Prosthetic intervertebral discs
View Patent ↗Prosthetic intervertebral discs, systems including such prosthetic intervertebral discs, and methods for using the same are described. The subject prosthetic discs include upper and lower endplates separated by a compressible core member. The subject prosthetic discs exhibit stiffness in the vertical direction, torsional stiffness, bending stiffness in the saggital plane, and bending stiffness in the front plane, where the degree of these features can be controlled independently by adjusting the components, construction, and other features of the discs.
1. A prosthetic intervertebral disc for implantation between adjacent first and second vertebrae in human spine comprising:
a first endplate comprising an inner surface positioned adjacent a compressible core member, the first endplate comprising a plurality of slots, the first endplate being attachable to a first vertebra;
a second endplate comprising an inner surface positioned adjacent the compressible core member, the second endplate comprising a plurality of slots, the second endplate being attachable to a second vertebra adjacent the first vertebra in a spine;
the compressible core member positioned between said first and second endplates, the compressible core member comprising a polymeric nuclear domain having an outer surface comprising a plurality of grooves, each groove having a groove width and a groove depth, each groove width and groove depth selected to obtain desired performance characteristics of the core member, and the compressible core member comprising an annular domain surrounding the nuclear domain, wherein the annular domain contains at least one fiber that is engaged with said first and second endplates by extending through the plurality of slots in the first endplate and through the plurality of slots in the second endplate.
2. The prosthetic intervertebral disc of claim 1 wherein each groove width and groove depth is selected to obtain a desired torsional resistance of the core member.
3. The prosthetic intervertebral disc of claim 1 wherein each groove width and groove depth is selected to obtain a desired load bearing capacity of the core member.
4. The prosthetic intervertebral disc of claim 1 wherein said at least one fiber extends through each of said plurality of slots of said first endplate and through each of said plurality of slots of said second end plate.
5. The prosthetic intervertebral disc of claim 1 further comprising fixation members for securing said first and second endplates to vertebral bodies, said fixation members extending from outer surfaces of said first and second endplates.
6. The prosthetic intervertebral disc of claim 5 wherein said fixation members each comprise at least one anchoring fin.
7. The prosthetic intervertebral disc of claim 1 wherein at least one of the first and second endplates comprises a material is selected from the group consisting of titanium, titanium alloys, stainless steel, cobalt/chromium, ultrahigh molecular weight polyethylene (UHMW-PE), polyetheretherketone (PEEK), ceramics, and graphite.
8. The prosthetic intervertebral disc of claim 1 wherein at least one of the first and second endplates comprises titanium or a titanium alloy.
9. A prosthetic intervertebral disc for implantation between adjacent first and second vertebrae in human spine comprising:
a first endplate comprising an inner surface positioned adjacent a compressible core member, the first endplate comprising a plurality of slots, the first endplate being attachable to a first vertebra;
a second endplate comprising an inner surface positioned adjacent the compressible core member, the second endplate comprising a plurality of slots, the second endplate being attachable to a second vertebra adjacent the first vertebra in a spine;
the compressible core member positioned between said first and second endplates, the compressible core member comprising a polymeric nuclear domain having an outer surface, at least one compression member situated on the outer surface of the outer surface domain, and the compressible core member comprising an annular domain surrounding the nuclear domain, wherein the annular domain contains at least one fiber that is engaged with said first and second endplates by extending through the plurality of slots in the first endplate and through the plurality of slots in the second endplate.
10. The prosthetic intervertebral disc of claim 9 wherein the at least one compression member comprises a coiled compression spring.
11. The prosthetic intervertebral disc of claim 9 wherein the at least one compression member comprises a plurality of spaced apart rings.
12. The prosthetic intervertebral disc of claim 9 wherein said at least one fiber extends through each of said plurality of slots of said first endplate and through each of said plurality of slots of said second end plate.
13. The prosthetic intervertebral disc of claim 9 further comprising fixation members for securing said first and second endplates to vertebral bodies, said fixation members extending from outer surfaces of said first and second endplates.
14. The prosthetic intervertebral disc of claim 13 wherein said fixation members each comprise at least one anchoring fin.
15. The prosthetic intervertebral disc of claim 9 wherein at least one of the first and second endplates comprises a material is selected from the group consisting of titanium, titanium alloys, stainless steel, cobalt/chromium, ultrahigh molecular weight polyethylene (UHMW-PE), polyetheretherketone (PEEK), ceramics, and graphite.
16. The prosthetic intervertebral disc of claim 9 wherein at least one of the first and second endplates comprises titanium or a titanium alloy.
17. A prosthetic intervertebral disc for implantation between adjacent first and second vertebrae in human spine comprising:
a first endplate comprising an inner surface positioned adjacent a compressible core member, the first endplate comprising a plurality of slots, the first endplate being attachable to a first vertebra;
a second endplate comprising an inner surface positioned adjacent the compressible core member, the second endplate comprising a plurality of slots, the second endplate being attachable to a second vertebra adjacent the first vertebra in a spine;
the compressible core member positioned between said first and second endplates, the compressible core member comprising a polymeric nuclear domain having a first upper surface adjacent the first endplate and having a second lower surface adjacent the second endplate, the first and second surfaces being configured to provide a plurality of raised portions on the first and second surfaces and an access volume between the core member and the first and second endplates for access of gaseous sterilizing medium, and the compressible core member comprising an annular domain surrounding the nuclear domain, wherein the annular domain contains at least one fiber that is engaged with said first and second endplates by extending through the plurality of slots in the first endplate and through the plurality of slots in the second endplate.
18. The prosthetic intervertebral disc of claim 17 wherein the plurality of raised portions comprise raised portions forming a generally radial pattern extending from a location near the center of the surface radially to the outer edge.
19. The prosthetic intervertebral disc of claim 17 wherein the plurality of raised portions comprise raised, semicircular portions forming a generally circular pattern.
20. The prosthetic intervertebral disc of claim 18 wherein the plurality of raised portions further comprise raised, semicircular portions forming a generally circular pattern.
21. The prosthetic intervertebral disc of claim 17 wherein the plurality of raised portions comprise a plurality of raised bumps.
22. The prosthetic intervertebral disc of claim 17 wherein the plurality of raised portions comprise a polyethylene terephthalate (PET) integrated mesh including a plurality of non-geometric raised portions.
23. The prosthetic intervertebral disc of claim 17 wherein said at least one fiber extends through each of said plurality of slots of said first endplate and through each of said plurality of slots of said second end plate.
24. The prosthetic intervertebral disc of claim 17 further comprising fixation members for securing said first and second endplates to vertebral bodies, said fixation members extending from outer surfaces of said first and second endplates.
25. The prosthetic intervertebral disc of claim 24 wherein said fixation members each comprise at least one anchoring fin.
26. The prosthetic intervertebral disc of claim 17 wherein at least one of the first and second endplates comprises a material is selected from the group consisting of titanium, titanium alloys, stainless steel, cobalt/chromium, ultrahigh molecular weight polyethylene (UHMW-PE), polyetheretherketone (PEEK), ceramics, and graphite.
27. The prosthetic intervertebral disc of claim 17 wherein at least one of the first and second endplates comprises titanium or a titanium alloy.
28. The prosthetic intervertebral disc of claim 17 wherein the polymeric nuclear domain comprises an elastomeric material.
29. The prosthetic intervertebral disc of claim 17 wherein the polymeric nuclear domain comprises an elastomeric material selected from polydimethylsiloxane, polycarbonate-polyurethane, and aromatic and aliphatic polyurethanes.
30. The prosthetic intervertebral disc of claim 17 wherein the polymeric nuclear domain comprises a polycarbonate polyurethane elastomeric material.
31. The prosthetic intervertebral disc of claim 17 wherein the polymeric nuclear domain comprises poly(ethylene propylene) copolymer.
32. The prosthetic intervertebral disc of claim 17 wherein the polymeric nuclear domain comprises polyvinylchloride.
33. The prosthetic intervertebral disc of claim 17 wherein the polymeric nuclear domain comprises poly(tetrafluoro ethylene) and its copolymers.
34. The prosthetic intervertebral disc of claim 17 wherein the polymeric nuclear domain comprises a hydrogel.