Claims
- 1. A modular implant configured for placement between opposing bone surfaces, comprising:
a pair of opposing endplate components, each attached to one of the opposing bone surfaces; a cushioning component disposed between the endplate components; and a mechanism for interlocking the cushioning component to one or both of the endplates.
- 2. The implant of claim 1, wherein the cushioning component includes a filler material.
- 3. The implant of claim 2, wherein the filler material is a gas, liquid, foam, gel or hydrogel.
- 4. The implant of claim 1, wherein one or both of the endplate components include a modified surface to increase adherence to respective bone surfaces.
- 5. The implant of claim 4, wherein the modified surface includes spikes or other projections.
- 6. The implant of claim 4, wherein the modified surface is conducive to bony ingrowth.
- 7. The implant of claim 1, wherein:
the cushioning component includes an outer, compressible tire-like structure attached to a central hub; and the central hub includes the mechanism for interlocking the cushioning component to one or both of the endplates.
- 8. The implant of claim 7, wherein the mechanism for interlocking the cushioning component to one or both of the endplates includes a projection on the central hub and a corresponding groove on the endplate allowing the implant to be pushed into position.
- 9. The implant of claim 8, further including a screw or other fastener for maintaining the projection in the groove.
- 10. The implant of claim 8, wherein the compressible tire-like structure component includes a filler material.
- 11. The implant of claim 10, wherein the filler material is a gas, liquid, foam, gel or hydrogel.
- 12. The implant of claim 1, further including a clip or other device for compressing the implant until insertion between the opposing bone surfaces.
- 13. The implant of claim 1, wherein the endplates are configured for adherence to vertebral endplates.
- 14. The implant of claim 1, wherein:
one of the endplates is configured for adherence to the articular portion of a prosthetic tibia component; and the other of the endplates is configured for adherence to a prepared proximal tibia.
- 15. A modular implant configured for placement between opposing bone surfaces, comprising:
a pair of opposing endplate components, each attached to one of the opposing bone surfaces; a cushioning component in the form of an outer, compressible tire-like structure attached to a central hub; and mechanism associated with the central hub for interlocking the cushioning component to one or both of the endplates.
- 16. The implant of claim 15, wherein the cushioning component includes a filler material.
- 17. The implant of claim 16, wherein the filler material is a gas, liquid, foam, gel or hydrogel.
- 18. The implant of claim 16, wherein one or both of the endplate components include a modified surface to increase adherence to respective bone surfaces.
- 19. The implant of claim 18, wherein the modified surface includes spikes or other projections.
- 20. The implant of claim 18, wherein the modified surface is conducive to bony ingrowth.
- 21. The implant of claim 15, wherein the mechanism for interlocking the cushioning component to one or both of the endplates includes a projection on the central hub and a corresponding groove on the endplate allowing the implant to be pushed into position.
- 22. The implant of claim 21, further including a screw or other fastener for maintaining the projection in the groove.
- 23. The implant of claim 15, further including a clip or other device for compressing the implant until insertion between the opposing bone surfaces.
- 24. The implant of claim 15, wherein the endplates are configured for adherence to vertebral endplates.
- 25. The implant of claim 15, wherein:
one of the endplates is configured for adherence to a prepared distal femur; and the other of the endplates is configured for adherence to a prepared proximal tibia.
- 26. A method of inserting an artificial disc replacement (ADR) into an intervertebral disc space, comprising the steps of:
compressing an ADR; inserting the ADR into the disc space; and relieving the compression.
REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 10/303,385, filed Nov. 25, 2002; which is a continuation-in-part of U.S. patent application Ser. No. 10/191,639, filed Jul. 9, 2002; which is a continuation-in-part of U.S. patent application Ser. No. 09/415,382, filed Oct. 8, 1999, now U.S. Pat. Nos. 6,419,704, and 09/580,231, filed May 26, 2000, now U.S. Pat. No. 6,494,883. The entire content of each application and patent is incorporated herein by reference.
Continuation in Parts (4)
|
Number |
Date |
Country |
| Parent |
10303385 |
Nov 2002 |
US |
| Child |
10892795 |
Jul 2004 |
US |
| Parent |
10191639 |
Jul 2002 |
US |
| Child |
10303385 |
Nov 2002 |
US |
| Parent |
09415382 |
Oct 1999 |
US |
| Child |
10191639 |
Jul 2002 |
US |
| Parent |
09580231 |
May 2000 |
US |
| Child |
10191639 |
Jul 2002 |
US |