Method and apparatus for intervertebral disc support and repair
An intervertebral disc device is provided to support or repair one or both of the disc annulus and the disc nucleus. The intervertebral disc device includes an annulus support and an elongated member to support the disc nucleus. The disc annulus support has an elongated wire and an annulus closure. The disc nucleus has an elongated member that is expandable. Any of the devices can be loaded with biologics. Moreover, any of the devices may include a scarring factor to promote fibrous growth.
1. A disc nucleus device comprising:
an elongated, flexible wire, the elongated, flexible wire comprises a tip and a tail;
an expandable disc annulus closure device coupled to at least one of the tip or the tail; and
at least one expandable material affixed to the elongated, flexible wire sized for insertion into a disc nucleus, the at least one expandable material extending substantially continuously along the elongated, flexible wire, and an expansion control member disposed around at least a portion of the elongated, flexible wire, wherein the expansion control member is configured to provide expansion control of the at least one expandable material in a radial direction from the elongated, flexible wire, and the expandable material configured to expand in the disc nucleus and to provide support between a superior vertebrae and an inferior vertebrae.
2. The disc nucleus device according to claim 1 , further comprising at least one capsule coupled to the elongated, flexible wire, the at least one capsule comprising a pharmaceutical.
3. An intervertebral disc device comprising:
an annulus support having an exterior surface and an interior volume adapted to surround a disc nucleus;
a scarring material adapted to reside between the exterior surface and a disc annulus to promote fibrous growth;
a disc nucleus support residing in the interior volume, and the disc nucleus support comprising an elongated wire, at least one expandable material affixed to the elongated wire, and an over coil disposed in a surrounding configuration to the elongated wire, wherein the over coil is configured to provide expansion control of the at least one expandable material, and wherein the expandable material is expandable in the disc nucleus.
4. The intervertebral disc device according to claim 1 , wherein the at least one expandable material comprises a plurality of capsules of expandable material.
5. The intervertebral disc device according to claim 4 , wherein at least one of the plurality of capsules of expandable material comprises a hydrogel material.
6. The intervertebral disc device according to claim 1 , further comprising a pharmaceutical delivery capsule affixed to the elongated wire.
7. The intervertebral disc device according to claim 1 , wherein the annulus support has an interior surface further comprising a carrier, the carrier containing at least one pharmaceutical.
8. The intervertebral disc device according to claim 1 , wherein the annulus support has a tip and a tail further comprising scarring material on at least one of the tip or the tail to cause fibrous growth at an insertion point.
9. The annulus device according to claim 1 , wherein the elongated wire is selected from a group of materials consisting of: a polymer, a resin, a composite, titanium, platinum, or shaped memory alloys.
10. The annulus device according to claim 1 , wherein the scaring material is cotton.
11. The annulus device according to claim 1 , wherein the elongated, flexible material is adapted to substantially surrounds a disc nucleus.
12. A device to deliver pharmaceuticals to a disc nucleus, the device comprising:
a filament, the filament comprising an expandable closure device coupled to an end of the filament;
at least one capsule coupled to the filament, the at least one capsule containing at least one pharmaceutical;
the at least one capsule adapted to provide support between a superior vertebrae and an inferior vertebrae; and
at least one expandable material coupled to the filament to provide support between the superior vertebrae and the inferior vertebrae, and an over coil disposed in a surrounding configuration to the filament and in a surrounding configuration to the at least one capsule coupled to the filament, wherein the over coil is configured to provide expansion control of the at least one expandable material.