Nova Patents
EP2967544A2

Soft tissue fixation system

Abstract

This record has no abstract on file.

Term

7.5 yearsto projected expiry

Projected expiry 12 March 2034, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

2 claims: 2 independent, 0 dependent

  1. 1
    Claims of equivalent WO 2014165036 A2 What is Claimed:1. A bone anchor comprising: a bone anchor body defining a proximal end, a distal end that is spaced from the proximal end along a longitudinal axis, and a perimeter that extends between the proximal end and the distal end, the bone anchor body configured to receive a strand of suture;wherein at least a portion of the bone anchor body comprises a deformation material that is responsive to an applied energy so as to deform and, when the strand of suture is received by the anchor body, capture the strand of suture with respect to movement relative to the bone anchor body, 2. The bone anchor as recited in any one of the preceding claims, wherein the bone anchor body defines at least one channel that extends into the perimeter, such that when the strand of suture is received in the channel, deformation of the deformation material in response to the applied energy closes the channel and captures the strand of suture therein with respect to movement relative to the bone anchor body, 3. The bone anchor as recited in any one of the preceding claims, wherein the bone anchor body defines first and second channels that extend into the perimeter, each of the first and second channels configured to receive respective first and second portions of the strand of suture, wherein the deformation material is responsive to the applied energy so as to deform and, when the first and second portions of the strand of suture are received in the first and second channels, respectively, capture the first and second portions of the strand of suture with respect to movement relative to the bone anchor body. 4. The bone anchor as reci ted in any one of the preceding claims, wherein the deformation material is responsive to the applied energy so as to deform at least a portion of each of the first and second channels and, when the first and second and, when the first and second portions of the strand of suture are received in the first and second channels, respectively, and close at least a portion of each of the first and second channels and capture the first and second portions of the strand of suture therein with respect to movement relative to the bone anchor body. 5. The bone anchor as recited in any one of the preceding claims, wherein the deformation material defines at least a portion of the channel. 6. The bone anchor as reci ted in any one of the preceding claims, wherein the deformation material is disposed in a middle region of the anchor body that includes a location midway between the proximal and distal ends. 7. The bone anchor as recited in any one of the preceding claims, wherein each of the first and second channels defines a first end and a second end distal from the first end, and the second ends of the first and second channels are open to each other. 8. The bone anchor as recited in any one of the preceding claims, wherein the second ends are open to each other at the distal end of the bone anchor body. 9. The bone anchor as recited in any one of the preceding claims, wherein the first and second channels each extend from the proximal end to the distal end. 10. The bone anchor as recited in any one of the preceding claims, wherein the first and second channels are disposed on opposite sides with respect to the longitudinal axis. 1 1. The bone anchor as recited in any one of the preceding claims, wherein the first and second channels are adjacent each other. 12. The bone anchor as recited in any one of the preceding claims, wherein the bone anchor body further defines third and fourth channels that each define a first end and a second end distal from the first end, the second ends of the third and fourth channels are open to both each other and the second ends of the first and second channels at the distal end, and the deformation material further defines at least a portion of each of the first, second, third, and fourth channels. 13. The bone anchor as recited in any one of the preceding claims, wherein the bone anchor body defines an aperture that extends into the proximal end substantially along the longitudinal axis, the aperture configured to receive an instrument that applies the energy to the deformation material. 14. The bone anchor as recited in any one of the preceding claims, wherein the proximal end that defines the aperture is integral and monolithic with the distal end. 15. The bone anchor as recited in any one of the preceding claims, wherein the bone anchor body defines an aperture that extends into the proximal end, the bone anchor further comprising an insert that is insertabie into the aperture, the insert defining an aperture that is configured to receive an energy emitting instrument that is configured to apply the energy to the deformation material. 16. The bone anchor as recited in any one of the preceding claims, wherein the bone anchor body defines at least one channel extends into the perimeter toward the longitudinal axis. 17. A soft tissue fixation system comprising: at least first and second bone anchors each defining a proximal end, a distal end that is spaced from the proximal end along a longitudinal axis, and an outer perimeter that extends between the proximal end and the distal end;and a strand of suture sized to be received by each of the first and second bone anchors ;wherein at least a portion of each of the first and second bone anchors is defined by deformation material that is responsive to an applied energy so as to deform and, when the suture is received by the respective first and second bone anchors, capture the strand of suture in the respective first and second bone anchors with respect to movement relative to the respective first and second bone anchors. 18. The soft tissue fixation system as recited in claim 17, wherein each of the first and second bone anchors defines respective first and second channels that extend into the respective perimeters and are sized to receive the strand of suture, each of the first and second channels at least partially defined by deformation material, and the deformation material is responsive to the applied energy so as to deform and close each of the first and second channels, thereby capturing the strand of suture in each of the first and second channels when the suture is received in each of the first and second channels. 19. The soft tissue fixation system as recited in any one claims 17 to 18, wherein each of the first and second channels extends toward the respective longitudinal axis 20. The soft tissue fixation system as recited in any one claims 17 to 19, further comprising an energy emitting instrument configured to selectively apply the energy to the deformation material of each of the first and second bone anchors. 21. The soft tissue fixation system as recited in any one claims 17 to 20, wherein the energy emitting instrument comprises a laser instrument including a laser source and a light pipe extending from the laser source, the light pipe configured to cany a laser beam emitted by the laser source, and apply the laser beam to the anchor body. 22. The soft tissue fixation system as recited in any one claims 17 to 21, further comprising a first support member configured to support the light pipe, a second support member configured to attach to at least one end of the strand of suture.
  2. 2
    3. The soft tissue fixation system as recited in any one claims 17 to 2.2, further comprising a biasing element coupled between the first and second support members, the biasing member biasing the second support member move away from the bone anchors so as to apply a compressive force onto a respective one of the first and second anchors that is receiving the applied energy. 2.4. The soft tissue fixation system as recited in any one claims 17 to 2.3, wherein the biasing member comprises a spring that biases the second support member to move away from both the first support member. 25. A method of anchoring suture to bone, the method comprising the steps of:inserting a strand of suture into a bone anchor, the bone anchor including a deformation material, driving the bone anchor into bone;and applying energy to the bone anchor so as to cause the deformation material to deform, thereby capturing the strand of suture in the bone anchor with respect to movement relati ve to the bone anchor. 2.6. The method as recited in claim 2.5, wherein the bone anchor is an initial bone anchor, the method further comprising the steps of: after the applying step, inserting the strand of suture into a subsequent bone anchor, the subsequent bone anchor including a deformation material, driving the subsequent bone anchor into bone at a location spaced from the initial bone anchor;and applying energy to the subsequent bone anchor so as to cause the deformation material of the subsequent bone anchor to deform, thereby deforming the subsequent bone anchor and capturing the strand of suture therein with respect to movement relative to the subsequent bone anchor. 27. The method as recited in any one claims 25 to 26, wherein one of the driving steps further comprises driving the respective bone anchor through a soft tissue and into ihe bone, such that the strand of suture extends continuously between the initial and subsequent bone anchors over the soft tissue, 28. The method as recited in any one claims 25 to 27, wherein the other of the driving steps further comprises driving the respective bone anchor through the soft tissue and into the bone. 29. The method as recited in any one claims 25 to 28, further comprising the steps of: for at least one additional bone anchor, sequentially repeating the inserting, driving and applying steps after the second applying step. 30. The method as recited in any one claims 25 to 29, wherein the at least one additional bone anchor comprises a plurality of additional bone anchors, the method further comprising sequentially performing the inserting, driving, and applying for each of the plurality of additional bone anchors prior to performing the inserting step for another one of the plurality of additional bone anchors. 31. The method as recited in any one claims 25 to 30, wherein the plurality of bone anchors, in combination with the initial and subsequent bone anchors define at least a pair of rows, such that the strand of suture is connected from the first row to the second row. 32. The method as recited in any one claims 25 to 31 , wherein the driving step for at least one of the plurality of bone anchors further comprises driving the at feast one of the plurality of bone anchors through soft tissue and into bone. 33. The method as recited in any one claims 25 to 32, wherein the driving step for a final one of the plurality of bone anchors comprises driving the final one into bone at a location spaced from the initial bone anchor. 34. The method as recited in any one claims 25 to 33, wherein the driving step for at least a select one of the bone anchors comprises driving the select one of the bone anchors through soft tissue and into bone, such that the suture extends between two of the bone anchors across an interface between the soft tissue and the bone. 35. The method as recited in any one claims 25 to 34, wherein the driving step for a select one of the plurality of bone anchors comprises driving the select one at a location spaced from the initial bone anchor, such that a free end of the strand of suture extends out the bone. 36. The method as recited in any one claims 25 to 35, wherein the driving step of the initial bone anchor comprises driving the bone anchor into bone such that another free end of the strand of suture extends out the bone. 37. The method as recited in any one claims 25 to 36, further comprising attaching the free ends to each other. 38. The method as recited in any one claims 25 to 37, further comprising the step of: inserting the free end and the another free end of strand into at least one channel of a final bone anchor, the fsnal bone anchor including a deformation material that defines at least a portion of the at least one channel, driving the final bone anchor into bone;and applying energy to the bone anchor so as to cause the deformation material to deform, thereby closing the portion of the at least one channel and capturing the free end and the another free end therein. 39. The method as recited in any one claims 25 to 38, wherein the first and second rows share a common bone anchor and are angularly offset from each other by an angle other than 90 degrees. 40. The method as recited in any one claims 25 to 39, wherein the inserting step further comprises inserting the strand of suture into a channel of the bone anchor, the deformation material defining at least a portion of the channel, and the applying step comprises deforming the deformation material so as to close the portion of the channel and capturing the strand of suture therein. 41. The method as recited in any one claims 25 to 40, further comprising the steps of: supporting the an energy emitting instrument at a first support member, the energy emitting instrument configured to perform the step of applying the energy to the bone anchor, supporting the strand of suture at a second support member;and biasing the second support member to move away from both the first support member and the bone anchor during the applying step, thereby maintaining tension in the strand of suture through completion of the applying step.