IP Library Granted Patent US 9,131,962
Granted Patent B2
US 9,131,962 · App. 13/114,803 · Granted Sep 15, 2015

Bone screw assembly

Inventors: Douglas Cahill (Lititz, PA); Andrew Lott (Villanova, PA); Khiem Pham (Chalfont, PA); Edward Karpowicz (Swedesboro, NJ)
Assignee: GLOBUS MEDICAL, INC.
A61B17/7037A61B17/7032A61B17/7041
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Quick Facts
Patent No.
US 9,131,962
App. No.
13/114,803
Granted
Sep 15, 2015
Kind
B2
Abstract

Spine stabilization systems are disclosed. One spine stabilization system includes a bone screw assembly including a coupling member and a screw member received therein. The coupling member includes a pair of extension elements that form a pair of slots. The slots include bottom angled surfaces. An angled wedge member having a substantially horizontal bottom surface and an angled top surface is delivered on top of the screw member within the coupling member. A rod member can be delivered down the coupling member such that it rests on the slots and on top of the angled wedge member. A locking assembly comprising a cap member and set screw can be delivered down the coupling member to secure the rod member to the coupling member. The rod member and locking assembly components can be delivered through a single incision and at a same or similar angle as the screw member during surgery.

Claims (32)

1. A bone stabilization system comprising:

a coupling member, wherein the coupling member comprises an upper surface and a lower surface;

a screw member configured to be received in the coupling member, wherein the screw member is downwardly delivered into the coupling member such that it passes the upper surface the coupling member and moves in a direction from the upper surface to the lower surface of the coupling member;

a wedge member configured to be received in the coupling member, wherein the wedge member includes a bottom surface and a top surface that is non-parallel to the bottom surface;

a rod implant configured to be received in the coupling member; and a locking assembly configured to secure the rod implant within the coupling member; and

a coupling body component having one or more slits to assist in securing the screw member to the coupling member, wherein the coupling body component is independent from the coupling member, wherein the coupling body component is downwardly delivered into the coupling member such that it passes the upper surface of the coupling member and moves in a direction from the upper surface to the lower surface of the coupling member.

2. The bone stabilization system of claim 1 , wherein the coupling member includes a pair of extension elements.

3. The bone stabilization system of claim 2 , wherein the coupling member includes a pair of angled slots having angled contact surfaces between the extension elements.

4. The bone stabilization system of claim 1 , wherein the coupling member includes a bumper element along an inner surface of the coupling member.

5. The bone stabilization system of claim 4 , Wherein the bumper element comprises an angled shoulder.

6. The bone stabilization system of claim 1 , wherein the bottom surface of the wedge member is substantially horizontal.

7. The bone stabilization system of claim 1 , wherein the top surface of the wedge member is at an angle of between about 15 and 30 degrees from the bottom surface.

8. The bone stabilization system of claim 1 , wherein the locking assembly includes a cap member and a set screw received therein.

9. The bone stabilization system of claim 8 , wherein the set screw includes an angled bottom surface.

10. The bone stabilization system of claim 9 , wherein the angled bottom surface of the set screw is substantially parallel to the top surface of the wedge member.

11. A bone stabilization system comprising:

a coupling member including a pair of extension elements and a pair of angled slots formed therebetween, wherein the angled slots include angled contact surfaces, wherein the coupling member comprises an upper surface and a lower surface;

a screw member configured to be received in the coupling member, wherein the screw member is downwardly delivered into the coupling member such that it passes the upper surface of the coupling member and moves in a direction from the upper surface to the lower surface of the coupling member;

a wedge member configured to be received in the coupling member and positioned on top of the screw member, wherein the wedge member includes a bottom surface and a top surface at a non-parallel angle to the bottom surface;

a rod implant configured to be received in the coupling member and seated on top of the angled contact surfaces; and

a locking assembly configured to secure the rod implant within the coupling member; and

a coupling body component configured to fit around at least a portion of a head of the screw member, wherein the coupling body component is independent from the coupling member and is downwardly delivered into the coupling member, wherein the coupling body component is downwardly delivered into the coupling member such that it passes the upper surface of the coupling member and moves in a direction from the upper surface to the lower surface of the coupling member.

12. The bone stabilization system of claim 11 , wherein the coupling member includes a recessed groove for receiving the wedge member.

13. The bone stabilization system of claim 11 , wherein the top surface is at an angle of between about 15 and 30 degrees relative to the bottom surface.

14. The bone stabilization system of claim 11 , wherein the locking assembly includes a cap member and a set screw therein.

15. The bone stabilization system of claim 14 , wherein the set screw includes an angled bottom surface that is substantially parallel to the angled contact surfaces of the coupling member.

16. A bone stabilization system comprising:

a coupling member including a pair of extension elements, wherein the pair of extension elements form slots, wherein the bottom of the slots include angled contact surfaces for contacting a rod member delivered in the coupling member, wherein the coupling member includes one or more inner bumper elements, and wherein the coupling member comprises an upper surface and a lower surface;

a screw member including a head and a threaded shaft, wherein the screw member is configured to be received in the coupling member, wherein the screw member is downwardly delivered into the coupling member such that it passes the upper surface of the coupling member and moves in a direction from the upper surface to the lower surface of the coupling, member;

a coupling body component, wherein the coupling body component is configured to extend over a portion of the head of the screw member to assist in securing the screw member to the coupling member, wherein the coupling body component is downwardly delivered into the coupling member such that it passes the upper surface of the coupling member and moves in a direction from the upper surface to the lower surface of the coupling member;

an angled wedge member configured to be received in the coupling member on top of the screw member, the angled wedge member including a substantially horizontal bottom surface and an angled top surface that is non--parallel to the bottom surface a rod member receivable in the slots of the coupling member, wherein the rod member is configured to contact the angled top surface of the angled wedge member; and

a locking assembly comprising a cap member and a set screw, the set screw having an angled bottom surface that is substantially at the same angle as the angled top surface of the angled wedge member, wherein the locking assembly is configured to be delivered down the coupling member to apply a compressive force that secures the rod member within the coupling member.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2011
From: CAHILL, DOUGLAS; IOTT, ANDREW; PHAM, KHIEM; KARPOWICZ, EDWARD
To: GLOBUS MEDICAL, INC
Reel/Frame 026665/0483 →
Continuity (1)
Related Publication 20120303063A1 · Nov 29, 2012