IP Library Granted Patent US 10,143,565
Granted Patent B2
US 10,143,565 · App. 14/753,503 · Granted Dec 4, 2018

Unidirectional dynamic interbody fusion device and method of use

Inventors: Jeffrey A. Farris (Berne, IN); Daniel D. Refai (Atlanta, GA); Brian G. Emerick (Columbia City, IN); Ross R. Nichols (North Webster, IN)
Assignee: BIOSPINE, LLC
A61F2/4455A61F2/447A61F2/4425A61F2/4465A61F2/4611A61F2002/2835A61F2002/304A61F2002/3052A61F2002/3055A61F2002/30398A61F2002/30401A61F2002/30405A61F2002/30523A61F2002/30556A61F2002/30579A61F2002/30594A61F2002/30596A61F2002/30598A61F2002/30601A61F2002/30604A61F2002/30607A61F2002/30616A61F2002/30785A61F2002/30904A61F2310/00017A61F2310/00023
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Quick Facts
Patent No.
US 10,143,565
App. No.
14/753,503
Granted
Dec 4, 2018
Kind
B2
Abstract

An interbody fusion device includes a top member, a base member, and an expansion member. The top member includes a first bone-engaging side and a threaded opening. The base member is received by the top member and includes a second bone-engaging side and an open cavity aligned with the threaded opening of the top member. The expansion member is disposed within the open cavity for rotation about an axis. The expansion member includes a threaded portion threadably engaged with the threaded opening. Rotation of the expansion member translates the first bone-engaging side away from the second bone-engaging side along the axis.

Claims (39)

1. An interbody fusion device, the device comprising:

a top member having a first bone-engaging surface and a threaded opening;

a base member received by the top member, the base member having a second bone-engaging surface and an open cavity aligned with the threaded opening of the top member;

an expansion member disposed within the open cavity for rotation about an axis, the expansion member having a threaded portion threadably engaged with the threaded opening and a central bore to maintain an opening through the threaded opening in the first bone-engaging surface through the open cavity in the second bone-engaging surface; and

a support ring coupled to the base member within the open cavity, the support ring configured to retain the expansion member within the base member in a fixed position along the axis relative to the second bone-engaging surface,

wherein rotation of the expansion member translates the first bone-engaging surface away from the second bone-engaging surface along the axis, and wherein the support ring snaps into a notch in the base member within the open cavity to retain the expansion member within the base member.

2. The interbody fusion device of claim 1 , wherein the expansion member further comprises a gear portion and a radially extending portion disposed between the gear portion and the threaded portion, the radially extending portion disposed adjacent the support ring.

3. The interbody fusion device of claim 2 , wherein the gear portion includes a first side and a second side opposite the first side, the first side having a plurality of gear teeth, the second side rotatably engaging the base member.

4. The interbody fusion device of claim 2 , wherein the gear portion includes a plurality of axially extending gear teeth.

5. The interbody fusion device of claim 4 , wherein the base member includes a tool insertion opening in communication with the open cavity.

6. The interbody fusion device of claim 1 , wherein the first bone-engaging surface includes at least one first through hole, and the second bone-engaging surface includes at least one second through hole aligned with the at least one first through hole.

7. The interbody fusion device of claim 1 , wherein the top member includes an opening, the base member translatably received within the opening.

8. The interbody fusion device of claim 7 , wherein the threaded opening opens into the opening of the top member.

9. An interbody fusion device, the device comprising:

a top member having a first bone-engaging side and a threaded opening;

a base member received by the top member, the base member having a second bone-engaging side and an open cavity in communication with the threaded opening of the top member;

an expansion member secured within the open cavity for rotation about an axis extending transverse to the first and second bone-engaging sides, the expansion member having a threaded portion threadably engaged with the threaded opening and a central bore to maintain an opening through the threaded opening in the first bone-engaging side through the open cavity in the second bone-engaging side, and

a support ring coupled to the base member within the open cavity, the support ring configured to retain the expansion member within the base member in a fixed position along the axis relative to the second bone-engaging side,

wherein rotation of the expansion member translates the top member relative to the base member along the axis, while the support ring maintains the fixed position of the expansion member relative to the second bone-engaging side along the axis.

10. The interbody fusion device of claim 9 , wherein the expansion member further comprises a gear portion and a radially extending portion disposed between the gear portion and the threaded portion and configured to engage the support ring.

11. The interbody fusion device of claim 10 , wherein the gear portion includes a first side and a second side opposite the first side, the first side having a plurality of gear teeth, the second side rotatably engaging the base member.

12. The interbody fusion device of claim 10 , wherein the gear portion includes a plurality of axially extending gear teeth.

13. The interbody fusion device of claim 12 , wherein the base member includes a tool insertion opening in communication with the open cavity.

14. The interbody fusion device of claim 9 , wherein the first bone-engaging side includes at least one first through hole, and the second bone-engaging side includes at least one second through hole aligned with the at least one first through hole.

15. The interbody fusion device of claim 9 , wherein the top member includes an opening, the base member translatably received within the opening.

16. The interbody fusion device of claim 15 , wherein the threaded opening opens into the opening of the top member.

17. An interbody fusion device, the device comprising:

a top member having a first bone-engaging side and a threaded opening;

a base member received by the top member, the base member having a second bone-engaging side and an open cavity in communication with the threaded opening of the top member;

an expansion member secured within the open cavity for rotation about an axis extending transverse to the first and second bone-engaging sides, the expansion member having a threaded portion threadably engaged with the threaded opening and a central bore to maintain an opening through the threaded opening in the first bone-engaging side through the open cavity in the second bone-engaging side, and

a support ring coupled to the base member within the open cavity, the support ring configured to retain the expansion member within the base member in a fixed position along the axis relative to the second bone-engaging side,

wherein rotation of the expansion member translates the top member relative to the base member along the axis; and

wherein the support ring snaps into a notch in the base member within the open cavity to retain the expansion member within the base member.

18. An interbody fusion device, the device comprising:

a top member having a first bone-engaging surface and a threaded opening;

a base member received by the top member, the base member having a second bone-engaging surface and an open cavity aligned with the threaded opening of the top member;

an expansion member disposed within the open cavity for rotation about an axis, the expansion member having a threaded portion threadably engaged with the threaded opening and a central bore to maintain an opening through the threaded opening in the first bone-engaging surface through the open cavity in the second bone-engaging surface; and

a support ring coupled to the base member within the open cavity, the support ring configured to retain the expansion member within the base member in a fixed position along the axis relative to the second bone-engaging surface,

wherein rotation of the expansion member translates the first bone-engaging surface away from the second bone-engaging surface along the axis, while the support ring maintains the fixed position of the expansion member relative to the second bone-engaging surface along the axis.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2024
From: BIOSPINE, LLC
To: EMERICK, BRIAN G.; REFAI, DANIEL
Reel/Frame 069567/0324 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2018
From: BIOMET SPINE, LLC
To: BIOSPINE, LLC
Reel/Frame 044997/0028 →
Continuity (3)
Continuation 13487927 · Jun 4, 2012
Provisional Application 61493239 · Jun 3, 2011
Related Publication 20150366676A1 · Dec 24, 2015
Cited By (2)
US 12,329,652 US 12,390,344