot and rearward translation of the leaf 22 which also pulls the rearward retraction of the holder 12 and lancet unit A through the highly linear path constrained by the guide flanges 62 and 64. FIG. 2 illustrates the pivotal position of the leaf members 20 and 22 which retracts the holder 12 into its "armed position°' prepared for advancement, in which the hinge portion 24 is a distance D from the surface of the rotatable hub 28, which is determined in general by the lengths B arid C of the respective leaf members and 22 and the angle of relative pivot therebetween.
Referring again to FIG. 3, when the surface of the cap 18 is placed against the donor's arm, and the trigger surface 56 is manually depressed the latch 48 is disengaged , 15 from the cam 50 and the hub 28 rotates in a clockwise direction, as indicated by arrow 29, under the influence of spring 36 to begin the lancet needle and skin puncture procedure. As hub 28 rotates, the leaf member 20 is pivotally driven upwardly and clockwise as indicated by the 20 direction of the arrow P. Correspondingly, the leaf 22 will pivot in a counterclockwise direction from the position shown in FIG. 2 to the intermediate position of FIG. 3. The resulting pivotal movement of the coupled leaf member 22 produces the linear advancement of the holder or carriage 12 and lancet needle 11 which reaches its maximum projection from the cap aperture 18a (corresponding to the maximum skin puncture depth) when the leaf members 20 and 22 are linearly aligned, as shown in FIG. 3, corresponding to the position of hinge portion 24 at maximum distance E from the surface of the hub 28. Thus, the advancing displacement of the holder 12 and lancet needle 11 can be expressed by the difference between the distance E and the distance D. In addition, however, the torsion spring 36 continues to drive the hub 28, which produces continued upward, clockwise pivotal movement of the leaf member 20 so that the resulting pivot of the leaf member 22, in which hinge portion 26 becomes elevated relative to the hinge portian 24, produces a smooth reversal in the advancement of the holder or carriage 12 and lancet J

needle 11 and their linear withdrawal to the maximum position of retraction shown in FIG. 4 which is indicated by the position of the hinge portion 24 at minimum distance F from the surface of 'the hub 28. This reverse stroke of the holder and lancet needle can be expressed by the difference between the distance E and the distance F.
The operation of the~actuator 10 from the armed position in FIG. 2 through the intermediate, skin puncturing position in FIG. 3 and continuously to the needle withdrawal, retracted position in FIG. 4 can thus be measured by the displacements of the hinge portion 24 from the initially retracted distance D to the maximally advanced distance E and then retracted to the distance F in the smooth and highly linear displacement reversals as the leaf member 20 is pivotally driven clockwise by the tensioned torsion spring 36.
When the actuator operation and lancet puncture procedure are completed as reflected in the actuator position shown in FIG. 4,. the used lancet unit A is ejected from the holder 12 by sliding the cocking member 52 forward from its neutral position as shown in FIG. 4 into the forward position shown in FIG. 5; in this position the ejector portion 70, on the upper part of the cocking member 52 enters and passes through the slot 72 formed through the rear end of the holder so that the ejector portion 70 engages and displaces the lancet unit A from the aperture 16 of the holder 12. The cocking member 52 is then manually retracted to the neutral position shown in FIG. 4 so that the ejector portion 70 is withdrawn from the slot 72. A new lancet unit A can then be inserted into the holder l2 which is maintained in the fully retracted position of FTG. 4 during the friction-fit insertion of the lancet unit A by a stop member 74, depending from the housing 14. The stop member 74 engages the rear end of the guide flange 64 to arrest further retraction of the holder 12. After installing the new lancet unit A, 'the actuator 10 can then be armed to the position shown in FIG. 2 in the cocking operation described hereinabove with reference thereto.
_g_ Referring now to FIGS. 8, 9 and 10, a second embodiment of the actuator in accordance with this invention is generally designated by reference character 100. The entire actuator 100 can be employed for single-use disposability, and therefore the double hinged linkage structure generally designated by reference character 102 is similar to the double hinge linkage structure 13 in the first embodiment of the actuator 10, with the exception that a lancet needle 104 is insert molded within the integrally molded holder or carriage 106.
In operation, the lancet needle 104 is driven forwardly from the retracted position shown in FIG. 8 to project from the operation aperture 108 at the forward end of the split housing 110 as shown in FIG. 9; the continued pivot of the first and second leaf members 112 and 114 of the linkage structure 102 produces the immediately sequential retraction of the lancet needle 104 and holder 106 to the safely withdrawn position shown in FIG. 10. The operation of the actuator is driven by a flat or leaf spring 116 which is anchored at one end 118 within the housing 110 and is initially flexed as shown in FIG. 8 by engagement of the opposite end 120 against a spring seat 122 formed at the rear end of a manual trigger member 124. The trigger member 124 is maintained in the armed condition of the actuator 100 and spring 116 by wedged engagement with a safety tab 126 which is integrally secured to the housing 110 by a small detachable web 128.
When the actuator 100 is employed to puncture the intended 'tissue, the web 128 is fractured to detach the safety tab 126. After removal of the safety tab 126, the trigger member 124 can be manually depressed in a downward direction as shown in FIG. 9, thus pivoting the trigger member about the pivot bearing 130 so that the spring end 120 becomes unseated from the trigger spring seat 122 and a retaining pin 132 on the trigger becomes unseated from a retaining notch 134 formed in a retaining cam 136 extending from the first leaf member 112. The released spring end 120 unflexes leftwardly, as shown in FIG. 9, so that it engages against a bearing cam 138 formed on the first leaf member 112 so that the entire leaf member 112 is driven to pivot in a counterclockwise direction about the integrally farmed pivot bearing 140 which is journaled in the housing 110. Resulting relative pivotal motion of the hinge members 112 and 114 brings the hinge members to the intermediate position of full extension as shown in FIG. 9 which advances the integrally hinged holder or carriage 106 slidably through the extended guide bore 142 formed in the housing 110. The bore 142 opens into the operating aperture 108 from which the advanced lancet needle 104 is extended to achieve the tissue puncture.
Thereafter as shown in FIG. 10 the continuous counterclockwise rotation of the first leaf member 112 under action of the spring end 120 also drives the smoothly l5 continuous relative pivot of the second leaf member 114 which pulls the immediately sequential and highly accurate linear retraction of the holder 106 through the guide bore 142 as shown in FIG. 10 so that the lancet needle is safely withdrawn from the aperture 108. Since the second actuator embodiment 100 has a simplified design for single-use disposability, a rearming mechanism for repeated use is unnecessary but could be provided.
In light of the foregoing description of the embodied lancet actuators, modifications will be evident to those skilled in the design of such mechanisms and are within the broad scope of the appended claims and equivalents thereof.

Claims (30)

1. A mechanism for sequentially advancing and retracting a lancet needle, comprising:
(a) drive carriage means for carrying, advancing, and retracting the lancet needle;
(b) a hinge structure operatively connected to linearly displace said drive carriage means on a linear path along an axis of said drive carriage means and including first and second coupled leaf members, said drive carriage means being connected to one of said first and second leaf members which are relatively pivotal between a first position thereof in which said drive carriage means is advanced to project and thrust the lancet needle into a tissue penetration position and a second position in which said drive carriage means is retracted from said advance to withdraw the lancet needle from the penetration position the other of said first and second leaf members being further coupled to a pivot bearing structure of said mechanism for supporting said relative pivotal movement between said first and second leaf members.
2. A mechanism according to claim 1, wherein said leaf members are relatively pivotal to a third position thereof in which said drive carriage means is retracted prior to initiating said advancement to said first position.
3. A mechanism according to claim 2, wherein said first position of said leaf members is pivotally intermediate between said second and third relative positions thereof.
4. A mechanism according to claim 1, further comprising control means for actuating relative pivotal movement of said leaf members from said third position through said first position into said second position such that said drive carriage means is advanced and thereafter retracted for thrusting and then withdrawing said lancet needle in continuous motions thereof.
11a
5. A mechanism according to claim 4, wherein said control means comprises energy storage means for propelling said relative pivotal motion of said first and second leaf members.
6. A mechanism according to claim 5, wherein said energy storage means comprises spring means bearing against said first leaf member and propelling pivotal movement thereof relative to said second leaf member.
7. A mechanism according to claim 1, further comprising guide means for guiding said advancement and retraction of said drive carriage means along a linear displacement path.
8. A mechanism according to claim 1, wherein said first and second leaf members are pivotally extended at an angle of 180° therebetween in said first position.
9. A mechanism according to claim 1, wherein said hinge structure includes a first pivot bearing means pivotally coupling said first and second leaf members, said first pivot bearing means being pivotal about a second pivot bearing means during said relative pivot of said first and second leaf members.
10. A mechanism according to claim 1, wherein said hinge structure further comprises a second, translationally stationary pivot bearing means secured to one end of said first leaf member and an opposite end of said first leaf member is secured to a first pivot bearing means pivotally coupling said first and second leaf members, said first pivot bearing means being pivotal about said second pivot bearing means during said relative pivot of said first and second leaf members between said first and second positions.
11. A mechanism according to claim 10, further comprising control means for actuating said pivot of said leaf members.
12. A mechanism according to claim 11, wherein said control means comprises spring means bearing against said first leaf member and propelling pivot thereof relative to said second leaf member.
13. A mechanism according to claim 12, wherein said control means further comprises retention means for releasably retaining energy of said spring means for said propulsion.
14. A mechanism according to claim 13, wherein said retention means comprises manually operable release means for releasing said spring means energy.
15. A mechanism according to claim 1, further comprising spring means bearing against said first leaf member for propelling pivot thereof relative to said second leaf member, and cocking means for energizing said spring means.
16. An actuating mechanism for sequentially advancing and retracting a lancet needle, comprising:
a) drive carriage means for carrying, advancing, and retracting the lancet needle;
b) a hinge structure operatively connected to displace said drive carriage means and including first and second coupled leaf members, said drive carriage means being connected to said second leaf member, said first and second leaf members being relatively pivotal between a first position thereof in which said drive carriage means is advanced to project and thrust the lancet needle into a tissue penetration position and a second position in which said drive carriage means is retracted from said advance to withdraw the lancet needle from the penetration position, wherein said hinge structure further comprises a second, translationally stationary pivot bearing means secured to one end of said first leaf member and an opposite end of said first leaf member is secured to a first pivot bearing means pivotally coupling said first and second leaf members, said first pivot bearing means being pivotal about said second pivot bearing means during said first and second positions and wherein said second pivot bearing means comprises a rotational hub member on which a torsion spring bears for propelling pivot of said first leaf member.
17. A mechanism according to claim 16, comprising control means for actuating rotation of said hub member and pivot of said first leaf member.
18. A mechanism according to claim 17, wherein said control means comprises manually operable trigger means for releasing tension in said torsion spring for said propulsion.
19. A mechanism according to claim 18, wherein said trigger means comprises a cam portion projecting from said hub member and releasably engaged by a deflectable trigger latch member for retaining said tension torsion spring until manual deflection of said trigger latch releases the engage-ment of said cam and said tension.
20. An actuating mechanism for sequentially advancing and retracting a lancet needle, comprising:
a) drive carriage means for carrying, advancing, and retracting the lancet needle:
b) a hinge structure operatively connected to displace said drive carriage means and including first and second coupled leaf members, said drive carriage means being connected to said second leaf member, said first and second leaf members being relatively pivotal between a first position thereof in which said drive carriage means is advanced to project and thrust the lancet needle into a tissue penetration position and a second position in which said drive carriage means is retracted from said advance to withdraw the lancet needle from the penetration position, further comprising spring means bearing against said first leaf member for propelling pivot thereof relative to said second leaf member, and cocking means for energizing said spring means, wherein said cocking means is movably biased toward a neutral position thereof removed from energizing said spring means.
21. An actuating mechanism for sequentially advancing and retracting a lancet needle, comprising:
a) drive carriage means for carrying, advancing, and retracting the lancet needle;
b) a hinge structure operatively connected to displace said drive carriage means and including first and second coupled leaf members, said drive carriage means being connected to said second leaf member, said first and second leaf members being relatively pivotal between a first position thereof in which said drive carriage means is advanced to project and thrust the lancet needle into a tissue penetration position and a second position in which said drive carriage means is retracted from said advance to withdraw the lancet needle from the penetration position, wherein said hinge structure further comprises a pivot bearing rotational hub secured to one end of said first leaf member on which a spring means bears for propelling said pivot of said first leaf member, and further comprising a cocking member selectively engageable with either said hub for energizing said spring means, or engageable with said drive carriage means for detachment of a lancet structure removably carried on said drive carriage means.
22. An actuating mechanism for sequentially advancing and retracting a lancet needle, comprising:
a) drive carriage means for carrying, advancing, and retracting the lancet needle;
b) a hinge structure operatively connected to displace said drive carriage means and including first and second coupled leaf members, said drive carriage means being connected to one of said first and second leaf members which are relatively pivotal between a first position thereof in which said drive carriage means is advanced to project and thrust the lancet needle into a tissue penetration position and a second position in which said drive carriage means is retracted from said advance to withdraw the lancet needle from the penetration position, the other of said first and second leaf members being further coupled to a pivot bearing structure of said mechanism, wherein said drive carriage means comprises a housing structure for removably receiving a body portion of a lancet structure, said body portion being slidably received and withdrawn through an access aperture formed in said housing structure.
23. A mechanism according to claim 22, wherein said drive carriage housing structure includes a through slot through which an ejection portion of said cocking member enters said housing structure and displaces said lancet structure therefrom through said access aperture in order to achieve said detachment of said lancet structure therefrom.
24. A mechanism according to claim 22, further comprising a housing for containing and supporting said mechanism, said housing having a stop member secured therein for engagement with said drive carriage housing structure at a terminally retracted position thereof in order to hold said drive carriage housing structure stationary during slidable insertion of said lancet body and structure therein.
25. A mechanism for sequentially advancing and retracting a lancet needle, comprising:
a) drive carriage means for carrying, advancing, and retracting the lancet needle;
b) a hinge structure operatively connected to displace said drive carriage means and including first and second coupled leaf members which are relatively pivotal between a first position thereof in which said drive carriage means is advanced to project and thrust the lancet needle into a tissue penetration position and a second position in which said drive carriage means is retracted from said advance to withdraw the lancet needle from the penetration position, wherein said drive carriage means and said first and second leaf members are integrally molded and defined within a unitary molded structure wherein said drive carriage means is connected to said second leaf member by a first attenuated portion of said molded structure forming a flexible hinge coupling between said second leaf member and said drive carriage means, and wherein said first and second leaf members are joined by a second attenuated portion of said unitary molded structure pivotally coupling said leaf members, said first leaf member being further coupled to a pivot bearing structure therefor, such that said relative pivot of said first and second leaf members produces said advancement and retraction of said integrally connected drive carriage means.
26. An actuating mechanism for sequentially advancing and retracting a lancet needle comprising:
a) drive carriage means for carrying, advancing, and retracting the lancet needle;
b) a hinge structure operatively connected to displace said drive carriage means and including first and second coupled leaf members relatively pivotal between a first position thereof in which said drive carriage means is advanced to project and thrust the lancet needle into tissue penetration position and a second position in which said drive carriage means is retracted to withdraw the lancet needle from the penetration position thereof, wherein said drive carriage means and said first and second leaf members are integrally molded and in which said drive carriage means is connected to one of said first and second leaf members by a first flexible hinge coupling portion, the other of said first and second leaf members being further coupled to a pivot bearing support therefor, and said first and second leaf members are joined by a second flexible hinge coupling portion such that relative pivot of said first and second leaf members produces said advancement and retraction of said integrally connected drive carriage means.
27. A mechanism according to claim 26, further compris-ing guide means for guiding said advancement and retraction of said drive carriage means along a highly linear displacement path.
28. A unitary, molded transmission linkage structure for use in sequentially advancing and retracting a lancet needle, comprising:
a) drive carriage means for carrying, advancing, and retracting the lancet needle;
b) a hinge structure operatively connected to displace said drive carriage means and including first and second coupled leaf members relatively pivotal between a first position thereof in which said drive carriage means is advanced to project and thrust the lancet needle into tissue penetration position and a second position in which said drive carriage means is retracted to withdraw the lancet needle from the penetration position thereof, wherein said drive carriage means and said first and second leaf members are integrally molded in which said drive carriage means is connected to one of said first and second leaf members by a first flexible hinge coupling portion, the other of said first and second leaf members being further coupled to a pivot bearing support therefor, and said first and second leaf members are joined by a second flexible hinge coupling portion such that relative pivot of said first and second leaf members produces said advancement and retraction of said integrally connected drive carriage means.
29. A unitary, molded transmission linkage structure according to claim 28, further comprising said lancet needle secured to said drive carriage means.
30. A unitary, molded transmission linkage structure according to claim 29, wherein said lancet needle is secured by insertion during said integral molding of said drive carriage means.
CA002039996A 1990-05-21 1991-04-08 Lancet actuator with retractable mechanism Expired - Lifetime CA2039996C (en)

Applications Claiming Priority (2)

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US526,290 1990-05-21
US07/526,290 US5196025A (en) 1990-05-21 1990-05-21 Lancet actuator with retractable mechanism

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CA2039996C true CA2039996C (en) 2001-08-21

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EP (1) EP0458451B1 (en)
JP (1) JPH04261645A (en)
AT (1) ATE130742T1 (en)
AU (1) AU636747B2 (en)
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Families Citing this family (179)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5116353B1 (en) * 1990-10-05 1996-09-10 Digital Voice Systems Inc Safety trocar
US5474539A (en) * 1991-02-07 1995-12-12 Origin Medsystems, Inc. Trocar with retracting tip
JPH07500995A (en) * 1991-11-12 1995-02-02 アクティムド・ラボラトリーズ・インコーポレイテッド lancet device
US5441513A (en) * 1992-03-12 1995-08-15 United States Surgical Corporation Retracting tip trocar assembly
GB9207120D0 (en) * 1992-04-01 1992-05-13 Owen Mumford Ltd Improvements relating to blood sampling devices
DE4212315A1 (en) * 1992-04-13 1993-10-14 Boehringer Mannheim Gmbh Blood lancet device for drawing blood for diagnostic purposes
US5318583A (en) * 1992-05-05 1994-06-07 Ryder International Corporation Lancet actuator mechanism
CA2079192C (en) * 1992-09-25 1995-12-26 Bernard Strong Combined lancet and multi-function cap and lancet injector for use therewith
DE4320463A1 (en) * 1993-06-21 1994-12-22 Boehringer Mannheim Gmbh Blood lancet device for drawing blood for diagnostic purposes
US5304193A (en) * 1993-08-12 1994-04-19 Sam Zhadanov Blood lancing device
US5545174A (en) * 1994-01-11 1996-08-13 Sherwood Medical Company Finger stick device
US5350392A (en) * 1994-02-03 1994-09-27 Miles Inc. Lancing device with automatic cocking
US5527334A (en) * 1994-05-25 1996-06-18 Ryder International Corporation Disposable, retractable lancet
US5476474A (en) * 1994-07-27 1995-12-19 Ryder International Corporation Rotary lancet
AUPN689695A0 (en) * 1995-12-01 1995-12-21 Brakey, Dale Robert Blood letting device
GB9619462D0 (en) * 1996-09-18 1996-10-30 Owen Mumford Ltd Improvements relating to lancet devices
US5984940A (en) * 1997-05-29 1999-11-16 Atrion Medical Products, Inc. Lancet device
US5797940A (en) * 1997-05-30 1998-08-25 International Technidyne Corporation Adjustable skin incision device
US5746761A (en) * 1997-07-03 1998-05-05 Arkadiy Turchin Disposable lancet for finger/heel stick
US5938679A (en) * 1997-10-14 1999-08-17 Hewlett-Packard Company Apparatus and method for minimally invasive blood sampling
US6036924A (en) * 1997-12-04 2000-03-14 Hewlett-Packard Company Cassette of lancet cartridges for sampling blood
US5971941A (en) * 1997-12-04 1999-10-26 Hewlett-Packard Company Integrated system and method for sampling blood and analysis
US5871494A (en) * 1997-12-04 1999-02-16 Hewlett-Packard Company Reproducible lancing for sampling blood
US6071294A (en) * 1997-12-04 2000-06-06 Agilent Technologies, Inc. Lancet cartridge for sampling blood
US6139562A (en) * 1998-03-30 2000-10-31 Agilent Technologies, Inc. Apparatus and method for incising
US6391005B1 (en) 1998-03-30 2002-05-21 Agilent Technologies, Inc. Apparatus and method for penetration with shaft having a sensor for sensing penetration depth
US7077828B2 (en) * 1999-03-05 2006-07-18 Roche Diagnostics Gmbh Device for withdrawing blood for diagnostic applications
DE19909602A1 (en) * 1999-03-05 2000-09-07 Roche Diagnostics Gmbh Device for drawing blood for diagnostic purposes
AUPQ089299A0 (en) 1999-06-10 1999-07-01 N & V Curie Pty Ltd Disposable lancet device
US6558402B1 (en) * 1999-08-03 2003-05-06 Becton, Dickinson And Company Lancer
PL189108B1 (en) * 1999-09-06 2005-06-30 Htl Strefa Sp Z Oo Puncturing device
DE19948759A1 (en) 1999-10-09 2001-04-12 Roche Diagnostics Gmbh Blood lancet device for drawing blood for diagnostic purposes
CA2287757A1 (en) 1999-10-29 2001-04-29 Medical Plastic Devices M.P.D. Inc. Disposable lancet
US8814896B2 (en) 1999-11-02 2014-08-26 Stat Medical Devices, Inc. Single use lancet assembly
US20050070945A1 (en) 1999-11-02 2005-03-31 Steven Schraga Single use lancet assembly
US6706159B2 (en) 2000-03-02 2004-03-16 Diabetes Diagnostics Combined lancet and electrochemical analyte-testing apparatus
US6607543B2 (en) * 2000-06-13 2003-08-19 Bayer Corporation Lancing mechanism
US6358265B1 (en) 2000-07-18 2002-03-19 Specialized Health Products, Inc. Single-step disposable safety lancet apparatus and methods
DE10053974A1 (en) 2000-10-31 2002-05-29 Roche Diagnostics Gmbh Blood collection system
US8641644B2 (en) 2000-11-21 2014-02-04 Sanofi-Aventis Deutschland Gmbh Blood testing apparatus having a rotatable cartridge with multiple lancing elements and testing means
DE10057832C1 (en) * 2000-11-21 2002-02-21 Hartmann Paul Ag Blood analysis device has syringe mounted in casing, annular mounting carrying needles mounted behind test strip and being swiveled so that needle can be pushed through strip and aperture in casing to take blood sample
DE10121883A1 (en) 2001-05-05 2002-11-07 Roche Diagnostics Gmbh Blood Collection system
JP2004527335A (en) * 2001-05-22 2004-09-09 エラン・ファルマ・インターナショナル・リミテッド In particular, a mechanism to prevent premature activation during drug administration
US7749174B2 (en) 2001-06-12 2010-07-06 Pelikan Technologies, Inc. Method and apparatus for lancet launching device intergrated onto a blood-sampling cartridge
US7981056B2 (en) 2002-04-19 2011-07-19 Pelikan Technologies, Inc. Methods and apparatus for lancet actuation
US7025774B2 (en) 2001-06-12 2006-04-11 Pelikan Technologies, Inc. Tissue penetration device
US9226699B2 (en) 2002-04-19 2016-01-05 Sanofi-Aventis Deutschland Gmbh Body fluid sampling module with a continuous compression tissue interface surface
US8337419B2 (en) 2002-04-19 2012-12-25 Sanofi-Aventis Deutschland Gmbh Tissue penetration device
DE60238119D1 (en) 2001-06-12 2010-12-09 Pelikan Technologies Inc ELECTRIC ACTUATOR ELEMENT FOR A LANZETTE
US9427532B2 (en) 2001-06-12 2016-08-30 Sanofi-Aventis Deutschland Gmbh Tissue penetration device
EP1404232B1 (en) 2001-06-12 2009-12-02 Pelikan Technologies Inc. Blood sampling apparatus and method
US9795747B2 (en) 2010-06-02 2017-10-24 Sanofi-Aventis Deutschland Gmbh Methods and apparatus for lancet actuation
US7699791B2 (en) 2001-06-12 2010-04-20 Pelikan Technologies, Inc. Method and apparatus for improving success rate of blood yield from a fingerstick
US7316700B2 (en) 2001-06-12 2008-01-08 Pelikan Technologies, Inc. Self optimizing lancing device with adaptation means to temporal variations in cutaneous properties
DE20213607U1 (en) 2002-02-21 2003-07-03 Hartmann Paul Ag Blood analyzer for the determination of an analyte
US7470250B2 (en) * 2002-03-22 2008-12-30 Novo Nordisk A/S Apparatus for automatic insertion of a solid medicine
US7674232B2 (en) 2002-04-19 2010-03-09 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US9314194B2 (en) 2002-04-19 2016-04-19 Sanofi-Aventis Deutschland Gmbh Tissue penetration device
US8267870B2 (en) 2002-04-19 2012-09-18 Sanofi-Aventis Deutschland Gmbh Method and apparatus for body fluid sampling with hybrid actuation
US8784335B2 (en) 2002-04-19 2014-07-22 Sanofi-Aventis Deutschland Gmbh Body fluid sampling device with a capacitive sensor
US7717863B2 (en) 2002-04-19 2010-05-18 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US8372016B2 (en) 2002-04-19 2013-02-12 Sanofi-Aventis Deutschland Gmbh Method and apparatus for body fluid sampling and analyte sensing
US8579831B2 (en) 2002-04-19 2013-11-12 Sanofi-Aventis Deutschland Gmbh Method and apparatus for penetrating tissue
US7547287B2 (en) 2002-04-19 2009-06-16 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US7291117B2 (en) 2002-04-19 2007-11-06 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US7232451B2 (en) 2002-04-19 2007-06-19 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US7976476B2 (en) 2002-04-19 2011-07-12 Pelikan Technologies, Inc. Device and method for variable speed lancet
US7229458B2 (en) 2002-04-19 2007-06-12 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US7901362B2 (en) 2002-04-19 2011-03-08 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US7175642B2 (en) 2002-04-19 2007-02-13 Pelikan Technologies, Inc. Methods and apparatus for lancet actuation
US7371247B2 (en) 2002-04-19 2008-05-13 Pelikan Technologies, Inc Method and apparatus for penetrating tissue
US8702624B2 (en) 2006-09-29 2014-04-22 Sanofi-Aventis Deutschland Gmbh Analyte measurement device with a single shot actuator
US7892183B2 (en) 2002-04-19 2011-02-22 Pelikan Technologies, Inc. Method and apparatus for body fluid sampling and analyte sensing
US8360992B2 (en) 2002-04-19 2013-01-29 Sanofi-Aventis Deutschland Gmbh Method and apparatus for penetrating tissue
US7374544B2 (en) * 2002-04-19 2008-05-20 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US8221334B2 (en) 2002-04-19 2012-07-17 Sanofi-Aventis Deutschland Gmbh Method and apparatus for penetrating tissue
US9795334B2 (en) 2002-04-19 2017-10-24 Sanofi-Aventis Deutschland Gmbh Method and apparatus for penetrating tissue
US9248267B2 (en) 2002-04-19 2016-02-02 Sanofi-Aventis Deustchland Gmbh Tissue penetration device
US7648468B2 (en) 2002-04-19 2010-01-19 Pelikon Technologies, Inc. Method and apparatus for penetrating tissue
US7297122B2 (en) 2002-04-19 2007-11-20 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US7909778B2 (en) 2002-04-19 2011-03-22 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US7491178B2 (en) 2002-04-19 2009-02-17 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US7713214B2 (en) 2002-04-19 2010-05-11 Pelikan Technologies, Inc. Method and apparatus for a multi-use body fluid sampling device with optical analyte sensing
US7331931B2 (en) 2002-04-19 2008-02-19 Pelikan Technologies, Inc. Method and apparatus for penetrating tissue
US6929649B2 (en) * 2002-04-23 2005-08-16 Lifescan, Inc. Lancing device with automatic stick and return
US8715309B2 (en) 2002-04-29 2014-05-06 Steven Schraga Lancet device
DE10223558A1 (en) * 2002-05-28 2003-12-11 Roche Diagnostics Gmbh System useful in withdrawing blood for diagnostic purposes, has housing, lancet guide and lancet drive provided with drive spring, cocking device, drive rotor and outputs side coupling mechanism
CA2444630A1 (en) * 2002-10-15 2004-04-15 Bayer Healthcare Llc Lancing device
US8574895B2 (en) 2002-12-30 2013-11-05 Sanofi-Aventis Deutschland Gmbh Method and apparatus using optical techniques to measure analyte levels
JP4621853B2 (en) * 2003-04-11 2011-01-26 アークレイ株式会社 Puncture device
US7632288B2 (en) 2003-05-12 2009-12-15 Boston Scientific Scimed, Inc. Cutting balloon catheter with improved pushability
US7621931B2 (en) * 2003-05-20 2009-11-24 Stat Medical Devices, Inc. Adjustable lancet device and method
US7758604B2 (en) * 2003-05-29 2010-07-20 Boston Scientific Scimed, Inc. Cutting balloon catheter with improved balloon configuration
US8262614B2 (en) 2003-05-30 2012-09-11 Pelikan Technologies, Inc. Method and apparatus for fluid injection
US7850621B2 (en) 2003-06-06 2010-12-14 Pelikan Technologies, Inc. Method and apparatus for body fluid sampling and analyte sensing
WO2006001797A1 (en) 2004-06-14 2006-01-05 Pelikan Technologies, Inc. Low pain penetrating
US20190357827A1 (en) 2003-08-01 2019-11-28 Dexcom, Inc. Analyte sensor
US7105006B2 (en) * 2003-08-15 2006-09-12 Stat Medical Devices, Inc. Adjustable lancet device and method
WO2005033659A2 (en) 2003-09-29 2005-04-14 Pelikan Technologies, Inc. Method and apparatus for an improved sample capture device
EP1680014A4 (en) 2003-10-14 2009-01-21 Pelikan Technologies Inc Method and apparatus for a variable user interface
US20050154410A1 (en) * 2003-11-12 2005-07-14 Conway William E. Lancing device and multi-lancet cartridge
US20080082117A1 (en) * 2003-11-12 2008-04-03 Facet Technologies, Llc Lancing device
US8221332B2 (en) * 2003-11-12 2012-07-17 Facet Technologies, Llc Multi-lancet cartridge and lancing device
US8668656B2 (en) 2003-12-31 2014-03-11 Sanofi-Aventis Deutschland Gmbh Method and apparatus for improving fluidic flow and sample capture
US7822454B1 (en) 2005-01-03 2010-10-26 Pelikan Technologies, Inc. Fluid sampling device with improved analyte detecting member configuration
CN101309642A (en) * 2004-03-15 2008-11-19 香港澳维有限公司 Lancet device and method of use
US7754047B2 (en) 2004-04-08 2010-07-13 Boston Scientific Scimed, Inc. Cutting balloon catheter and method for blade mounting
JP4944770B2 (en) 2004-04-16 2012-06-06 ファセット・テクノロジーズ・エルエルシー Cap displacement mechanism for puncture device and multi-lancet cartridge
US7566319B2 (en) 2004-04-21 2009-07-28 Boston Scientific Scimed, Inc. Traction balloon
WO2006011062A2 (en) 2004-05-20 2006-02-02 Albatros Technologies Gmbh & Co. Kg Printable hydrogel for biosensors
US9775553B2 (en) 2004-06-03 2017-10-03 Sanofi-Aventis Deutschland Gmbh Method and apparatus for a fluid sampling device
EP1765194A4 (en) 2004-06-03 2010-09-29 Pelikan Technologies Inc Method and apparatus for a fluid sampling device
JP2008504893A (en) * 2004-06-30 2008-02-21 ファセット・テクノロジーズ・エルエルシー Puncture device and multi-lancet cartridge
CA2579646A1 (en) * 2004-09-09 2006-03-16 Bayer Healthcare Llc Damping system for a lancet using compressed air
CN101072538A (en) * 2004-09-09 2007-11-14 拜尔健康护理有限责任公司 Single puncture lancing fixture with depth adjustment and control of contact force
WO2006037039A2 (en) * 2004-09-27 2006-04-06 Sutura, Inc. Handle for suturing apparatus
US20060069350A1 (en) * 2004-09-30 2006-03-30 Buenger David R Medical syringe injector pen
RU2390023C2 (en) * 2004-10-21 2010-05-20 БАЙЕР ХЕЛТКЭА ЭлЭлСи Probe dispenser and probe extractor
US8038691B2 (en) 2004-11-12 2011-10-18 Boston Scientific Scimed, Inc. Cutting balloon catheter having flexible atherotomes
US7291158B2 (en) * 2004-11-12 2007-11-06 Boston Scientific Scimed, Inc. Cutting balloon catheter having a segmented blade
US8652831B2 (en) 2004-12-30 2014-02-18 Sanofi-Aventis Deutschland Gmbh Method and apparatus for analyte measurement test time
US20060184191A1 (en) 2005-02-11 2006-08-17 Boston Scientific Scimed, Inc. Cutting balloon catheter having increased flexibility regions
TW200640419A (en) 2005-03-04 2006-12-01 Bayer Healthcare Llc Lancet-release mechanism
WO2006096539A1 (en) * 2005-03-04 2006-09-14 Bayer Healthcare Llc Lancet-release mechanism
US8197497B2 (en) 2005-06-20 2012-06-12 Medtronic Vascular, Inc. Method and apparatus for applying a knot to a suture
EP1903927A2 (en) * 2005-06-30 2008-04-02 Bayer Healthcare, LLC Single-puncture lancing system
DE602006017709D1 (en) * 2005-07-14 2010-12-02 Bayer Healthcare Llc LANZET DEVICE FOR ONE SKIN POINT
AR057484A1 (en) 2005-08-04 2007-12-05 Bayer Healthcare Llc SMALL PUNCTURE DEVICE
US20070100256A1 (en) * 2005-10-28 2007-05-03 Sansom Gordon G Analyte monitoring system with integrated lancing apparatus
US20070100364A1 (en) * 2005-10-28 2007-05-03 Sansom Gordon G Compact lancing apparatus
US7704265B2 (en) 2005-11-03 2010-04-27 Stat Medical Devices, Inc. Disposable/single-use blade lancet device and method
EP1852069B1 (en) * 2006-05-04 2015-06-17 Roche Diagnostics GmbH System for sampling blood from a body part
JP4871083B2 (en) * 2006-09-27 2012-02-08 テルモ株式会社 Body fluid collection unit
JP5087749B2 (en) * 2006-12-01 2012-12-05 メディパーパス ピーティーイー リミテッド Device for making an incision
JP2010521666A (en) * 2007-03-12 2010-06-24 バイエル・ヘルスケア・エルエルシー Single sensor meter system that does not require sensor operation and method using the same
US8303615B2 (en) * 2007-03-12 2012-11-06 Bayer Healthcare Llc Lancet-eject mechanism
JP5411125B2 (en) 2007-03-29 2014-02-12 ノーブルズ メディカル テクノロジーズ、インコーポレイテッド Suture device and system for closing a patent foramen ovale
US8469986B2 (en) 2007-03-30 2013-06-25 Stat Medical Devices, Inc. Lancet device with combined trigger and cocking mechanism and method
US20100094326A1 (en) * 2007-07-05 2010-04-15 Blackrock Kelso Capital Corporation Multi-lancet cartridge and lancing device
GB0715798D0 (en) * 2007-08-14 2007-09-19 Owen Mumford Ltd Lancing devices
JP4891276B2 (en) * 2007-08-23 2012-03-07 テルモ株式会社 Puncture device
EP2227132B1 (en) 2007-10-09 2023-03-08 DexCom, Inc. Integrated insulin delivery system with continuous glucose sensor
EP2265324B1 (en) 2008-04-11 2015-01-28 Sanofi-Aventis Deutschland GmbH Integrated analyte measurement system
US8771296B2 (en) 2008-05-09 2014-07-08 Nobles Medical Technologies Inc. Suturing devices and methods for suturing an anatomic valve
DE102008037082B4 (en) * 2008-06-06 2012-05-24 Gerresheimer Regensburg Gmbh Lancing device for a blood sampling
EP2375985B1 (en) 2008-12-18 2013-06-19 Facet Technologies, LLC Lancing device
US9375169B2 (en) 2009-01-30 2016-06-28 Sanofi-Aventis Deutschland Gmbh Cam drive for managing disposable penetrating member actions with a single motor and motor and control system
US9517027B2 (en) * 2009-07-10 2016-12-13 Facet Techonologies, Llc Advancement mechanism for cartridge-based devices
US8317812B2 (en) * 2009-07-29 2012-11-27 Wah Leong Lum Lancet device with lance retraction
EP2311373B1 (en) 2009-10-15 2012-08-01 Roche Diagnostics GmbH Piercing system for removal of a body fluid
US8512367B2 (en) * 2009-12-16 2013-08-20 Facet Technologies, Llc Blood sampling device with dual-link drive mechanism
USD634426S1 (en) 2010-04-08 2011-03-15 Facet Technologies, Llc Lancing device
US8965476B2 (en) 2010-04-16 2015-02-24 Sanofi-Aventis Deutschland Gmbh Tissue penetration device
EP2438946A1 (en) * 2010-10-08 2012-04-11 Sanofi-Aventis Deutschland GmbH Auto-injector
KR101214652B1 (en) * 2010-12-16 2012-12-24 주식회사 아이센스 Lancet apparatus for separating lancet
EP2676607B1 (en) * 2011-02-14 2016-04-20 Asahi Polyslider Co., Ltd. Lancet device
US20130085349A1 (en) 2011-06-21 2013-04-04 Yofimeter, Llc Analyte testing devices
US20120330188A1 (en) 2011-06-21 2012-12-27 Gadlight, Inc. Cocking and Advancing Mechanism for Analyte Testing Device
US8333716B1 (en) 2011-06-21 2012-12-18 Yofimeter, Llc Methods for using an analyte testing device
EP2775920B1 (en) * 2011-11-08 2016-08-17 Facet Technologies, LLC Lancing device with cam-actuated drive and separate guidance
EP2790581B1 (en) 2011-12-15 2016-06-08 Facet Technologies, LLC Latch mechanism for preventing lancet oscillation in a lancing device
CA2869342A1 (en) 2012-04-11 2013-10-17 Facet Technologies, Llc Lancing device with moving pivot depth adjust
US10456069B2 (en) 2012-04-12 2019-10-29 Facet Technologies, Llc Lancing device with side activated charge and eject mechanisms
SG194252A1 (en) * 2012-04-20 2013-11-29 Medipurpose Pte Ltd A lancet
CA2876967C (en) 2012-06-18 2017-12-05 Facet Technologies, Llc Uni-directional drive mechanism for lancing device
DE102012019401A1 (en) * 2012-10-04 2014-04-10 Gerresheimer Regensburg Gmbh Lancing device for blood sampling
WO2014083783A1 (en) 2012-11-30 2014-06-05 パナソニックヘルスケア株式会社 Puncture instrument, puncture needle cartridge mounted in puncture instrument, and method for using puncture instrument and puncture needle cartridge
EP2948060B1 (en) 2013-01-23 2018-12-12 Facet Technologies, LLC Push-to-charge lancing device
WO2015085145A1 (en) 2013-12-06 2015-06-11 Med-Venture Investments, Llc Suturing methods and apparatuses
AP2016009385A0 (en) * 2014-01-28 2016-08-31 Intrinsyk Llc Lancet assembly
US10178993B2 (en) 2014-07-11 2019-01-15 Cardio Medical Solutions, Inc. Device and method for assisting end-to-side anastomosis
US11375932B2 (en) 2015-12-30 2022-07-05 Dexcom, Inc. Transcutaneous analyte sensor systems and methods
USD806246S1 (en) 2016-02-25 2017-12-26 Steven Schraga Lancet cover
WO2018236766A1 (en) 2017-06-19 2018-12-27 Heartstitch, Inc. Suturing systems and methods for suturing body tissue
EP4154800A1 (en) 2017-06-23 2023-03-29 Dexcom, Inc. Transcutaneous analyte sensors, applicators therefor, and associated methods
US11331022B2 (en) 2017-10-24 2022-05-17 Dexcom, Inc. Pre-connected analyte sensors
AU2018354120A1 (en) 2017-10-24 2020-04-23 Dexcom, Inc. Pre-connected analyte sensors
EP4297648A1 (en) 2021-02-26 2024-01-03 Tasso, Inc. Bodily fluid collection devices and related methods
CN113081817A (en) * 2021-04-09 2021-07-09 周慧涛 Traditional chinese medical science is with vibrating skin needle of changeable dial

Family Cites Families (31)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4450A (en) * 1846-04-11 Spring-lancet
US55620A (en) * 1866-06-19 Improvement in spring-lancets
US2061A (en) * 1841-04-24 Spring-lancet
US245040A (en) * 1881-08-02 Jambs j
US677756A (en) * 1900-08-02 1901-07-02 Robert Caldwell Lancet.
US1135465A (en) * 1914-07-01 1915-04-13 William M Pollock Lancet.
US2694398A (en) * 1953-06-26 1954-11-16 Drigue Marlin J La Sterile needle assembly
US2864370A (en) * 1955-09-19 1958-12-16 Alvos Del Instrument for lancing snake bites
US3358689A (en) * 1964-06-09 1967-12-19 Roehr Products Company Inc Integral lancet and package
US3659608A (en) * 1969-12-15 1972-05-02 Damon Corp Snap-acting surgical lancet
CH538277A (en) * 1970-09-04 1973-06-30 Micromedic Systems Inc Percutaneous blood test device
US3760809A (en) * 1971-10-22 1973-09-25 Damon Corp Surgical lancet having casing
US3903887A (en) * 1974-06-24 1975-09-09 Becton Dickinson Co Needle
US4078552A (en) * 1975-06-23 1978-03-14 Warner-Lambert Company Device for and method of making standard and reproducible skin punctures
DE2657053C3 (en) * 1975-12-19 1980-01-31 Societe D'etudes Et D'applications Techniques S.E.D.A.T., Irigny, Rhone (Frankreich) Device comprising an acupuncture needle and a device for piercing the same
DE2642896C3 (en) * 1976-09-24 1980-08-21 7800 Freiburg Precision snapper for setting standard stab wounds in the skin for diagnostic purposes
GB1599654A (en) * 1977-08-05 1981-10-07 Holman R R Automatic lancet
US4358539A (en) * 1981-03-20 1982-11-09 Becton, Dickinson And Company Throw-away subculturing device
US4388925A (en) * 1981-03-23 1983-06-21 Becton Dickinson And Company Automatic retractable lancet assembly
US4375815A (en) * 1981-03-23 1983-03-08 Becton Dickinson And Company Retractable lancet assembly
US4414975A (en) * 1981-05-15 1983-11-15 Ryder International Corp. Blood lancet
FR2508305B1 (en) * 1981-06-25 1986-04-11 Slama Gerard DEVICE FOR CAUSING A LITTLE BITE TO COLLECT A BLOOD DROP
US4452243A (en) * 1981-07-20 1984-06-05 Cloverline, Inc. Sanitary blood lancet device
US4449529A (en) * 1981-11-18 1984-05-22 Becton Dickinson And Company Automatic retractable lancet assembly
US4455510A (en) * 1982-05-20 1984-06-19 Hid Systems, Inc. High intensity discharge ballast with hot restrike performance
US4517978A (en) * 1983-01-13 1985-05-21 Levin Paul D Blood sampling instrument
US4628929A (en) * 1985-08-16 1986-12-16 American Hospital Supply Corporation Retractable blade bleeding time device
US4735203A (en) * 1986-12-12 1988-04-05 Ryder International Corporation Retractable lancet
US4892097A (en) * 1988-02-09 1990-01-09 Ryder International Corporation Retractable finger lancet
US4924879A (en) * 1988-10-07 1990-05-15 Brien Walter J O Blood lancet device
US5035704A (en) * 1989-03-07 1991-07-30 Lambert Robert D Blood sampling mechanism

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AU7595091A (en) 1991-11-21
ATE130742T1 (en) 1995-12-15
EP0458451A1 (en) 1991-11-27
DE69114910T2 (en) 1996-04-18
AU636747B2 (en) 1993-05-06
US5196025A (en) 1993-03-23
ES2082135T3 (en) 1996-03-16
DE69114910D1 (en) 1996-01-11
JPH04261645A (en) 1992-09-17
CA2039996A1 (en) 1991-11-22
EP0458451B1 (en) 1995-11-29

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