Methods of reinforcing an annulus fibrosis
Methods of reinforcing annulus fibrosis tissue within an intervertebral disc include the implantation of a support member also functioning as a barrier to resist damage to the tissue or herniation of tissue outside the disc. The device may be anchored to the surrounding tissue. The device is compressible and may be delivered in a minimally invasive manner through a cannula.
1. A method of reinforcing an annulus of an intervertebral disc comprising:
providing a biocompatible support member, wherein said biocompatible support member is a plate-shaped;
displacing a herniated annulus segment to approximately its pre-herniated location;
implanting at least a portion of the plate-shaped biocompatible support member along or within the annulus;
placing said biocompatible support member to substantially close a defect in the annulus; and
positioning said biocompatible support member within the disc such that said biocompatible support member is entirely disposed along the innermost surface of the annulus.
2. A method of reinforcing a herniated segment of an annulus of an intervertebral disc comprising:
providing a biocompatible support member, wherein said biocompatible support member is plate-shaped;
implanting at least a portion of the biocompatible support member along an annulus lamella surface, wherein at least a portion of said biocompatible support member contacts at least a portion of the herniated segment of the annulus;
securely establishing said plate-shaped biocompatible support member to, within, or posterior to the herniated segment;
returning at least a portion of the herniated segment of the annulus to a site substantially within its pre-herniated borders; and
positioning said biocompatible support member within the disc such that said biocompatible support member is entirely disposed along the innermost surface of the annulus.
3. The method of claim 1 , wherein the step of displacing a herniated annulus segment to approximately its pre-herniated location comprises displacing said herniated annulus segment to approximately its pre-herniated location without removing said herniated annulus segment.
4. The method of claim 2 , wherein the step of returning at least a portion of the herniated segment of the annulus to a site substantially within its pre-herniated borders is performed without removing said herniated annulus segment.
5. The method of claim 2 , further comprising using said biocompatible support member to support a weakened anulus in which there is no defect.
6. The method of claim 2 , wherein the support member closes a defect in the vicinity of the herniated segment.
7. The method of claim 1 , further comprising:
providing a connection member and an anchor;
attaching said connection member to said support member and to said anchor; and
anchoring said anchor to a site within the intervertebral disc.
8. The method in claim 7 , further comprising maintaining tension between the support member and the anchor sufficient to cause the herniated segment to remain within its preherniated borders.
9. The method of claim 1 , further comprising the step of anchoring the biocompatible support member to the annulus.
10. The method of claim 1 , further comprising providing augmentation material operable to augment the nucleus pulposus of the disc.
11. The method of claim 2 , wherein the step of securely establishing said plate-shaped biocompatible support member comprises anchoring the biocompatible support member to the annulus.
12. The method of claim 2 , further comprising providing augmentation material operable to augment the nucleus pulposus of the disc.