Facet arthroplasty devices and methods
View Patent ↗Surgically installed prostheses replace either the caudal portion of a natural facet joint, the cephalad portion of a natural facet joint, or both. The prostheses are readily attached to the pedicles of a vertebral body and support at least one element that defines an artificial facet joint structure. The caudal facet joint structure is sized and located to articulate with the cephalad facet joint structure. Together, the prostheses form a total facet replacement system. The system is suitable for use in virtually all levels of the spine.
1. A method of replacing a portion of a facet of a mammalian vertebra, the method comprising:
removing at least a portion of a natural facet from a first mammalian vertebra,
attaching a first fixation device to the first mammalian vertebra,
attaching a first prosthesis to the first fixation device, the first prosthesis having a first articulating surface, the first articulating surface movable with respect to the first prosthesis,
attaching a second fixation device to a second mammalian vertebra, attaching a second prosthesis to the second fixation device, the second prosthesis having a second articulating surface,
attaching a connector between the first prosthesis and the second prosthesis, wherein the connector is independent from the first prosthesis and the second prosthesis, and wherein the connector is adjustable in length; and
positioning the first articulating surface and second articulating surface such that a configuration of the first and second articulating surfaces is unlike a preexisting articular configuration between the natural facet of the first mammalian vertebra and a natural facet of the second mammalian vertebra.
2. The method of claim 1 , wherein the first articulating surface is positioned at a location medial of a location of the natural facet of the first mammalian vertebra.
3. The method of claim 1 , wherein the first articulating surface is positioned at a location lateral of a location of the natural facet of the first mammalian vertebra.
4. The method of claim 1 , wherein the first articulating surface is positioned at a location superior to a location of the natural facet of the first mammalian vertebra.
5. The method of claim 1 , wherein the first articulating surface is positioned at a location inferior to a location of the natural facet of the first mammalian vertebra.
6. The method of claim 1 , wherein the first articulating surface comprises a generally concave surface.
7. The method of claim 1 , wherein the first articulating surface comprises a generally convex surface.
8. A method of replacing a portion of a facet of a mammalian vertebra, the method comprising:
removing at least a portion of a natural facet from a first mammalian vertebra,
attaching a first prosthesis to the first mammalian vertebra, the first prosthesis having a first articulating surface, the first articulating surface movable with respect to the first prosthesis,
attaching a second prosthesis to an adjacent mammalian vertebra, the second prosthesis having a second articulating surface,
attaching a connector between the first prosthesis and the second prosthesis, wherein the connector is independent from the first prosthesis and the second prosthesis, and wherein the connector is adjustable in length; and
positioning the first articulating surface and second articulating surface in close proximity to each other such that a configuration of the first and second articulating surfaces is unlike a preexisting articular configuration between the natural facet of the first mammalian vertebra and a natural facet of the adjacent mammalian vertebra.
9. The method of claim 8 , wherein the first articulating surface is positioned at a location medial of a location of the natural facet of the first mammalian vertebra.
10. The method of claim 8 , wherein the first articulating surface is positioned at a location lateral of a location of the natural facet of the first mammalian vertebra.
11. The method of claim 8 , wherein the first articulating surface is positioned at a location superior to a location of the natural facet of the first mammalian vertebra.
12. The method of claim 8 , wherein the first articulating surface is positioned at a location inferior to a location of the natural facet of the first mammalian vertebra.
13. The method of claim 8 , wherein the first articulating surface comprises a generally concave surface.
14. The method of claim 8 , wherein the first articulating surface comprises a generally convex surface.
15. A method of replacing a portion of both facets of a mammalian vertebra, the method comprising:
removing at least a portion of a natural facet from a first mammalian vertebra,
attaching a first prosthesis to the first mammalian vertebra, the first prosthesis having a first articulating surface,
attaching a second prosthesis to the first mammalian vertebra, the second prosthesis having a second articulating surface,
positioning the first articulating surface at a location unlike a location of the natural facet of the of the first mammalian vertebra, and
attaching a connector between the first prosthesis and the second prosthesis, wherein the connector is independent from the first prosthesis and the second prosthesis, and wherein the connector is adjustable in length.
16. The method of claim 15 , wherein the first articulating surface is positioned at a location medial of a location of the natural facet of the first mammalian vertebra.
17. The method of claim 15 , wherein the first articulating surface is positioned at a location lateral of a location of the natural facet of the first mammalian vertebra.
18. The method of claim 15 , wherein the first articulating surface is positioned at a location superior to a location of the natural facet of the first mammalian vertebra.
19. The method of claim 15 , wherein the first articulating surface is positioned at a location inferior to a location of the natural facet of the first mammalian vertebra.
20. The method of claim 15 , wherein the first and second articulating surfaces are positioned generally anatomically asymmetrical.