Catheter based fastener implantation apparatus and methods
First Claim
1. A system comprising:
- at least one tissue-piercing fastener having a sharpened distal tip for piercing and penetrating tissue,a fastener attachment assembly sized and configured to be deployed from a remote access site to a targeted endovascular region, the fastener attachment assembly including;
an intraluminal directing device defining an access lumen and including a deflectable distal region, andan intraluminal fastener applier separate from the intraluminal directing device, the intraluminal fastener applier along with the tissue-piercing fastener being sized and configured for introduction through the access lumen, the intraluminal fastener applier including an actuated member that is selectively operable to generate an implantation force in an implantation force direction to implant the tissue-piercing fastener by causing the sharpened distal tip to pierce and penetrate the tissue in the targeted endovascular region, andmeans associated with the fastener attachment assembly for applying a resolving force in a direction different than the implantation force direction within the targeted endovascular region to resolve at least a portion of the implantation force,wherein the means includes a stabilizing member carried by the intraluminal directing device and/or the intraluminal fastener applier, wherein the stabilizing member includes a spring-loaded arm adapted for contact with tissue opposite an implantation site of the tissue-piercing fastener.
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Accused Products
Abstract
Apparatus and methods utilize an intraluminal fastener applier having a guide body with a longitudinal axis. The guide body is sized and configured for intraluminal deployment in a hollow body organ. An actuated assembly is carried by the guide body that is selectively operable to generate an implantation force to implant at least one fastener into tissue within the hollow body organ. The actuated assembly includes a driven member extending generally along the longitudinal axis, which is sized and configured to engage a selected fastener. The actuated assembly also includes a drive member coupled to the driven member to impart the implantation force to the driven element in a direction that is at an angle to the longitudinal axis of the guide body.
315 Citations
12 Claims
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1. A system comprising:
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at least one tissue-piercing fastener having a sharpened distal tip for piercing and penetrating tissue, a fastener attachment assembly sized and configured to be deployed from a remote access site to a targeted endovascular region, the fastener attachment assembly including; an intraluminal directing device defining an access lumen and including a deflectable distal region, and an intraluminal fastener applier separate from the intraluminal directing device, the intraluminal fastener applier along with the tissue-piercing fastener being sized and configured for introduction through the access lumen, the intraluminal fastener applier including an actuated member that is selectively operable to generate an implantation force in an implantation force direction to implant the tissue-piercing fastener by causing the sharpened distal tip to pierce and penetrate the tissue in the targeted endovascular region, and means associated with the fastener attachment assembly for applying a resolving force in a direction different than the implantation force direction within the targeted endovascular region to resolve at least a portion of the implantation force, wherein the means includes a stabilizing member carried by the intraluminal directing device and/or the intraluminal fastener applier, wherein the stabilizing member includes a spring-loaded arm adapted for contact with tissue opposite an implantation site of the tissue-piercing fastener. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8)
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9. A system comprising:
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at least one tissue-piercing fastener having a sharpened distal tip for piercing and penetrating tissue, a fastener attachment assembly sized and configured to be deployed from a remote access site to a targeted endovascular region, the fastener attachment assembly including; an intraluminal directing device defining an access path and including a deflectable distal region, and an intraluminal fastener applier separate from the intraluminal directing device and being sized and configured for introduction along the access path and including an actuated member that is selectively operable to generate an implantation force in an implantation force direction to implant the tissue-piercing fastener by causing the sharpened distal tip to pierce and penetrate the tissue in the targeted endovascular region, and means associated with the fastener attachment assembly for applying a resolving force in a direction different than the implantation force direction within the targeted endovascular region to resolve at least a portion of the implantation force, wherein the means includes a stabilizing member carried by the intraluminal directing device, wherein the stabilizing member includes an inflatable expandable member adapted for contact with tissue, the inflatable expandable member being spaced apart from an end of the intraluminal directing device.
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10. A system comprising:
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at least one tissue-piercing fastener having a sharpened distal tip for piercing and penetrating tissue, a fastener attachment assembly sized and configured to be deployed from a remote access site to a targeted endovascular region, the fastener attachment assembly including; an intraluminal directing device defining an access path and including a deflectable distal region, and an intraluminal fastener applier separate from the intraluminal directing device and being sized and configured for introduction along the access path and including an actuated member that is selectively operable to generate an implantation force in an implantation force direction to implant the tissue-piercing fastener by causing the sharpened distal tip to pierce and penetrate the tissue in the targeted endovascular region, and means associated with the fastener attachment assembly for applying a resolving force in a direction different than the implantation force direction within the targeted endovascular region to resolve at least a portion of the implantation force, wherein the means includes a stabilizing member carried by the intraluminal directing device and/or the intraluminal fastener applier, wherein the stabilizing member includes a tissue grasping element configured for penetrating into tissue. - View Dependent Claims (11, 12)
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Specification