IP Library Granted Patent US 9,463,049
Granted Patent B2
US 9,463,049 · App. 14/848,417 · Granted Oct 11, 2016

Polyaxial bone screw

Inventors: David D. Konieczynski (Needham, MA); Thomas V. Doherty (Irvine, CA); Dale E. Whipple (Ackworth, GA); Niall Casey (San Diego, CA); Mark T. Hall (Bridgewater, MA)
Assignee: DePuy Synthes Products, Inc.
A61B17/7037A61B17/7032A61B17/7035A61B17/8605
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Quick Facts
Patent No.
US 9,463,049
App. No.
14/848,417
Granted
Oct 11, 2016
Kind
B2
Abstract

The present invention generally provides a polyaxial fixation device having a shank with a spherical head formed on a proximal end thereof, and a receiver member having an axial passage formed therein that is adapted to polyaxially seat the spherical head of the shank. The polyaxial bone screw further includes an engagement member that is adapted to provide sufficient friction between the spherical head and the receiver member to enable the shank to be maintained in a desired angular orientation before locking the spherical head within the receiver member.

Claims (26)

1. A polyaxial bone anchor assembly, comprising:

a shank having a spherical head formed on a proximal end thereof;

a receiver member adapted to receive a spinal rod and having a distal opening though which the shank extends and a distal seat in which the head of the shank is polyaxially seated; and

a compression cap having first and second leaf springs, and wherein the receiver member includes first and second deformable portions that, upon deformation, are effective to urge the first and second leaf-spring members toward one another to cause the compression cap to frictionally engage the spherical head of the shank.

2. The assembly of claim 1 , wherein the first and second leaf springs are diametrically opposed from one another.

3. The assembly of claim 1 , wherein the first and second leaf springs are portions of a sidewall of the compression cap.

4. The assembly of claim 1 , wherein the first and second leaf springs are rotationally-offset from opposed U-shaped rod-receiving recesses formed in the compression cap.

5. The assembly of claim 1 , wherein the first leaf spring is defined between a first pair of slots formed in the compression cap and the second leaf spring is defined between a second pair of slots formed in the compression cap.

6. The assembly of claim 1 , wherein the first and second pairs of slots extend from a proximal end of the compression cap towards a distal end of the compression cap.

7. The assembly of claim 6 , wherein the first and second pairs of slots terminate just proximal to the distal end of the compression cap.

8. The assembly of claim 1 , wherein the first leaf spring has a first detent formed therein configured to receive the first deformable portion and wherein the second leaf spring has a second detent formed therein configured to receive the second deformable portion.

9. The assembly of claim 1 , wherein the first and second leaf springs are configured to flex inward to exert a distally-directed force on the spherical head.

10. The assembly of claim 1 , wherein the spherical head includes a coating or surface treatment configured to hinder movement of the spherical head with respect to the receiver member.

11. The assembly of claim 1 , wherein at least one of the spherical head, the compression cap, and the receiver member includes one or more protrusions configured to interfere with free rotational movement of the spherical head relative to the receiver member.

12. A bone screw assembly, comprising:

a bone screw comprising a distal threaded shank and a proximal head;

a receiver member having a seat in which the bone screw is polyaxially seated and a channel configured to receive a spinal rod; and

a compression cap disposed in the receiver member and configured to maintain the receiver member in a desired angular orientation relative to the shank before locking the head within the receiver member, the compression cap having a sidewall with first and second deformable portions that, when deformed, frictionally engage the head of the shank.

13. The assembly of claim 12 , wherein the first and second deformable portions are diametrically opposed from one another.

14. The assembly of claim 12 , wherein the first and second deformable portions are rotationally-offset from opposed U-shaped rod-receiving recesses formed in the compression cap.

15. The assembly of claim 12 , wherein the first deformable portion is defined between a first pair of slots formed in the compression cap and the second deformable portion is defined between a second pair of slots formed in the compression cap.

16. The assembly of claim 15 , wherein the first and second pairs of slots extend from a proximal end of the compression cap towards a distal end of the compression cap.

17. The assembly of claim 16 , wherein the first and second pairs of slots terminate just proximal to the distal end of the compression cap.

18. The assembly of claim 12 , wherein the first deformable portion has a first detent formed therein configured to receive a first swaged portion of the receiver member and wherein the second deformable portion has a second detent formed therein configured to receive a second swaged portion of the receiver member.

19. The assembly of claim 12 , wherein the first and second deformable portions are configured to flex inward to exert a distally-directed force on the head.

20. The assembly of claim 12 , wherein the head includes a coating or surface treatment configured to hinder movement of the head with respect to the receiver member.

Continuity (6)
Continuation 14157081 · Jan 16, 2014
Continuation 13657486 · Oct 22, 2012
Continuation 12698612 · Feb 2, 2010
Continuation 11381048 · May 1, 2006
Continuation 10608904 · Jun 27, 2003
Related Publication 20160000471A1 · Jan 7, 2016