Modular artificial disc replacements (ADRS) that allow translocation and axial rotation
Restricted-motion ADRs accommodate translation and/or axial rotation. In preferred embodiments, a portion of the ADR, including the articulating surfaces, is separated, allowing modular component(s) to rotate and/or translate on the ADR endplate (EP). Modularity also permits the use of more than one material. For example, the ADR EP could be made of titanium or chrome cobalt and the articulating component could be made of ceramic or polyethylene. Other materials and other combinations could also be used. The invention could be incorporated into one or both sides of the ADR.
1 . An artificial disc replacement (ADR), comprising:
an endplate component adapted for attachment to a vertebral body or endplate; and
a spacer component having an articular surface and an interface to the endplate component that facilitates at least a limited amount of translation or axial rotation of the spacer component independent of the articular surface.
2 . The ADR of claim 1 , wherein the interface includes a projection located in an aperture or depression slightly larger than the projection to facilitate at least a limited amount of translation, axial rotation, or both.
3 . The ADR of claim 2 , wherein the projection extends from the spacer component and the aperture or depression is in the endplate component.
4 . The ADR of claim 2 , wherein the projection extends from the endplate component and the aperture or depression is in the spacer component.
5 . The ADR of claim 2 , wherein the post and the aperture are round.
6 . The ADR of claim 2 , wherein the post and the aperture are oblong.
7 . The ADR of claim 2 , wherein the post is round and the aperture is oblong.
8 . The ADR of claim 2 , including a plurality of projections and corresponding apertures or depressions.
9 . The ADR of claim 1 , wherein the articular surface is convex.
10 . The ADR of claim 9 , wherein the articular surface is composed of multiple radii of curvature.
11 . The ADR of claim 1 , further including:
a second endplate component adapted for attachment to an opposing vertebral body or endplate; and
wherein the articular surface cooperates with a corresponding articular surface on an second endplate.
12 . The ADR of claim 11 , wherein the articular surface and the corresponding articular surface form a saddle-shaped joint.
13 . The ADR of claim 1 , further including:
a second endplate component adapted for attachment to an opposing vertebral body or endplate; and
a second spacer component coupled to the second endplate component.
14 . The ADR of claim 13 , wherein the second spacer component includes an articular surface and an interface to the second endplate component that facilitates at least a limited amount of translation or axial rotation of the second spacer component independent of the articular surface.
15 . The ADR of claim 14 , wherein the interface includes a projection located in an aperture or depression slightly larger than the projection to facilitate at least a limited amount of translation, axial rotation, or both.
16 . The ADR of claim 15 , wherein the projection extends from the second spacer component and the aperture or depression is in the second endplate component.
17 . The ADR of claim 15 , wherein the projection extends from the second endplate component and the aperture or depression is in the second spacer component.
18 . The ADR of claim 1 , further including:
a second endplate component adapted for attachment to an opposing vertebral body or endplate;
a second spacer component coupled to the second endplate component; and
wherein the second spacer component includes an articular surface that cooperates with the articular surface on an endplate component.
19 . The ADR of claim 18 , wherein the articular surfaces of the spacer components form a saddle-shaped joint.