IP Library Granted Patent US 8,449,579
Granted Patent B2
US 8,449,579 · App. 13/181,829 · Granted May 28, 2013

Linked bilateral spinal facet implants and methods of use

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Quick Facts
Patent No.
US 8,449,579
App. No.
13/181,829
Granted
May 28, 2013
Kind
B2
Abstract

Superior and/or inferior facets of one or more facet joints may be replaced by superior and/or inferior facet joint prostheses. In one embodiment, a kit of superior or inferior prostheses is provided, in which the prostheses have at least two dimensions that vary among members of the kit independently of each other. Each prosthesis may have a bone engaging surface having a surface that is polyaxially rotatable against a corresponding resection of a vertebra. Each prosthesis may also have an articulating surface shaped such that, after attachment to the spine, the replaced or partially replaced facet joints provide a larger medial-lateral range of motion when the spine is flexed than when the spine is extended. Crosslinks may be used to connect left and right prosthesis together in such a manner that they are stabilized in a position in which they are seated directly against the vertebra.

Claims (33)

1. A method for replacing facets of a mammalian vertebra, the method comprising:

resecting the vertebra to provide first and second resected portions of the vertebra;

attaching a first prosthesis to the first resected portion such that a first articulating surface of the first prosthesis is positioned to articulate against a first facet of an adjacent vertebra;

attaching a second prosthesis to the second resected portion such that a second articulating surface of the second prosthesis is positioned to articulate against a second facet of the adjacent vertebra; and

positioning a crosslink between adjacent spinous processes of the vertebra and attaching the crosslink to the first prosthesis and the second prosthesis; and

wherein the crosslink is adjustable laterally with respect to the first and second prostheses,

wherein attaching the crosslink to the first prosthesis comprises gripping the crosslink with a first gripping mechanism of a first coupling coupled to the first prosthesis at any of a plurality of positions along an axis of the crosslink,

wherein attaching the crosslink to the second prosthesis comprises gripping the crosslink with a second gripping mechanism of a second coupling coupled to the second prosthesis at any of a plurality of positions along the axis,

wherein attaching the crosslink to the first prosthesis further comprises: positioning flanges on either side of the crosslink and gripping the crosslink between the flanges, wherein gripping the crosslink between the flanges comprises rotating a first turnbuckle to urge the flanges together.

2. The method of claim 1 , further comprising fixing an angular displacement between the prostheses about a first axis at any of a plurality of angular displacement values.

3. The method of claim 2 , wherein fixing the angular displacement between the prostheses comprises engaging a semispherical member of the first prosthesis with the flanges to provide a ball-and-socket joint.

4. The method of claim 3 , wherein the semispherical member has surface features selected from a group consisting of divots, splines, knurling, longitudinal grooves, circumferential grooves, facets, nubs, and combinations thereof, wherein engaging the semispherical member comprises urging the surface features against the flanges to resist relative rotation between the first coupling and the semispherical member.

5. The method of claim 1 , wherein attaching the crosslink to the prostheses comprises compressing the prostheses against the vertebra.

6. A method for replacing facets of a mammalian vertebra, the method comprising:

resecting the vertebra to provide first and second resected portions of the vertebra;

attaching a first inferior prosthesis to the first resected portion such that a first articulating surface of the first inferior prosthesis is positioned to articulate against a first superior facet of an adjacent vertebra;

attaching a second inferior prosthesis to the second resected portion such that a second articulating surface of the second inferior prosthesis is positioned to articulate against a second superior face of the adjacent vertebra; and

attaching a crosslink to the first and second inferior prosthesis such that the crosslink extends between the first and second inferior prostheses,

wherein the crosslink is positioned between adjacent spinous processes of the vertebra and is adjustable laterally with respect to the first and second prostheses,

wherein attaching the crosslink to the first inferior prosthesis comprises gripping the crosslink with a first gripping mechanism of a first coupling coupled to the first inferior prosthesis at any of a plurality of positions along an axis of the crosslink,

wherein attaching the crosslink to the second inferior prosthesis comprises gripping the crosslink with a second gripping mechanism of a second coupling coupled to the second inferior prosthesis at any of a plurality of positions along an axis of the crosslink,

wherein attaching the crosslink to the first inferior prosthesis further comprises: positioning flanges on either sides of the crosslink and gripping the crosslink between the flanges, wherein gripping the crosslink between the flanges comprises rotating a first turnbuckle to urge the flanges together.

7. The method of claim 6 , further comprising fixing an angular displacement between the inferior prostheses about a first axis at any of a plurality of angular displacement values.

8. The method of claim 7 , wherein fixing the angular displacement between the inferior prostheses comprises engaging a semispherical member of the first inferior prosthesis with the flanges to provide a ball-and-socket joint.

9. The method of claim 8 , wherein the semispherical member has surface features selected from a group consisting of divots, splines, knurling, longitudinal grooves, circumferential grooves, facets, nubs, and combinations thereof, wherein engaging the semispherical member comprises urging the surface features against the flanges to resist relative rotation between the first coupling and the semispherical member.

10. The method of claim 6 , wherein attaching the crosslink to the inferior prostheses comprises compressing the inferior prostheses against the vertebra.

11. A method for replacing facets of a mammalian vertebra the method comprising:

resecting the vertebra to provide first and second resected portions of the vertebra;

attaching a first prosthesis to the first resected portion such that a first articulating surface of the first prosthesis is positioned to articulate against a first facet of an adjacent vertebra;

attaching a second prosthesis to the second resected portion such that a second articulating surface of the second prosthesis is positioned to articulate against a second facet of the adjacent vertebra;

attaching a crosslink to the first and second prostheses such that the crosslink extends between the prostheses, wherein attaching the crosslink to the first prosthesis comprises positioning flanges on either sides of the crosslink and rotating a first turnbuckle to urge the flanges together,

wherein the crosslink is positioned between adjacent spinous processes and is adjustable laterally with respect to the first and second prostheses.

12. The method of claim 11 , wherein attaching the crosslink to the prostheses comprises gripping the crosslink with a first gripping mechanism of a first coupling coupled to the first prosthesis at any of a plurality of positions along an axis of the crosslink.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2015
From: GMEDELAWARE 2 LLC
To: GLOBUS MEDICAL, INC.
Reel/Frame 037311/0256 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2011
From: CHERVITZ, ALAN; JUSTIN, DANIEL F; FALLIN, T. WADE; HOY, ROBERT W
To: GMEDELAWARE 2 LLC
Reel/Frame 027341/0004 →