IP Library Granted Patent US 11,801,043
Granted Patent B2
US 11,801,043 · App. 17/975,308 · Granted Oct 31, 2023

Suture anchor for knotless fixation of tissue

Inventors: Stephen S. Burkhart (Boerne, TX); Peter J. Dreyfuss (Naples, FL); Neil S. ElAttrache (Los Angeles, CA)
Assignee: Arthrex, Inc.
A61B17/0401A61F2/0805A61F2/0811A61B2017/044A61B2017/0409A61B2017/0414A61B2017/0438A61B2017/0445A61B2017/0458A61B2017/0459A61F2002/0817A61F2002/0841A61F2002/0852A61F2002/0858A61F2002/0888
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Quick Facts
Patent No.
US 11,801,043
App. No.
17/975,308
Granted
Oct 31, 2023
Kind
B2
Abstract

A suture anchor for knotless fixation of tissue. The suture anchor includes an implant configured to hold a suture to be anchored in bone without requiring suture knots. The suture is secured in bone by inserting the implant holding the suture into a hole in the bone, and advancing a fixation device, such as a cannulated interference screw, over a shaft at the proximal end of the implant.

Claims (31)

1. A knotless surgical anchor, comprising:

an implant configured to hold at least one flexible strand for implantation into bone, the implant having a distal portion for holding the flexible strand, and a proximal portion comprising a shaft; and

a fixation device having a threaded body, a distal portion, a proximal portion, and a cannulation, wherein the fixation device is configured to receive the shaft of the implant at least partially in the cannulation,

wherein the fixation device is adapted to be rotationally advanced over at least a portion of the shaft of the implant.

2. The knotless surgical anchor of claim 1 , wherein the implant comprises an abutment surface which abuts against a distal surface of the fixation device when the fixation device is rotationally advanced over the implant.

3. The knotless surgical anchor of claim 2 , wherein the abutment surface and the distal surface of the fixation device are flat.

4. The knotless surgical anchor of claim 1 , wherein the implant has an opening for holding the flexible strand.

5. The knotless surgical anchor of claim 1 , wherein the cannulated fixation device is longer axially than the implant.

6. The knotless surgical anchor of claim 1 , wherein the distal portion of the implant has a generally conical shape.

7. The knotless surgical anchor of claim 1 , wherein the fixation device is a non-expandable fixation device.

8. The knotless surgical anchor of claim 1 , wherein the fixation device is rotationally advanced in a direction toward the implant and a hole in the bone into which the implant is inserted.

9. The knotless surgical anchor of claim 1 , wherein the implant has a shaft, and the distal portion of the implant has an abutment surface which abuts against a distal surface of the fixation device when the fixation device is rotationally advanced over the implant, and wherein the implant has an opening for holding the flexible strand and the fixation device is longer axially than the implant.

10. A knotless surgical anchor assembly, comprising:

an inserter comprising a cannulated inner rod having an outer surface;

a detachable implant configured to hold at least one flexible strand, the detachable implant having a distal portion and a proximal portion, wherein the distal portion is configured to hold the flexible strand; and

a fixation device mounted on the outer surface of the inner rod of the inserter and rotatable with respect to the detachable implant engaged with the inner rod, the fixation device having a threaded body, a distal portion, a proximal portion, and a cannulation, wherein the fixation device is configured to receive at least part of the proximal portion of the implant at least partially in the cannulation,

wherein and the proximal portion of the implant is configured to engage the inner rod of the inserter at a location on the inner rod distal to the fixation device.

11. The surgical anchor assembly of claim 10 , wherein the fixation device is adapted to be rotationally advanced by the inserter over the at least part of the proximal portion of the implant.

12. The surgical anchor assembly of claim 11 , wherein the implant comprises an abutment surface which abuts against a distal surface of the fixation device when the fixation device is rotationally advanced over the implant.

13. The surgical anchor assembly of claim 12 , wherein the abutment surface and the distal surface of the fixation device are flat.

14. The knotless surgical anchor assembly of claim 11 , wherein the fixation device is rotationally advanced in a direction toward the implant and a hole in the bone into which the implant is inserted.

15. The surgical anchor assembly of claim 10 , wherein the implant has an opening for holding the flexible strand.

16. The surgical anchor assembly of claim 10 , wherein the cannulated fixation device is longer axially than the implant.

17. The knotless surgical anchor assembly of claim 10 , wherein the fixation device is a non-expandable fixation device.

18. The knotless surgical anchor assembly of claim 10 , wherein the distal portion of the implant has a generally conical shape.

19. The knotless surgical anchor assembly of claim 10 , wherein the implant has a shaft, and the distal portion of the implant has an abutment surface which abuts against a distal surface of the fixation device when the fixation device is rotationally advanced over the implant, and wherein the implant has an opening for holding the flexible strand and the fixation device is longer axially than the implant.

20. A method of knotless tissue fixation, comprising the steps of:

advancing the implant of the knotless surgical anchor as claimed in claim 1 into bone, the implant holding the at least one flexible strand;

rotationally advancing the fixation device toward the implant and over at least a portion of the shaft of the implant, to secure the implant and the flexible strand in the bone.

21. The method of claim 20 , further comprising the step of passing the at least one flexible strand through tissue to be fixated.

22. The method of claim 20 , wherein the fixation device is rotationally advanced in a direction toward the implant and a hole in the bone.

Continuity (11)
Continuation 15976157 · May 10, 2018
Continuation 14707861 · May 8, 2015
Continuation 13403366 · Feb 23, 2012
Continuation 12418391 · Apr 3, 2009
Continuation In Part 12368946 · Feb 10, 2009
Continuation In Part 12043008 · Mar 5, 2008
Continuation In Part 11802057 · May 18, 2007
Continuation In Part 11392798 · Mar 30, 2006
Provisional Application 60801097 · May 18, 2006
Provisional Application 60666518 · Mar 30, 2005
Related Publication 20230052019A1 · Feb 16, 2023