IP Library › Granted Patent US 8,858,599
Granted Patent B2
US 8,858,599 · App. 10/864,181 · Granted Oct 14, 2014

Systems and methods for flexible spinal stabilization

Inventors: Hai H. Trieu (Cordova, TN); Michael C. Sherman (Memphis, TN); Jeff R. Justis (Collierville, TN)
Assignee: Warsaw Orthopedic, Inc.
A61B17/7031A61B17/7019A61B17/7004
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Quick Facts
Patent No.
US 8,858,599
App. No.
10/864,181
Granted
Oct 14, 2014
Kind
B2
Abstract

Devices, methods and systems for stabilizing at least a portion of the spinal column are provided. Anchors are engageable to vertebra and a stabilization member is engageable between the anchors. The stabilization member includes an elongate tension member and a compression member in a passage of the tension member.

Claims (19)

1. A spinal stabilization system for providing stabilization between a first vertebra and a second vertebra comprising:

a first anchor configured to engage with the first vertebra, wherein the first anchor includes a first receiver member of which includes a first receiver passage through the first receiver member;

a second anchor configured to engage with the second vertebra, wherein the second anchor includes a second receiver member of which includes a second receiver passage through the second receiver member;

a tension member including a body and a passage through the body that extends between a first end of the tension member and a second end of the tension member that is opposite from first end of the tension member, wherein the tension member is coupled within the first receiver member near the first end and is coupled within the second receiver member near the second end,

a compression member including first and second ends positioned within the passage through the body of the tension member, and the compression member is not received within the first receiver passage of the first receiver member or configured to extend the distance between the first and second anchor such that the second receiver member when the tension member is coupled to the first receiver member and the second receiver member wherein the first and second ends of the tension member are crimped to collapse the passage when coupled within the first and second receiver passages respectively, and wherein the tension member with the compression member positioned therein are configured to resist movement of the first vertebra and the second vertebra away from and toward one another respectively by abutting both the first anchor and the second anchor resulting from the compression member extending the distance between the anchors from within a portion of the tension member.

2. The spinal stabilization system of claim 1 wherein the tension member is a tubular shape made by one or more of braiding, weaving, knitting, sewing, extrusion, injection molding, compression molding, casting, bonding, and laminating.

3. The spinal stabilization system of claim 1 wherein the tension member comprises one or more of polymers such as elastomers, plastics, and rubber, synthetic fibers such as polyethylene, polyesters, polyvinyl alcohol, polyaryletherketone, polyetheretherketone, polyurethane, and copolymer of silicone and polyurethane, metals, and ceramics.

4. The spinal stabilization system of claim 1 wherein the compression member has a length that extends between its first end and its second end and has a substantially uniform width along its length.

5. The spinal stabilization system of claim 1 wherein the compression member is positioned within the passage through the body of the tension member such that the compression member is not attached to the tension member by tensile forces between the compression member and the tension member.

6. The spinal stabilization system of claim 1 wherein the compression member is an elastomer that comprises one or more of silicone, polyurethane, polyolefin, and hydrogel.

7. A spinal stabilization system for providing stabilization between a first vertebra and a second vertebra comprising:

a first anchor configured to engage with the first vertebra, wherein the first anchor includes a first receiver member, and the first receiver member includes a first receiver passage through the first receiver member;

a second anchor configured to engage with the second vertebra, wherein the second anchor includes a second receiver member, and the second receiver member includes a second receiver passage through the second receiver member;

a tension member including a body and a passage through the body that extends between a first end of the tension member and a second end of the tension member that is opposite from first end of the tension member, wherein the tension member is coupled within the first receiver passage near the first end of the tension member such that the tension member is crimped to collapse the passage through the body of the tension member, and wherein the tension member is coupled within the second receiver passage near the second end of the tension member such that the tension member is crimped to collapse the passage through the body of the tension member; and

a compression member having a length that extends between its first end and its second end and has a substantially uniform width along its length is positioned within the passage through the body of the tension member such that the length the compression member between the first end and the second end extends between the anchors, and the compression member is not received within the first receiver passage or the second receiver passage, and wherein the tnesion member with the compression member positioned therein are configured to resist movement of the first vertebra and the second vertebra away from and toward one another respectively by abutting both the first anchor and the second anchor from within a portion of the tension member.

8. The spinal stabilization system of claim 7 wherein the tension member is a tubular shape made by one or more of braiding, weaving, knitting, sewing, extrusion, injection molding, compression molding, casting, bonding, and laminating.

9. The spinal stabilization system of claim 7 wherein the tension member comprises one or more of polymers such as elastomers, plastics, and rubber, synthetic fibers such as polyethylene, polyesters, polyvinyl alcohol, polyaryletherketone, polyetheretherketone, polyurethane, and copolymer of silicone and polyurethane, metals, and ceramics.

10. The spinal stabilization system of claim 7 wherein the compression member is positioned within the passage through the body of the tension member such that the compression member is not attached to the tension member by tensile forces between the compression member and the tension member.

11. The spinal stabilization system of claim 7 wherein the compression member is an elastomer that comprises one or more of silicone, polyurethane, polyolefin, and hydrogel.

Assignments (2)
MERGER Recorded Mar 5, 2009
From: SDGI HOLDINGS, INC.
To: WARSAW ORTHOPEDIC, INC.
Reel/Frame 022348/0254 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2004
From: TRIEU, HAI H.; SHERMAN, MICHAEL C.; JUSTIS, JEFF R.
To: SDGI HOLDINGS, INC.
Reel/Frame 015455/0536 →
Continuity (1)
Related Publication 20050277922A1 · Dec 15, 2005