Claims
- 1. A vertebral disc prosthesis comprising:
a mass of material adapted to be inserted into the interior region of the vertebral disc, wherein the mass of material has a compressive strength of less than 4 MN/m2.
- 2. The prosthesis according to claim 1, wherein the mass of material comprises a hydrogel material.
- 3. The prosthesis according to claim 1, wherein the mass of material is isotropic.
- 4. The prosthesis according to claim 1, wherein the mass of material is adapted to at least one of absorb and release fluid.
- 5. The prosthesis according to claim 1, wherein the mass of material comprises a viscoelastic material.
- 6. The prosthesis according to claim 1, wherein the mass of material is wedge-shaped so as to resist extrusion from the interior region of the vertebral disc when implanted therein.
- 7. The prosthesis according to claim 1, wherein the wedge-shaped mass of material resists extrusion from the interior region of the vertebral disc when implanted therein.
- 8. The prosthesis according to claim 1, wherein the mass of material comprises a spherical shape.
- 9. The prosthesis according to claim 1, wherein the mass of material comprises a rod shape.
- 10. The prosthesis according to claim 1, wherein the mass of material comprises a therapeutic amount of a desired substance, the mass being adapted to deliver the therapeutic amount of the desired substance to the vertebral disc when implanted therein.
- 11. The prosthesis according to claim 1, wherein the mass of material comprises a Poisson's ratio between a range of approximately 0.30 and approximately 0.49.
- 12. The prosthesis according to claim 1, wherein the mass of material has a compressive strength between a range of approximately 2.5 MN/n2 and approximately 3.5 MN/m2.
- 13. The prosthesis according to claim 1, wherein the mass of material is adapted to absorb approximately 50% to approximately 100% of its volume within approximately 1 hour to approximately 8 hours under a compressive stress between a range of approximately 0.2 MN/m2 and 0.8 MN/m2.
- 14. The prosthesis according to claim 1, wherein the mass of material is in fluid form as the mass of material is being inserted into the interior region of the vertebral disc.
- 15. The prosthesis according to claim 14, wherein the mass of material is adapted to cure or dry into a solid or semi-solid mass after being inserted into the interior region of the vertebral disc.
- 16. The prosthesis according to claim 1, wherein the mass of material is a solid material.
- 17. The prosthesis according to claim 16, wherein the solid mass of material is porous.
- 18. The prosthesis according to claim 1, in combination with a barrier that is adapted to cover an opening in the annulus of the vertebral disc, the prosthesis adapted to be disposed adjacent the barrier when both the prosthesis and the barrier are implanted into the vertebral disc.
- 19. A prosthesis for implantation into an interior region of a vertebral disc, the vertebral disc includes first and second endplates, the prosthesis comprising:
a mass of material adapted for insertion into the interior region of the vertebral disc so as to displace existing vertebral tissue, wherein the mass of material is sized so as to be spaced from both the first and second endplates when implanted into the interior region of the vertebral disc such that the mass of material is surrounded with nucleus pulposus within the interior region of the vertebral disc when implanted therein.
- 20. The prosthesis according to claim 19, wherein the mass of material comprises a hydrogel material.
- 21. The prosthesis according to claim 19, wherein the mass of material is isotropic.
- 22. The prosthesis according to claim 19, wherein the mass of material is adapted to at least one of absorb and release fluid.
- 23. The prosthesis according to claim 19, wherein the mass of material has a compressive strength between a range of approximately 2.5 MN/m2 and approximately 3.5 MN/m2.
- 24. The prosthesis according to claim 19, wherein the mass of material is adapted to absorb approximately 50% to approximately 100% of its volume within approximately 1 hour to approximately 8 hours under a compressive stress between a range of approximately 0.2 MN/m2 and 0.8 MN/m2.
- 25. The prosthesis according to claim 19, wherein the mass of material is wedge-shaped so as to resist extrusion from the interior region of the vertebral disc when implanted therein.
- 26. The prosthesis according to claim 19, wherein the wedge-shaped mass of material resists extrusion from the interior region of the vertebral disc when implanted therein.
- 27. The prosthesis according to claim 19, wherein the mass of material comprises a spherical shape.
- 28. The prosthesis according to claim 19, wherein the mass of material comprises a rod shape.
- 29. The prosthesis according to claim 19, wherein the mass of material comprises a therapeutic amount of a desired substance, the mass being adapted to deliver the therapeutic amount of the desired substance to the vertebral disc when implanted therein.
- 30. The prosthesis according to claim 19, wherein the mass of material comprises a Poisson's ratio between a range of approximately 0.30 and approximately 0.49.
- 31. A prosthesis for implantation into an interior region of a vertebral disc, the prosthesis comprising:
an isotropic mass of biocompatible hydrogel having a compressive strength of less than 4 MN/m2 and a volume between a range of approximately 0.1 ml and approximately 6.0 ml.
- 32. The prosthesis according to claim 31, wherein the mass of material is wedge-shaped so as to resist extrusion from the interior region of the vertebral disc when implanted therein.
- 33. The prosthesis according to claim 32, wherein the wedge-shaped mass of material resists extrusion from the interior region of the vertebral disc when implanted therein.
- 34. The prosthesis according to claim 31, wherein the mass of material comprises a spherical shape.
- 35. The prosthesis according to claim 31, wherein the mass of material comprises a rod shape.
- 36. The prosthesis according to claim 31, wherein the mass of material is adapted to absorb approximately 50% to approximately 100% of its volume within approximately 1 hour to approximately 8 hours under a compressive stress between a range of approximately 0.2 MN/m2 and 0.8 MN/m2.
- 37. The prosthesis according to claim 31, wherein the mass of material comprises a therapeutic amount of a desired substance, the mass being adapted to deliver the therapeutic amount of the desired substance to the vertebral disc when implanted therein.
- 38. The prosthesis according to claim 31, wherein the mass of material comprises a Poisson's ratio between a range of approximately 0.30 and approximately 0.49.
- 39. The prosthesis according to claim 31, wherein the mass of material has a compressive strength between a range from approximately 2.5 MN/n2 and approximately 3.5 MN/m2.
- 40. The prosthesis according to claim 31, in combination with a barrier that is adapted to cover an opening in the annulus of the vertebral disc, the prosthesis adapted to be disposed adjacent the barrier when both the prosthesis and the barrier are implanted into the vertebral disc.
- 41. The prosthesis according to claim 31, wherein the prosthesis comprises a plurality of individual component prostheses, each formed of an isotropic mass of biocompatible hydrogel material.
- 42. The prosthesis according to claim 19, wherein the prosthesis comprises a plurality of individual component prostheses, each formed of a mass of material adapted for insertion into the interior region of the vertebral disc so as to displace existing vertebral tissue.
- 43. The prosthesis according to claim 1, wherein the prosthesis comprises a plurality of individual component prostheses, each formed of a mass of material having a compressive strength of less than 4 MN/m2.
- 44. A kit of parts for use in augmenting vertebral tissue, the kit comprising:
the prosthesis according to any of claims 1, 19 and 31; and a device for inserting the prosthesis into the interior region of the vertebral disc.
RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application Ser. Nos. 60/439,261, filed on Jan. 10, 2003; No. 60/438,022, filed on Jan. 3, 2003; and No. 60/417,219, filed Oct. 9, 2002.
[0002] This application is also a continuation-in-part of U.S. application Ser. No. 10/055,504 filed on Oct. 25, 2001, now pending, which is a continuation-in-part of U.S. application Ser. No. 09/696,636 filed on Oct. 25, 2000, now U.S. Pat. No. 6,508,839, which is a continuationin-part of U.S. application Ser. No. 09/642,450 filed on Aug. 18, 2000, now U.S. Pat. No. 6,482,235, which is a continuation-in-part of U.S. application Ser. No. 09/608,797 filed on Jun. 30, 2000, now U.S. Pat. No. 6,425,919.
[0003] Application Ser. No. 10/055,504 claims the benefit of U.S. Provisional Application Ser. No. 60/311,586 filed on Aug. 10, 2001. Application Ser. Nos. 09/642,450 and 09/608,797 each claim the benefit of U.S. Provisional Application Ser. Nos. 60/172,996, filed on Dec. 19, 1999; No. 60/161,085, filed on Oct. 25, 1999; and No. 60/149,490 filed Aug. 18, 1999.
[0004] Each of these applications is hereby incorporated herein by reference in their entirety.
Provisional Applications (6)
|
Number |
Date |
Country |
|
60439261 |
Jan 2003 |
US |
|
60438022 |
Jan 2003 |
US |
|
60417219 |
Oct 2002 |
US |
|
60149490 |
Aug 1999 |
US |
|
60161085 |
Oct 1999 |
US |
|
60172996 |
Dec 1999 |
US |
Continuation in Parts (4)
|
Number |
Date |
Country |
Parent |
10055504 |
Oct 2001 |
US |
Child |
10431650 |
May 2003 |
US |
Parent |
09696636 |
Oct 2000 |
US |
Child |
10055504 |
Oct 2001 |
US |
Parent |
09642450 |
Aug 2000 |
US |
Child |
09696636 |
Oct 2000 |
US |
Parent |
09608797 |
Jun 2000 |
US |
Child |
09642450 |
Aug 2000 |
US |