IP Library Granted Patent US 12,446,928
Granted Patent B2
US 12,446,928 · App. 14/060,753 · Granted Oct 21, 2025

Surgical construct coupling system

Inventors: David T. Hawkes (Salt Lake City, UT); Peter Halverson (Salt Lake City, UT)
Assignee: NEXUS SPINE, LLC
A61B17/7032A61B17/7001A61B17/7007A61B17/7014A61B17/7035A61B17/704Y10T29/49826
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Quick Facts
Patent No.
US 12,446,928
App. No.
14/060,753
Granted
Oct 21, 2025
Kind
B2
Abstract

A coupling assembly for use in surgical constructs includes a first body and a second body. One of the first body and the second body includes a male member and an other of the first body and the second body includes a female member. The male member is sized and shaped to be received within the female member and the female member has an internal bore sized and shaped to receive the male member therein. One of the male member or the female member includes one or more engagement features formed therewith or attached thereto. The engagement features are operable to provide a gripping interface between the male member and the female member to couple the male member and the female member one to another.

Claims (44)

1. A coupling assembly for use in surgical constructs, the coupling assembly comprising:

a first pedicle screw having a head portion and a shaft portion;

a first body comprising:

a receptacle comprising:

a bottom, from which the shaft portion of the first pedicle screw is configured to extend to couple the first body to a bone of a patient;

an opening formed in the bottom of the receptacle, the opening formed in the bottom of the receptacle being configured to receive the head portion of the first pedicle screw therethrough, thereby selectively providing multi-axial rotation between the first body and the first pedicle screw, the receptacle being configured to selectively secure the head portion after the head portion has been received through the opening formed in the bottom of the receptacle;

a set screw configured to lock the multi-axial rotation between the first body and the first pedicle screw after the head portion has been received through the opening formed in the bottom of the receptacle;

a female member coupled to the receptacle, the female member having an internal bore defining an internal bore opening; and

a cinch band slidingly and concentrically disposed around an exterior of the female member and adapted to selectively cause a reduction in a diameter of the internal bore of the female member to create an area of decreased diameter of the internal bore of the female member; and

a connector rod comprising a male member configured to be received within the internal bore of the female member, the connector rod comprising a collet,

wherein the first body is configured to couple to the connector rod by an interference fit when the collet is positioned within the area of decreased diameter of the internal bore of the female member.

2. The coupling assembly of claim 1 , wherein the set screw is coupled to a top of the receptacle opposite the opening formed in the bottom.

3. The coupling assembly of claim 2 , wherein the set screw is configured to remain in place while the head portion of the first pedicle screw is inserted into the opening formed in the bottom of the receptacle.

4. The coupling assembly of claim 2 , wherein the set screw is removable.

5. The coupling assembly of claim 1 , wherein the internal bore of the female member has a cylindrical configuration at rest.

6. The coupling assembly of claim 1 , wherein the interference fit is sufficiently strong so as to require at least 200 pounds of force to remove the connector rod from the first body.

7. The coupling assembly of claim 1 , wherein, even when the cinch band is moved, the cinch band is sufficiently tight such that the area of decreased diameter within the internal bore is present in a location corresponding with a location of the cinch band.

8. The coupling assembly of claim 1 , wherein the cinch band is configured to be clamped into position around the female member where desired, and wherein the area of decreased diameter is created when the cinch band is clamped into position.

9. The coupling assembly of claim 1 , wherein the cinch band comprises a shape memory alloy configured to be activated by at least one of: (i) stress, and (ii) a change in temperature, and wherein an activation of the shape memory alloy causes the cinch band to create the area of decreased diameter.

10. The coupling assembly of claim 1 , wherein the collet is formed from a monolithic piece of material with a general shape that is substantially symmetrical about an equator of the collet, wherein the collet comprises a first slot extending from a first edge of the collet and terminating before reaching a second edge of the collet, and a second slot extending from the second edge of the collet and terminating before reaching the first edge of collet, wherein the first slot and the second slot are asymmetrical about the equator of the collet, and wherein each of the first slot and the second slot is configured to allow the collet to more easily compress beneath the area of decreased diameter.

11. The coupling assembly of claim 1 , wherein the internal bore comprises an engagement feature configured to engage with a complementary engagement feature of the collet.

12. The coupling assembly of claim 11 , wherein the engagement feature comprises a first set of teeth, and wherein the complementary engagement feature comprises a second set of teeth.

13. A coupling assembly for use in surgical constructs, the coupling assembly comprising:

a first body comprising:

a receptacle having an opening configured to receive a head portion of a first pedicle screw, thereby selectively providing multi-axial rotation between the first body and the first pedicle screw, the receptacle being configured to selectively retain the head portion of the first pedicle screw and prevent the head portion of the first pedicle screw from pulling back out through the opening;

a set screw configured to lock the multi-axial rotation between the first body and the first pedicle screw after the head portion has been received through the opening;

a female member having an internal bore defining an internal bore opening, wherein the internal bore has a cylindrical configuration at rest; and

a cinch band slidingly and concentrically disposed around an exterior of the female member and adapted to selectively cause a reduction in a diameter of the internal bore of the female member to create an area of decreased diameter of the internal bore of the female member, thereby warping the cylindrical configuration; and

a connector rod comprising a male member configured to be received within the internal bore of the female member, the connector rod comprising a collet,

wherein the first body is configured to couple to the connector rod by an interference fit when the collet is positioned within the area of decreased diameter of the internal bore of the female member due to the cylindrical configuration being warped, and wherein the interference fit is sufficiently strong so as to require at least 400 pounds of force to remove the connector rod from the first body.

14. The coupling assembly of claim 13 , wherein the interference fit is sufficiently strong so as to require at least 1,200 pounds of force to remove the connector rod from the first body.

15. The coupling assembly of claim 13 , wherein the first body is configured to be coupled to the first pedicle screw while the first pedicle screw is anchored in a bone of a patient.

16. The coupling assembly of claim 13 , wherein the cinch band comprises a length extending between a first opening of the cinch band and a second opening of the cinch band, and wherein the length of the cinch band is less than a diameter of the first pedicle screw.

17. The coupling assembly of claim 13 , wherein the internal bore comprises an engagement feature comprising a first set of teeth configured to engage with a complementary engagement feature of the collet comprising a second set of teeth.

18. A coupling assembly for use in surgical constructs, the coupling assembly comprising:

a first pedicle screw having a first head portion and a first shaft portion monolithically formed with the first head portion;

a first body comprising:

a first receptacle comprising a ball socket configured to receive the first head portion of the first pedicle screw, thereby selectively providing multi-axial rotation between the first body and the first pedicle screw;

a first set screw configured to compress the ball socket to lock the multi-axial rotation between the first body and the first pedicle screw after the first head portion has been received into the first receptacle;

a female member having an internal bore defining an opening; and

a cinch band slidingly and concentrically disposed around an exterior of the female member and adapted to selectively cause a reduction in a diameter of the internal bore of the female member to create an area of decreased diameter of the internal bore of the female member; and

a connector rod comprising a first male member configured to be received within the internal bore of the female member, the connector rod comprising a first collet slidingly disposed around the first male member,

wherein the first body is configured to couple to the connector rod by an interference fit when the first collet is positioned within the area of decreased diameter of the internal bore of the female member.

19. The coupling assembly of claim 18 , further comprising a second body configured to receive a head of a second pedicle screw, thereby selectively providing multiaxial rotation between the second body and the second pedicle screw, wherein the second body is configured to receive a second male member of the connector rod comprising a second collet into a female receiver of the second body.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 21, 2015
From: HAWKES, DAVID T.; HALVERSON, PETER
To: NEXUS SPINE, L.L.C.
Reel/Frame 036390/0715 →
Continuity (5)
Continuation In Part 13455854 · Apr 25, 2012
Provisional Application 61717319 · Oct 23, 2012
Provisional Application 61478808 · Apr 25, 2011
Related Publication 20140114357A1 · Apr 24, 2014
Related Publication 20170143377A9 · May 25, 2017
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