Implant for stabilizing a bone graft during spinal fusion
View Patent ↗Systems and method in accordance with the embodiments of the present invention can include an implant for positioning at a vertebra for resisting the expulsion of a bone graft from within an intervertebral space. The implant includes a buttress plate having an intervertebral plate and an anchoring plate connected such that the intervertebral plate can move relative to the anchoring plate.
1. A method for retaining a fusion plug in place in the disk space between adjacent vertebrae, the method including:
selecting a buttress plate having an anchoring plate and an intervertebral plate with the intervertebral plate connected to the anchoring plate;
positioning the anchoring plate relative to a vertebra and the intervertebral plate relative to the fusion plug;
anchoring the anchoring plate to the vertebra with the intervertebral plate positioned over the fusion plug so that the fusion plug can not be expelled from between the disk space; and
securing a locking plate to the anchoring plate so that a keel extending from the locking plate penetrates the vertebra and prevents rotation of the buttress plate relative to the vertebra.
2. The method of claim 1 wherein the positioning step included pivoting the intervertebral plate relative to the anchoring plate.
3. The method of claim 1 wherein the anchoring step includes using a screw to anchor the anchoring plate to the vertebra and securing the locking plate includes positioning a protuberance of the locking plate in a bore of the anchoring plate that receives the screw to prevent back out of the screw from the anchoring plate and positioning the keel in a groove along an edge of the anchoring plate.
4. The method of claim 3 including using a machine screw to lock the locking plate to the anchoring plate.
5. The method of claim 1 including the anchoring plate having protrusions and the step of using the protrusions to fix to position of the anchoring plate relative to the vertebra.
6. A method for retaining a fusion plug in place in the disk space between adjacent vertebrae, the method including:
selecting a buttress plate having an anchoring plate and an intervertebral plate with the intervertebral plate hinged to the anchoring plate;
positioning the anchoring plate relative to a vertebra and the intervertebral plate relative to the fusion plug;
anchoring the anchoring plate to the vertebra with the intervertebral plate positioned over the fusion plug so that the fusion plug can not be expelled from between the disk space; and
securing a locking plate to the anchoring plate ‘so that a keel extending from the locking plate penetrates the vertebra and prevents rotation of the buttress plate relative to the vertebra.
7. The method of claim 6 wherein the positioning step included pivoting the intervertebral plate relative to the anchoring plate.
8. The method of claim 6 wherein the anchoring step includes using a screw to anchor the anchoring plate to the vertebra and securing the locking plate includes positioning a protuberance of the locking plate in a bore of the anchoring plate that receives the screw to prevent back out of the screw from the anchoring plate and positioning the keel in a groove along an edge of the anchoring plate.
9. The method of claim 8 including using a machine screw to lock the locking plate to the anchoring plate.
10. The method of claim 6 including the anchoring plate having protrusions and the step of using the protrusions to fix to position of the anchoring plate relative to the vertebra.
11. A buttress plate to resist expulsion of a bone graft from between two vertebrae, the buttress plate comprising:
an anchoring plate adapted to he fixedly associated with one of the two vertebrae, the anchoring plate including a bore;
an intervertebral plate connected with the anchoring plate, the intervertebral plate being adapted to extend across at least a portion of an intervertebral space between the two vertebrae, wherein the intervertebral plate is pivotable relative to the anchoring plate;
a bone screw received through the bore of the anchoring plate; and
a locking plate mated with the anchoring plate in overlapping relation with the bone screw to prevent back out of the bone screw from the bore of the anchoring plate, wherein the locking plate is further configured to penetrate the one of the two vertebra to prevent rotation of the buttress plate relative to the one of the two vertebrae.
12. The buttress plate of claim 11 , wherein the intervertebral plate is pivotably connected with the anchoring plate by one of a hinge and a ball-in-socket arrangement.
13. The buttress plate of claim 11 , further comprising:
a locking screw adapted to block the bone screw from at least one of a backward displacement and a rotational displacement.
14. The buttress plate of claim 13 , wherein:
the locking screw includes a chisel-point end; and
the chisel point end self-cuts the locking screw into the vertebra.
15. The buttress plate of claim 11 , wherein the locking plate includes:
a first locking screw bore;
a keel;
a protuberance;
wherein the anchoring plate includes a second locking screw bore adapted to align with the first locking screw bore of the locking plate for receipt of a locking screw to secure the locking plate to the anchoring plate with the keel received in a groove along an edge of the anchoring plate; and
wherein the protuberance is adapted to be received at least partially within the bore of the anchoring plate to prevent back out of the bone screw.