IP Library Granted Patent US 11,737,744
Granted Patent B2
US 11,737,744 · App. 16/521,919 · Granted Aug 29, 2023

Slack reducing suture anchor assembly and method of tissue repair

Inventors: Stephen S. Burkhart (Boerne, TX); Derek C. Sullivan (Naples, FL); Andrew C. Petry (Naples, FL)
Assignee: Arthrex, Inc.
A61B17/0401A61B2017/044A61B2017/0445A61B2017/0453A61B2017/0496
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Quick Facts
Patent No.
US 11,737,744
App. No.
16/521,919
Granted
Aug 29, 2023
Kind
B2
Abstract

Surgical anchor assemblies and method of tissue repair using the same. The surgical anchor assemblies have a cannulated fixation device, an implant configured to be coupled to the fixation device, and a stop mechanism for preventing relative movement between the fixation device and the implant, such that the fixation device and the implant are configured to rotate together, and a flexible strand winds up to reduce any slack in the flexible strand used for the repair.

Claims (31)

1. A surgical anchor assembly, comprising:

a fixation device having a proximal end, a distal end opposite the proximal end, a cannulation extending through the entire fixation device, a first engagement mechanism at or near the distal end, the first engagement mechanism being formed in a first portion of the cannulation, and a second engagement mechanism formed in a second portion of the cannulation at or near the proximal end, the second engagement mechanism being different than the first engagement mechanism and being configured to engage a driver for installing the fixation device into a bone hole; and

an implant comprising a first portion connectable to the distal end of the fixation device and having a third engagement mechanism engageable with the first engagement mechanism, and a second portion configured to capture a flexible strand;

wherein a stop mechanism having at least a portion spaced apart from an end face at the distal end of the fixation device is configured to prevent rotational movement between the fixation device and the implant in at least one direction when the implant is connected to the fixation device.

2. The surgical anchor assembly of claim 1 , wherein the first portion of the implant is insertable into the distal end of the fixation device.

3. The surgical anchor assembly of claim 2 , wherein the third engagement mechanism is formed on an outer surface of the first portion of the implant.

4. The surgical anchor assembly of claim 1 , wherein the first and third engagement mechanisms facilitate a limited rotational connection between the fixation device and the implant, and wherein the stop mechanism is configured to stop the rotational movement facilitated by the first and third engagement mechanisms.

5. The surgical anchor assembly of claim 1 , wherein the first and third engagement mechanisms each comprises a thread.

6. The surgical anchor assembly of claim 5 , wherein an end of the thread of the first engagement mechanism defines the stop mechanism.

7. The surgical anchor assembly of claim 1 , wherein when the implant and the fixation device are connected with the stop mechanism preventing rotation therebetween, the second portion of the implant remains outside of and extends away from the distal end of the fixation device.

8. The surgical anchor assembly of claim 1 , wherein the second portion of the implant comprises an eyelet for capturing the flexible strand.

9. The surgical anchor assembly of claim 1 , wherein an exterior surface of the fixation device comprises an engagement mechanism for engaging the bone hole.

10. The surgical anchor assembly of claim 9 , wherein the engagement mechanism on the exterior surface of the fixation device comprises a thread.

11. A surgical anchor assembly, comprising:

a fixation device having a proximal end, a distal end, a longitudinal axis extending between the proximal and distal ends, a cannulation extending therethrough, and an exterior surface with a first engagement feature for engaging a bone hole;

an implant configured to be inserted into the bone hole prior to insertion of the fixation device, the implant comprising a first portion connectable to the distal end of the fixation device in a rotationally fixed manner and a second portion defining a recess that extends transverse to the longitudinal axis for capturing a flexible strand; and

a separate piggyback fixation piece connectable to the proximal end of the fixation device to extend a total length of the surgical anchor assembly, wherein an exterior surface of the piggyback fixation piece comprises a second engagement feature that is complementary to and substantially the same as the first engagement feature on the exterior surface of the fixation device for engaging the bone hole.

12. The surgical anchor assembly of claim 11 , wherein the fixation device and the piggyback fixation piece comprise the same material.

13. The surgical anchor assembly of claim 11 , wherein the fixation device and the piggyback fixation piece comprise different materials.

14. The surgical anchor assembly of claim 11 , wherein the piggyback fixation piece has a shorter length than a length of the fixation device.

15. The surgical anchor assembly of claim 11 , wherein the first and second engagement features each comprises a thread, and wherein the thread of the second engagement feature is alignable with the thread of the first engagement feature.

16. The surgical anchor assembly of claim 11 , wherein the implant is rotatably connectable to the fixation device in a limited manner, and wherein a stop mechanism is configured to stop the rotational movement in at least one direction resulting in the rotationally fixed connection.

17. The surgical anchor assembly of claim 8 , wherein the entirety of the eyelet of the second portion of the implant remains outside of the distal end of the fixation device.

18. The surgical anchor assembly of claim 11 , wherein the piggyback fixation piece has a cannulation therethrough that aligns with the cannulation of the fixation device for receiving a driver.

19. A surgical anchor assembly, comprising:

a fixation device having a proximal end, a distal end opposite the proximal end, a cannulation extending through the entire fixation device, a first engagement mechanism at or near the distal end, the first engagement mechanism being formed in a first portion of the cannulation, and a second engagement mechanism formed in a second portion of the cannulation at or near the proximal end, the second engagement mechanism being different than the first engagement mechanism and being configured to engage a driver for installing the fixation device into a bone hole; and

an implant comprising a first portion connectable to the distal end of the fixation device and having a third engagement mechanism engageable with the first engagement mechanism, and a second portion configured to capture a flexible strand;

wherein a stop mechanism is configured to prevent rotational movement between the fixation device and the implant in at least one direction when the implant is connected to the fixation device, and

wherein the first engagement mechanism and the third engagement mechanism each comprises a thread and wherein an end of the thread of the first engagement mechanism defines the stop mechanism, thereby limiting rotational movement of the implant relative to the fixation device.

20. The surgical anchor assembly of claim 11 , wherein the second portion of the implant comprises an eyelet for capturing the flexible strand.

21. The surgical anchor assembly of claim 19 , further comprising a separate piggyback fixation piece connectable to the proximal end of the fixation wherein an exterior surface of the piggyback fixation piece comprises an engagement mechanism that is complementary to an engagement mechanism on the exterior surface of the fixation device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 30, 2019
From: BURKHART, STEPHEN S.; SULLIVAN, DEREK C.; PETRY, ANDREW C.
To: ARTHREX, INC.
Reel/Frame 049904/0532 →
Continuity (1)
Related Publication 20210022725A1 · Jan 28, 2021