Spinal anchoring screw
View Patent ↗A spine stabilization system having a dynamic screw comprises at least one bone anchor assembly comprising a receiver member and a bone engaging member pivotably connected to the receiver member. A bearing is provided in the receiver member that engages a portion of the bone engaging member. An elongated connecting member is connected to the receiver member. A retention member insert is provided within the receiver member between the elongated connecting member and the bearing. The retention member is configured to secure the bearing within the retention member.
1. A spine stabilization system comprising:
(a) a bone engaging member having a head and a shank;
(b) a receiver member configured to receive the head of the bone engaging member therein, wherein the receiver member includes a sidewall structure defining (i) a first side opening and a second side opening spaced apart from each other, (ii) a connecting member cavity interposed between the first side opening and the second side opening, and (iii) a first set of threads, and wherein the sidewall structure includes a first connecting member seat that partially defines the first side opening and a second connecting member seat that partially defines the second side opening;
(c) a bearing positioned (i) in the receiver member, and (ii) in contact with the head of the bone engaging member;
(d) an elongated connecting member extending into the connecting member cavity of the receiver member and passing through both the first side opening and the second side opening;
(e) a retention member positioned between the elongated connecting member and the bearing within the receiver member, the retention member configured to secure the bearing in place within the receiver member; and
(f) a fixation member having a second set of threads configured to mate with the first set of threads so as to attach the fixation member to the receiver member,
wherein, when the second set of threads is mated with the first set of threads to attach the fixation member to the receiver member, (i) the elongated connecting member is urged into contact with both the first connecting member seat and the second connecting member seat so as to secure the elongated connecting member to the receiver member, (ii) the bearing is spaced apart from the elongated connecting member so that no portion of the bearing contacts the elongated connecting member, and (iii) the retention member is spaced apart from the elongated connecting member so that no portion of the retention member contacts the elongated connecting member.
2. The spine stabilization system of claim 1 wherein the bearing is a split bearing.
3. The spine stabilization system of claim 1 wherein the retention member comprises a C-shaped plate.
4. The spine stabilization system of claim 1 wherein the retention member is comprised of a resilient material.
5. The spine stabilization system of claim 1 wherein the retention member is comprised of a compressible material.
6. The spine stabilization system of claim 1 wherein the receiver member comprises a groove and the retention member is positioned within the groove.
7. The spine stabilization system of claim 1 wherein the head of the bone engaging member is positioned within the bearing and the shank extends from the receiver member.
8. The spine stabilization system of claim 1 wherein the bearing is positioned between the head of the bone engaging member and the receiver member so that no portion of the bone engaging member contacts the receiver member.
9. The spine stabilization system of claim 8 wherein the bearing is comprised of ceramic.
10. The spine stabilization system of claim 8 wherein the bearing is comprised of UHMWPE.
11. The spine stabilization system of claim 8 wherein the bearing is comprised of cobalt chrome.
12. The spine stabilization system of claim 8 wherein the retention member is comprised of a polyethylene.
13. The spine stabilization system of claim 8 wherein the retention member is comprised of a compressible material.
14. The spine stabilization system of claim 1 wherein each of the first connecting member seat and the second connecting member seat is generally U-shaped.
15. The spine stabilization system of claim 1 wherein:
the receiver member defines an axis,
the wall structure includes an interior wall surface that defines a groove,
the retention member includes an exterior perimeter surface,
the exterior perimeter surface is positioned within the groove, and
the groove is spaced axially from both the first connecting member seat and the second connecting member seat.
16. The spine stabilization system of claim 1 wherein, when the second set of threads is mated with the first set of threads to attach the fixation member to the receiver member, the retention member contacts the bearing.