IP Library Granted Patent US 7,258,699
Granted Patent B2
US 7,258,699 · App. 10/294,983 · Granted Aug 21, 2007

Artificial intervertebral disc having a captured ball and socket joint with a solid ball and retaining cap

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Quick Facts
Patent No.
US 7,258,699
App. No.
10/294,983
Granted
Aug 21, 2007
Kind
B2
Abstract

An artificial disc having a pair of opposing baseplates, for seating against opposing vertebral bone surfaces, separated by a ball and socket joint that includes a solid ball mounted to protrude from one of the baseplates. The ball is captured within a curvate socket formed in a peak of a convex structure integral with the other of the baseplates. The socket is formed by opposing curvate pockets, one on the convex structure and one on a retaining cap that is secured to the other of the baseplates. The ball rotates and angulates in the socket. The ball and socket joint therefore permits the baseplates to rotate and angulate relative to one another.

Claims (22)

1. An intervertebral spacer device, comprising:

a first baseplate having an outwardly facing surface and an inwardly facing surface, the inwardly facing surface having a central hole;

a second baseplate having an outwardly facing surface and an integrated convex structure, the convex structure including a curvate pocket, the convex structure's curvate pocket being formed by a central portion of an outwardly facing surface of the convex structure concaving inwardly to define a semispherical contour, the convex structure's curvate pocket further having an apex at a center of the convex structure's curvate pocket's semispherical contour, the convex structure further having a bore through the convex structure's curvate pocket's apex from the convex structure's outwardly facing surface to the convex structure's inwardly facing surface, the second baseplate having on its outwardly facing surface an access hole leading to the convex structure's curvate pocket;

a post having a longitudinal axis, a tail end, and a head end having a ball defining a spherical contour;

a cap having an inwardly facing surface and a curvate pocket having a semispherical contour, the cap's curvate pocket being formed by a central portion of the cap's inwardly facing surface concaving outwardly, wherein the axis hole is surrounded by a circular recess, and the cap is securable to the circular recess;

wherein the tail end of the post is disposable through the access hole and through the bore, and the head end of the post is disposable through the access hole and prevented from passage through the bore, such that the ball is seatable in the convex structure's curvate pocket wherein the tail end is securable in the central hole; and

wherein the cap is securable to the second baseplate such that the cap's curvate pocket's semispherical contour opposes the convex structure's curvate pocket's semispherical contour such that the semispherical contours together define a curvate socket defining a spherical contour that closely accommodates the ball's spherical contour for rotation and angulation of the ball in the curvate socket about a central portion of the ball, and such that the post is accommodated for rotation in the bore about the longitudinal axis as the ball rotates in the curvate socket, and such that the post is accommodated for angulation in the bore about the ball's central portion as the ball angulates in the curvate socket.

2. The intervertebral spacer device of claim 1 , wherein the inwardly facing surface of the first baseplate and the inwardly facing surface of the convex structure each has a respective perimeter region, and the perimeter regions have corresponding contours that reduce surface wearing during rotation and angulation of the ball in the curvate socket.

3. The intervertebral spacer device of claim 1 , wherein the cap is compression lockable to the second baseplate.

4. The intervertebral spacer device of claim 1 , wherein the bore is tapered to a larger diameter toward the convex structure's inwardly facing surface, and the post is accommodated by the bore being tapered for angulation in the bore about the ball's central portion as the ball angulates in the curvate socket.

5. The intervertebral spacer device of claim 1 , wherein at least one of the curvate pockets has a hemispherical contour.

6. The intervertebral spacer device of claim 1 , wherein the cap has an outwardly facing surface and at least one of the cap and the first baseplate includes an osteoconductive vertebral body contact surface on its outwardly facing surface.

7. The intervertebral spacer device of claim 1 , wherein the tail end is compression lockable into the central hole.

8. An intervertebral spacer device, comprising:

a first baseplate having an outwardly facing surface and an inwardly facing surface, the inwardly facing surface having a central post secured thereto, the post having a longitudinal axis and a ball at a head end of the post, the ball defining a spherical contour;

a second baseplate having an outwardly facing surface and an inwardly facing surface, the second baseplate including a convex structure integral therewith and a cap secured thereto, the convex structure and the cap together establishing a curvate socket communicating with a central bore through the convex structure, the curvate socket defining a spherical contour, the head of the post being inwardly directed toward the second baseplate;

wherein the ball is capturable in the curvate socket, with the curvate socket's spherical contour accommodating the ball's spherical contour for rotation and angulation of the ball in the curvate socket about a central portion of the ball;

wherein the central bore accommodates the post for rotation in the central bore about the longitudinal axis as the ball rotates in the curvate socket, and accommodates the post for angulation in the central bore about the ball's central portion as the ball angulates in the curvate socket; and

wherein each of the convex structure and the cap has a respective curvate pocket, the second baseplate has an access hole leading to the convex structure's curvate pocket and accommodating passage of the post and the ball for seating of the ball in the convex structure's curvate pocket with the post disposed in the central bore, and the cap is secured to the second baseplate such that the curvate pockets of the convex structure and the cap oppose one another to define the curvate socket, wherein the axis hole is surrounded by a circular recess, and the cap is secure to the circular recess.

9. The intervertebral spacer device of claim 8 , wherein the cap is compression locked to the second baseplate.

10. The intervertebral spacer device of claim 8 , wherein at least one of the curvate pockets has a hemispherical contour.

11. The intervertebral spacer device of claim 8 , wherein the central bore is tapered to a larger diameter toward the second baseplate's inwardly facing surface, and the post is accommodated by the central bore being tapered for angulation in the central bore about the ball's central portion as the ball angulates in the curvate socket.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 053897 FRAME: 0621. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 30, 2020
From: SPINECORE, INC.
To: HOWMEDICA OSTEONICS CORP.
Reel/Frame 053941/0753 →
MERGER Recorded Sep 25, 2020
From: SPINECORE, INC.
To: HOWMEDICA OTEONICS CORP.
Reel/Frame 053897/0621 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2003
From: THIRD MILLENNIUM ENGINEERING, LLC
To: SPINECORE, INC.
Reel/Frame 014344/0937 →