Inter spinous process spacer with compressible core providing dynamic stabilization
View Patent ↗The described devices are useful in the treatment of spinal disorders and pain. In particular, the described devices are designed to stabilize a portion of the spine by restoring and maintaining spacing between two adjacent vertebrae. The devices are compressible spacers that may be situated between the spinous processes of those adjacent vertebrae. The described inter spinous process spacers also allow a range of spinal motion and mimic the motion of a normally functioning spine.
1. An inter spinous process, dynamic stabilizing device interposable between first and second spinous processes associated with first and second vertebrae, where the second vertebra is adjacent said first vertebra in a human spine, said first and second vertebrae having facet joints and foramenal spaces, said device comprising:
a.) at least one central core assembly, comprising,
i.) first and second end plates,
ii.) at least one compressible core member positioned between and adjacent to said first and second end plates, and
iii.) at least one fiber extending between and engaged with said first and second end plates, wherein the at least one fiber extends from the first end plate to the second end plate without contacting the first and second spinous processes and back to the first end plate without contacting the first and second spinous processes,
b.) bone attachment members, each bone attachment member including a pillar extendable from and attachable to said first and second end plates, respectively, the bone attachment members being attachable to said first and second spinous processes, respectively, wherein the pillars of the bone attachment members are configured, after implantation of this stabilizing device between the first and second spinous processes, to space at least one of the first and second end plates from the first and second spinous processes.
2. The stabilizing device of claim 1 where the at least one central core assembly is configured to stabilize the spacing between the first spinous process and the second spinous process, to absorb compression, to permit rotation between the first and second vertebrae, and to permit lateral bending between the first and second vertebrae.
3. The stabilizing device of claim 1 wherein the stabilizing device is sized such that, when implanted between the first spinous process and the second spinous process, the stabilizing device restores a posterior tension band between first and second vertebrae, realigns facets associated with the first and the second vertebrae, and restores a foramenal height associated with the first and the second vertebrae.
4. The stabilizing device of claim 1 wherein the at least one compressible core member comprises one or more polymeric materials.
5. The stabilizing device of claim 1 wherein the stabilizing device comprising bone attachment members attached to said first and second end plates is configured to be implanted between said first and second spinous processes by a posterior approach.
6. The inter spinous process stabilizer of claim 1 wherein the bone attachment members are configured to be attached to said first and second end plates in situ, after such bone attachment members are attached to said first and second spinous processes.
7. The inter spinous process stabilizer of claim 1 wherein the first and second end plates each have a periphery and the at least one fiber extending between and engaged with said first and second end plates is wound around the periphery of each of the first and second end plates.
8. The inter spinous process stabilizer of claim 1 wherein the first and second end plates each have an interior surface adjacent to the at least one compressible core member and wherein those interior surfaces are substantially flat.
9. The inter spinous process stabilizer of claim 1 wherein the bone attachment members each further comprise at least one bone fixation element.