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Kafe 바로가기국가/구분 | United States(US) Patent 등록 |
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국제특허분류(IPC7판) |
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출원번호 | US-0218633 (2008-07-17) |
등록번호 | US-8469973 (2013-06-25) |
발명자 / 주소 |
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출원인 / 주소 |
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대리인 / 주소 |
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인용정보 | 피인용 횟수 : 319 인용 특허 : 103 |
A tissue closure device includes a pusher assembly having a drive arm extending from a drive shaft and a drive mechanism at a distal end of the drive arm, wherein the drive mechanism is capable of releasably engaging and rotating a suturing needle having a pointed end and a blunt end about a rotatio
A tissue closure device includes a pusher assembly having a drive arm extending from a drive shaft and a drive mechanism at a distal end of the drive arm, wherein the drive mechanism is capable of releasably engaging and rotating a suturing needle having a pointed end and a blunt end about a rotational axis and a cartridge having a protective housing and the suturing needle, the cartridge extending from a distal end of a cartridge holder assembly and releasably attached to the cartridge holder assembly. A pointed end of the suturing needle may be positioned within the protective housing before and after a complete rotation of the suturing needle about the rotational axis. A removable electronic module may be provided controlled by an actuator that mechanically engages the drive shaft to rotate the drive shaft and the drive mechanism, thereby rotating the suturing needle about the rotational axis.
1. A tissue closure device comprising: a) a handle having a proximal end and a distal end, the handle defining an enclosable compartment therein, the enclosable compartment being adjustable from an open condition wherein the compartment is exposed to the environment outside the compartment to an enc
1. A tissue closure device comprising: a) a handle having a proximal end and a distal end, the handle defining an enclosable compartment therein, the enclosable compartment being adjustable from an open condition wherein the compartment is exposed to the environment outside the compartment to an enclosed condition wherein the enclosable compartment defines a sterile barrier that isolates the enclosable compartment from the environment outside the compartment;b) a pusher assembly extending from the distal end of the handle, the pusher assembly having a drive arm extending from a drive shaft and a drive mechanism at a distal end of the drive arm, wherein the drive mechanism is capable of releasably engaging and rotating a split ring suturing needle having a pointed end and a blunt end around a circular needle track about a rotational axis; andc) a removable electronic module that is removably disposable in the enclosable compartment, the enclosable compartment forming the sterile barrier around the removable electronic module when the handle is in the enclosed condition, the removable electronic module being controlled by an actuator that mechanically engages the drive shaft to rotate the drive shaft and the drive mechanism, thereby rotating the suturing needle about the rotational axis, the removable electronic module including: (i) a power source for providing power to the electronic module;(ii) a motor and a gear box adapted to provide a rotational force to rotate the drive shaft and the drive mechanism to rotate the suturing needle; and(iii) an electronics board that controls operation of the electronic module;wherein the handle includes a door that provides entry and exit for the removable electronic module, the door including a seal to help define the sterile barrier of the enclosable compartment; andd) a removable funnel adapted and configured to be placed within an opening defined in a proximal end of the handle, the funnel operating as a physical barrier to protect the sterility of the device when the removable electronic module is inserted into the handle, wherein the funnel has a proximal barrel and a distal barrel separated by a flange broad enough to form a barrier when the removable electronic module is inserted into the handle. 2. The tissue closure device of claim 1, wherein the gear box has a gear reduction ratio of about 100:1. 3. The tissue closure device of claim 1, wherein the removable electronic module further includes a drive pin adapted and configured to be received by a hole in a drive plate operably coupled to the drive arm, wherein advancement of the drive pin causes the drive plate and drive arm to rotate about the rotational axis. 4. The tissue closure device of claim 1 wherein the actuator is a manually operable trigger, button or switch. 5. The tissue closure device of claim 1 wherein the actuator is activated by automation using an electric power source. 6. The tissue closure device of claim 1 wherein the electronic module further comprises: (i) a stop plate that limits the rotation of the drive shaft and the drive mechanism; and(ii) a drive wheel having a drive pin that engages a drive plate on the pusher assembly and supplies a torque to drive the suturing needle, and at least two magnets and a Hall effect sensor used to detect the rotational travel of the drive shaft. 7. The tissue closure device of claim 6 wherein the power source includes a battery pack. 8. The tissue closure device of claim 6 wherein the power source includes an external power supply connected to a handle by a sterilizable cable. 9. The tissue closure device of claim 1, further comprising a removable cartridge having a protective housing and including a split ring suturing needle disposed therein, the cartridge extending from a distal end of a cartridge holder assembly and being releasably attached to the cartridge holder assembly. 10. The tissue closure device of claim 9 wherein the cartridge further comprises: a) a curved lip covering an arc greater than about 180° and less than about 330°;b) at least one groove for engaging an anti-rotate and locking bar on the cartridge holder assembly;c) a track in a wall whereby the suturing needle follows a curved path along the track during needle rotation; andd) an aperture in the curved lip which intercepts the track whereby the pointed end of the suturing needle traverses the aperture during each revolution of the suturing needle along the path. 11. The tissue closure device of claim 10 wherein the engagement of the anti-rotate and locking bar with the cartridge causes the aperture in the cartridge to be aligned with an aperture in the cartridge holder assembly. 12. The tissue closure device of claim 9 wherein the suturing needle covers an arc greater than about 180° and less than about 330° having an aperture located adjacent to the blunt end for engaging a suturing material. 13. The tissue closure device of claim 12 wherein the suturing material includes a flexible leader engaged to a wire suture. 14. The tissue closure device of claim 13 wherein the flexible leader has a diameter larger than a diameter of the wire suture. 15. The tissue closure device of claim 13 wherein a diameter of the flexible leader is equal to a diameter of the wire suture. 16. The tissue closure device of claim 13 wherein a mechanical crimp engages an end of the flexible leader and an end of the wire suture. 17. The tissue closure device of claim 13 wherein the flexible leader is a wire cable. 18. The tissue closure device of claim 13 wherein the wire suture is composed of stainless steel. 19. The tissue closure device of claim 9 wherein the cartridge holder assembly further includes a gate assembly to maintain the suturing needle within the protective housing of the cartridge, wherein the gate assembly pivots to permit a circular movement of the drive mechanism that engages the suturing needle. 20. An automated suturing device, comprising: a) a handle having a proximal end and a distal end, wherein the handle includes a door that provides entry and exit for a removable electronic module;b) a split ring suturing needle having an angular extent between less than about 330 degrees;c) a drive operatively associated with the handle, the drive being operative to advance the split ring suturing needle through bony tissue in a 360 degree rotation around a circular needle track, the drive including; i) a motor;ii) a gearbox operatively associated with the motor;iii) a drive wheel operatively associated with the gear box;iv) a drive shaft coupled to the drive wheel and extending distally therefrom;v) a drive arm coupled to the drive shaft and operatively associated with the split ring suturing needle;vi) a drive plate rotationally attached to the drive shaft; andvii) a drive pin extending between and coupled to the drive wheel and the drive plate, the drive pin radially offset from the drive shaft;d) an electronic controller operatively associated with the drive; ande) an actuator button operatively associated with the controller, wherein pressing the actuator button causes the controller to: i) advance the motor and gearbox in a first direction to cause at least a portion of the drive arm and the split ring suturing needle to advance from a start position through a drive stroke that is less than 360 degrees;ii) reverse direction of the drive arm to return it to the start position; andiii) advance the motor and gearbox along the first direction at least one more time to cause the drive arm to complete advancement of the split ring suturing needle about the 360 degree rotation;wherein the motor and gearbox are contained within a removable electronic module that can be removed from the suturing device to facilitate sterilization. 21. The automated suturing device of claim 20, wherein the electronic controller is also contained within the removable electronic module. 22. The automated suturing device of claim 20, wherein the drive arm is connected to a pawl that engages with and drives the split ring suturing needle. 23. The automated suturing device of claim 20, wherein the drive arm rotates through a first half circular arc when the actuator button is pressed to advance the needle through a first half of one rotation. 24. The automated suturing device of claim 20, wherein the controller returns the drive arm to the start position after the split ring suturing needle has completed a 360° rotation. 25. The automated suturing device of claim 24, wherein the device powers down after the drive arm is returned to the start position after the split ring suturing needle has completed a 360° rotation.
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더보기 버튼을 클릭하시면 더 많은 관련자료를 살펴볼 수 있습니다.
IPC | Description |
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A | 생활필수품 |
A62 | 인명구조; 소방(사다리 E06C) |
A62B | 인명구조용의 기구, 장치 또는 방법(특히 의료용에 사용되는 밸브 A61M 39/00; 특히 물에서 쓰이는 인명구조 장치 또는 방법 B63C 9/00; 잠수장비 B63C 11/00; 특히 항공기에 쓰는 것, 예. 낙하산, 투출좌석 B64D; 특히 광산에서 쓰이는 구조장치 E21F 11/00) |
A62B-1/08 | .. 윈치 또는 풀리에 제동기구가 있는 것 |
내보내기 구분 |
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구성항목 |
관리번호, 국가코드, 자료구분, 상태, 출원번호, 출원일자, 공개번호, 공개일자, 등록번호, 등록일자, 발명명칭(한글), 발명명칭(영문), 출원인(한글), 출원인(영문), 출원인코드, 대표IPC 관리번호, 국가코드, 자료구분, 상태, 출원번호, 출원일자, 공개번호, 공개일자, 공고번호, 공고일자, 등록번호, 등록일자, 발명명칭(한글), 발명명칭(영문), 출원인(한글), 출원인(영문), 출원인코드, 대표출원인, 출원인국적, 출원인주소, 발명자, 발명자E, 발명자코드, 발명자주소, 발명자 우편번호, 발명자국적, 대표IPC, IPC코드, 요약, 미국특허분류, 대리인주소, 대리인코드, 대리인(한글), 대리인(영문), 국제공개일자, 국제공개번호, 국제출원일자, 국제출원번호, 우선권, 우선권주장일, 우선권국가, 우선권출원번호, 원출원일자, 원출원번호, 지정국, Citing Patents, Cited Patents |
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