Claims
- 1. A fastener applier for a prosthesis comprising:
a drive mechanism sized and configured to be releasably coupled to the fastener to deploy the fastener into the prosthesis, and an actuator for the drive mechanism including a sensing mechanism that enables operation of the drive mechanism in response to a force sensed at or near the fastener.
- 2. A fastener applier according to claim 1wherein the sensing mechanism disables operation of the drive mechanism when force sensed is less than a predetermined magnitude.
- 3. A fastener applier according to claim 1wherein the sensing mechanism includes a switch assembly that is actuated in response to force sensed at or near the fastener.
- 4. A fastener applier for a prosthesis comprising:
a drive mechanism sized and configured to be releasably coupled to the fastener to deploy the fastener into the prosthesis, and an actuator for the drive mechanism including a sensing mechanism that enables operation of the drive mechanism in response to contact sensed with a surface at or near the fastener.
- 5. A fastener applier according to claim 4wherein the sensing mechanism disables operation of the drive mechanism in the absence of contact sensed.
- 6. A fastener applier according to claim 4wherein the sensing mechanism includes a switch assembly that is actuated in response to contact sensed at or near the fastener.
- 7. A fastener applier according to claim 1 or 4wherein the drive mechanism includes a carrier for the fastener.
- 8. A fastener applier according to claim 7wherein the carrier receives a single fastener at a time.
- 9. A fastener applier according to claim 1 or 4wherein the drive mechanism is magnetically coupled to the fastener.
- 10. A fastener applier according to claim 9wherein the drive mechanism is magnetically coupled to a single fastener at a time.
- 11. A fastener applier according to claim 1 or 4wherein the drive mechanism is mechanically coupled to the fastener.
- 12. A fastener applier according to claim 11wherein the drive mechanism is mechanically coupled to a single fastener at a time.
- 13. A fastener applier according to claim 1 or 4wherein the drive mechanism rotates the fastener for deployment.
- 14. A fastener applier according to claim 1 or 4further including a catheter body sized and configured for deployment in a targeted body region, and wherein at least a portion of the drive mechanism is carried by the catheter body.
- 15. A fastener applier according to claim 14wherein the catheter body includes a distal end, and wherein the sensing mechanism includes a component extending distally beyond the distal end of the catheter body.
- 16. A fastener applier according to claim 15wherein the component includes a carrier for the fastener.
- 17. A fastener applier according to claim 15wherein the component includes a force sensing probe.
- 18. A fastener applier according to claim 1 or 4further including a catheter body sized and configured for intraluminal passage, and wherein at least a portion of the drive mechanism is carried by the catheter body for deployment in a targeted endovascular region.
- 19. A fastener applier according to claim 18wherein the catheter body includes a distal end, and wherein the sensing mechanism includes a component extending distally beyond the distal end of the catheter body.
- 20. A fastener applier according to claim 19wherein the component includes a carrier for the fastener.
- 21. A fastener applier according to claim 19wherein the component includes a sensing probe.
- 22. A fastener sized and configured for singular deployment in tissue comprising
a fastener body having a distal end for penetrating tissue in response to a force and a proximal end for releasably coupling the fastener body to a force applier, and a stop structure associated with the proximal end to prevent over-penetration of the fastener body into tissue.
- 23. A fastener according to claim 22wherein the fastener body comprises a helical coil having an interior diameter, and wherein the stop structure comprises a leg of the coil that extends substantially across the entire interior diameter.
- 24. A fastener according to claim 23wherein the leg mechanically couples the fastener body to the force applier.
- 25. A fastener according to claim 22wherein the fastener body comprises a helical coil having an interior diameter, and wherein the stop structure comprises a cap that extends substantially across the entire interior diameter.
- 26. A fastener according to claim 25wherein the cap includes a fitting to engage the force applier.
- 27. A fastener according to claim 25wherein the cap includes a material that is magnetized.
- 28. A fastener according to claim 25wherein the cap includes a material that is attracted to a magnetized material.
- 29. A fastener according to claim 22wherein the stop structure couples the fastener body to the force applier.
- 30. A fastener according to claim 29wherein the stop structure includes a material that is magnetized.
- 31. A fastener according to claim 29wherein the stop structure includes a material that is attracted to a magnetized material.
- 32. A fastener according to claim 29wherein the stop structure mechanically couples the fastener body to the force applier.
- 33. A fastener according to claim 22wherein the fastener body comprises a helical coil.
- 34. A system for applying a fastener to a prosthesis within a body comprising
a fastener comprising a body having a distal end for penetrating tissue in response to a force and proximal end, a drive mechanism sized and configured to be releasably coupled to the proximal end of the fastener body to apply force, and an actuator for the drive mechanism including a sensing mechanism that enables operation of the drive mechanism in response to at least one of force sensed at or near the distal end of the fastener body, or (ii) contact sensed with a surface at or near the distal end of the fastener body.
- 35. A system according to claim 34wherein the fastener includes a stop structure associated with the proximal end to prevent over-penetration of the fastener body into tissue.
- 36. A system according to claim 34wherein the drive mechanism is sized and configured to be releasably coupled to a single fastener at a time.
- 37. A system according to claim 34further including a catheter body sized and configured for deployment in a targeted body region, and wherein at least a portion of the drive mechanism is carried by the catheter body.
- 38. A system according to claim 34further including a catheter body sized and configured for intraluminal passage, and wherein at least a portion of the drive mechanism is carried by the catheter body for deployment in a targeted endovascular region.
- 39. A system for applying a fastener to a prosthesis within a body comprising
a fastener comprising a body having a distal end for penetrating tissue in response to a force and proximal end that includes a stop structure to prevent over-penetration of the fastener body into tissue, and a drive mechanism sized and configured to be releasably coupled to the stop structure to apply force.
- 40. A system according to claim 39wherein the drive mechanism is sized and configured to be releasably coupled to a single fastener at a time.
- 41. A system according to claim 39further including a catheter body sized and configured for deployment in a targeted body region, and wherein at least a portion of the drive mechanism is carried by the catheter body.
- 42. A system according to claim 39further including a catheter body sized and configured for intraluminal passage, and wherein at least a portion of the drive mechanism is carried by the catheter body for deployment in a targeted endovascular region.
- 43. A prosthesis comprising
a prosthesis body, a fastener assembly integrally carried by the prosthesis body, the assembly including at least one fastener deployable into tissue in response to force applied by a force applier, and a tracking wire coupled to the fastener to guide the force applier into operative contact with the fastener.
- 44. A prosthesis comprising
a prosthesis body, and a fastener assembly integrally carried by the prosthesis body, the assembly including at least one fastener deployable into tissue in response to non-rotational force applied by a force applier.
- 45. A prosthesis according to claim 44further including a tracking wire coupled to the fastener to guide the force applier into operative contact with the fastener.
- 46. A fastener sized and configured for singular deployment in tissue comprising
a fastener body having a distal end for penetrating tissue in response to a force and proximal end for releasably coupling the fastener body to a force applier, and a tracking wire coupled to the proximal end to guide the force applier into operative contact with the fastener.
RELATED APPLICATION
[0001] This application claims the benefit of co-pending U.S. patent application Ser. No. 10/271,334, filed Oct. 15, 2002. This application also claims the benefit of co-pending U.S. Provisional Application Serial No. 60/333,937 filed 28 Nov. 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60333937 |
Nov 2001 |
US |