IP Library Granted Patent US 8,636,803
Granted Patent B2
US 8,636,803 · App. 12/753,524 · Granted Jan 28, 2014

Percutaneous implantable nuclear prosthesis

Inventors: Nadi S. Hibri (San Antonio, TX); James D. Lutz (San Antonio, TX)
Assignee: Spinal Stabilization Technologies, LLC
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Quick Facts
Patent No.
US 8,636,803
App. No.
12/753,524
Granted
Jan 28, 2014
Kind
B2
Abstract

An inter-vertebral disc prosthesis intended for percutaneous deployment comprises an expandable annular enclosure and an expandable nuclear enclosure. The expandable annular enclosure incorporates a reinforcing annular band along its periphery and is filled with in-situ curable rubber. The expandable nuclear enclosure is filled with a gas. The nuclear prosthesis further incorporates a novel, integrally molded sealing valve assembly and is stretchable and collapsible into a minimal profile for ease of insertion into a specially designed delivery cannula, and is inflation-assisted expandable into an inter-vertebral disc in which complete percutaneous nuclectomy has been performed.

Claims (27)

1. A nuclear prosthesis for percutaneous implantation into a de-nucleated inter-vertebral disc space of a human, said nuclear prosthesis comprising:

an annular enclosing layer substantially discoid in shape and defining an annular enclosure;

an annular reinforcement band adjacent an outer margin of said annular enclosing layer and defining an outer layer of said nuclear prosthesis; said annular reinforcement band comprises a plurality of at least partially interwoven layers of biocompatible fibers, thereby comprising a three dimensional structure of said annular reinforcement band, the three dimensional structure comprising;

a warp knitted outer layer for enhancing in-growth of soft tissue to said nuclear prosthesis;

at least one intermediate layer formed of a plurality of substantially helical loops of said biocompatible fibers;

an inner layer formed of thin biocompatible fibers; and

wherein said outer layer and said at least one intermediate layer are adjacent and partially interwoven, and said at least one intermediate layer and said inner layer are adjacent and partially interwoven;

a nuclear enclosing layer adjacent an inner margin of said annular enclosing layer, said nuclear enclosing layer enclosing and defining a nuclear enclosure;

a sealing valve assembly comprising a sealing valve core disposed within said annular enclosure and bonded to said annular enclosing layer, an indwelling catheter partially enclosed within said nuclear enclosure and extending outward through said nuclear enclosing layer, said inner margin of said annular enclosing layer and into said sealing valve core such that the remaining portion of said indwelling catheter is enclosed within said sealing valve core, and a sealing plug insertable within said indwelling catheter; and

wherein said sealing valve assembly conducts compressible fluid into said nuclear enclosure and deformable fluid into said annular enclosure and said sealing valve assembly further comprises:

an inlet port disposed within said sealing valve core and lateral to said indwelling catheter, said inlet port opening into said annular enclosure for said conduction of said fluid into said annular enclosure; and

wherein said indwelling catheter has a pore for conduction of said fluid into said nuclear enclosure; and

wherein said sealing valve core further comprises an outlet port substantially opposite said inlet port and lateral to said indwelling catheter, said outlet port having an opening into said annular enclosure for receiving a return of said fluid that is conducted into said annular enclosure.

2. The nuclear prosthesis as recited in claim 1 wherein said indwelling catheter further comprises a connection terminal for detachably receiving a central tube of an inflation stylus to conduct said fluid into said nuclear enclosure.

3. The nuclear prosthesis as recited in claim 2 further comprising:

a nuclear mounting region having a predefined nuclear slot along a side of said sealing valve core adjacent said inner margin of said annular enclosing layer, said nuclear slot receiving said indwelling catheter and a connector terminal of said nuclear enclosing layer;

wherein said connector terminal comprises a neck portion of said nuclear enclosing layer and a retaining collar encompassing said neck portion of said nuclear enclosing layer, said connector terminal receiving and bonding to said indwelling catheter snugly to create a fluid-tight bond.

4. The nuclear prosthesis as recited in claim 1 further comprising:

a nuclear mounting region having a predefined nuclear slot along a side of said sealing valve core adjacent said inner margin of said annular enclosing layer, said nuclear slot receiving said indwelling catheter and a connector terminal of said nuclear enclosing layer;

wherein said connector terminal comprises a neck portion of said nuclear enclosing layer and a retaining collar encompassing said neck portion of said nuclear enclosing layer, said connector terminal receiving and bonding to said indwelling catheter snugly to create a fluid-tight bond.

5. The nuclear prosthesis as recited in claim 1 wherein said inlet port, said outlet port and said indwelling catheter have corresponding pathways terminating with bores for receiving and creating detachable, but fluid tight connections with corresponding tubes of said inflation stylus.

6. The nuclear prosthesis as recited in claim 5 wherein said sealing valve core has: an outer diameter slightly smaller than the diameter of the annular enclosing layer;

an annular mounting region comprising an annular slot adjacent said outer margin of said annular enclosing layer for receiving a portion of said outer margin, said annular slot extending around a radial circumference of said sealing valve core; and

wherein said nuclear mounting region of said sealing valve core further comprising said annular slot for receiving said a portion of said inner margin of said annular enclosing layer.

7. The nuclear prosthesis as recited in claim 6 wherein said sealing valve core is bonded to said annular enclosing layer by a retaining ring surrounding said sealing valve core, said retaining ring receiving and crimping to said annular slot m said nuclear mounting region and said annular mounting region.

8. The nuclear prosthesis as recited in claim 1 wherein said fluid conducted into said nuclear enclosure is a liquid and said fluid conducted into said annular enclosure is a curable rubber.

9. The nuclear prosthesis as recited in claim 1 wherein said fluid conducted into said nuclear enclosure is a gas and said fluid conducted into said annular enclosure is a curable rubber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2013
From: HIBRI, NADI SALAH; LUTZ, JAMES DOUGLAS
To: SPINAL STABILIZATION TECHNOLOGIES, LLC
Reel/Frame 031800/0064 →
Continuity (2)
Provisional Application 61212104 · Apr 7, 2009
Related Publication 20100256766A1 · Oct 7, 2010