IP Library › Granted Patent US 11,284,884
Granted Patent B2
US 11,284,884 · App. 16/420,676 · Granted Mar 29, 2022

Method and apparatus for coupling soft tissue to a bone

Inventors: Gregory J. Denham (Warsaw, IN); Kevin T. Stone (Winona Lake, IN)
Assignee: Biomet Sports Medicine, LLC
A61B17/06166A61B17/0401A61F2/08A61F2/0811D04C1/06D04C1/12A61B2017/00526A61B2017/044A61B2017/0414A61B2017/0427A61B2017/0618A61B2017/06185A61F2002/0852A61F2002/0882H05K999/99
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Quick Facts
Patent No.
US 11,284,884
App. No.
16/420,676
Granted
Mar 29, 2022
Kind
B2
Abstract

A method and apparatus for coupling a soft tissue implant into a locking cavity formed within a bone is disclosed. The apparatus includes a member to pull the soft tissue implant into a femoral tunnel. The member includes a suture having first and second ends which are passed through first and second openings associated with the longitudinal passage to form a pair of loops. A collapsible tube is positioned about the suture. Application of tension onto the suture construction causes retraction of the soft tissue implant into the femoral tunnel and the collapse of the tube to form an anchor.

Claims (32)

1. A method of manufacturing a surgical construct that includes a braided hollow core suture, the method comprising:

obtaining a braided hollow core suture formed by a process comprising braiding together multiple biocompatible fibers to form the braided hollow core suture, the braided hollow core suture having an exterior surface, wherein said braiding imparts a first coefficient of friction to a first portion of the exterior surface of the braided hollow core suture and a second coefficient of friction to a second portion of the exterior surface of the braided hollow core suture, the first coefficient of friction provided by a first type of fiber that is formed with a first biocompatible material, and the second coefficient of friction provided by a second type of fiber that is formed with a second biocompatible material; and

passing a first free end of the braided hollow core suture longitudinally through a first longitudinal passage in the braided hollow core suture to form a first adjustable loop.

2. The method of claim 1 , wherein the first type of fiber has a different fiber size than the second type of fiber.

3. The method of claim 1 , wherein the braided hollow core suture has 8 to 16 fibers.

4. The method of claim 1 , wherein the braided hollow core suture includes Nylon fibers.

5. The method of claim 1 further comprising coupling the braided hollow core suture to a soft tissue graft.

6. The method of claim 5 , wherein the soft tissue graft is an artificial ACL graft.

7. The method of claim 1 , wherein the braided hollow core suture also has a second free end and is braided to have a segment located between the first free end and the second free end which has a diameter that is larger than the diameters of the first free end and the second free end.

8. The method of claim 7 further comprising passing the second free end of the braided hollow core suture longitudinally through a second longitudinal passage in the braided hollow core suture to form a second adjustable loop.

9. The method of claim 8 , wherein the first longitudinal passage is separate from the second longitudinal passage in the braided hollow core suture.

10. The method of claim 9 , wherein the first longitudinal passage and the second longitudinal passage are longitudinally spaced apart from one another along a length of the braided hollow core suture.

11. A method of manufacturing a braided hollow core suture, comprising:

braiding together multiple biocompatible fibers to form a braided hollow core suture having an exterior surface, wherein said braiding imparts a first coefficient of friction to a first portion of the exterior surface of the braided hollow core suture and a second coefficient of friction to a second portion of the exterior surface of the braided hollow core suture, the first coefficient of friction provided by a first type of fiber that is formed with a first biocompatible material, and the second coefficient of friction provided by a second type of fiber that is formed with a second biocompatible material,

wherein the braided hollow core suture has a first free end and a second free end and is braided to have a segment located between the first free end and the second free end which has a diameter that is larger than the diameters of the first free end and the second free end.

12. The method of claim 1 further comprising coupling the braided hollow core suture to a bone engaging fastener.

13. A method of manufacturing a braided suture construct, comprising:

braiding a first type of fiber with a second type of fiber to form a braided suture having an exterior surface,

wherein the first type of fiber has a first fiber size and is formed with a first biocompatible material,

wherein the second type of fiber has a second fiber size and is formed with a second biocompatible material, the first fiber size being different than the second fiber size, and the first biocompatible material being different than the second biocompatible material, and

wherein said braiding leaves a fiber of the first type of fiber exposed along a first portion of the exterior surface of the braided suture such that the first portion has a first coefficient of friction corresponding to the first type of fiber and leaves a fiber of the second type of fiber exposed along a second portion of the exterior surface of the braided suture such that the second portion has a second coefficient of friction corresponding to the second type of fiber,

wherein the braided suture has a first free end and a second free end and is braided to have a segment located between the first free end and the second free end which has a diameter that is larger than that of the first free end and the second free end.

14. The method of claim 13 further comprising coupling the braided suture to an artificial graft.

15. The method of claim 13 further comprising coupling the braided suture to a bone engaging fastener.

16. The method of claim 13 , wherein the braided suture includes a hollow core.

17. A method of manufacturing a braided suture construct, comprising:

braiding a first type of fiber with a second type of fiber to form a braided suture having an exterior surface, wherein the first type of fiber has a first fiber size and is formed with a first biocompatible material, wherein the second type of fiber has a second fiber size and is formed with a second biocompatible material, the first fiber size being different than the second fiber size, and the first biocompatible material being different than the second biocompatible material, and wherein said braiding leaves a fiber of the first type of fiber exposed along a first portion of the exterior surface of the braided suture such that the first portion has a first coefficient of friction corresponding to the first type of fiber and leaves a fiber of the second type of fiber exposed along a second portion of the exterior surface of the braided suture such that the second portion has a second coefficient of friction corresponding to the second type of fiber; and

passing a first free end of the braided suture longitudinally through a first longitudinal passage in the braided suture to form a first adjustable loop.

18. The method of claim 17 further comprising passing a second free end of the braided suture longitudinally, through a second longitudinal passage in the braided suture to form a second adjustable loop.

19. The method of claim 18 , wherein the first longitudinal passage is separate from the second longitudinal passage in the braided suture.

20. The method of claim 19 , wherein the first longitudinal passage and the second longitudinal passage are longitudinally spaced apart from one another along a length of the braided suture.

21. The method of claim 13 further comprising passing the first free end of the braided suture longitudinally through a first longitudinal passage in the braided suture to form a first adjustable loop.

Continuity (17)
Continuation 15793216 · Oct 25, 2017
Continuation 15622718 · Jun 14, 2017
Continuation 15455895 · Mar 10, 2017
Continuation 15278777 · Sep 28, 2016
Continuation 14956724 · Dec 2, 2015
Continuation 14492590 · Sep 22, 2014
Division 13399125 · Feb 17, 2012
Division 12196410 · Aug 22, 2008
Continuation In Part 12014399 · Jan 15, 2008
Continuation In Part 12014340 · Jan 15, 2008
Continuation In Part 11935681 · Nov 6, 2007
Continuation In Part 11869440 · Oct 9, 2007
Continuation In Part 11784821 · Apr 10, 2007
Continuation In Part 11541506 · Sep 29, 2006
Continuation In Part 11347662 · Feb 3, 2006
Continuation In Part 11347661 · Feb 3, 2006
Related Publication 20190274681A1 · Sep 12, 2019
Cited By (13)
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