IP Library Granted Patent US 8,444,695
Granted Patent B2
US 8,444,695 · App. 12/464,670 · Granted May 21, 2013

Prosthetic disc for intervertebral insertion

Inventors: Malan de Villiers (Wapadrand, ZA); Ulrich Hähnle (Johannesburg, ZA)
Assignee: SpinalMotion, Inc.
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Quick Facts
Patent No.
US 8,444,695
App. No.
12/464,670
Granted
May 21, 2013
Kind
B2
Abstract

A prosthetic disc for insertion between adjacent vertebrae includes a core having upper and lower curved surfaces, upper and lower plates, and peripheral restraining structure on at least one of the upper plate, the lower plate and the core. Each plate has an outer surface which engages a vertebra and an inner curved surface which slides over the curved surface of the core. The peripheral restraining structure serves to hold the core against a curved surface of at least one of the plates during sliding movement of the plates over the core.

Claims (29)

1. A prosthetic disc for insertion between adjacent vertebrae, the prosthetic disc comprising:

an upper plate having an upper surface which engages a vertebra and an opposite bearing surface;

a lower plate having a lower surface which engages a vertebra and an opposite bearing surface;

a rigid mobile core having upper and lower bearing surfaces configured to cooperate with the bearing surfaces of the upper and lower plates to allow the upper and lower plates to slide and translate over the core;

a peripheral restraining structure located at an outer edge of the bearing surface of only one of the upper and lower plates and integrally formed with the plate, the peripheral restraining structure comprising an inwardly directed annular flange which forms an overhang, wherein the peripheral restraining structure formed integrally with the plate limits motion in each of the anterior, posterior and lateral directions; and

wherein the core extends into the overhang during sliding motion of the plates over the core.

2. A prosthetic disc as in claim 1 , wherein the annular flange extends continuously around a lateral circumference of the core.

3. A prosthetic disc as in claim 1 , wherein at least one of the bearing surfaces is spherical.

4. A prosthetic disc as in claim 3 , wherein both bearing surfaces are spherical.

5. A prosthetic disc as in claim 1 , wherein the peripheral restraining structure defines a stop structure to limit relative inclination of the plates during sliding movement of the plates over the core.

6. A prosthetic disc as in claim 1 , wherein the peripheral restraining structure comprises a U-shaped annular flange and a groove around a lateral edge of the core.

7. A prosthetic disc as in claim 1 , wherein the core includes a rib which extends into the overhang.

8. A prosthetic disc for insertion between adjacent vertebrae, the prosthetic disc comprising:

a first plate having a first surface which engages a vertebra and an opposite bearing surface;

a second plate having a first surface which engages a vertebra and an opposite bearing surface;

a rigid mobile core having first and second bearing surfaces configured to cooperate with the bearing surfaces of the first and second plates to allow the first and second plates to slide and translate over the core;

a peripheral restraining structure located at an outer edge of the bearing surface of the first plate and integrally formed with the first plate, the peripheral restraining structure comprising an inwardly directed flange which forms an overhang, wherein the peripheral restraining structure formed integrally with the first plate limits motion in each of the anterior, posterior and lateral directions and, wherein the second plate has no peripheral restraining structure; and

wherein the core extends into the overhang during sliding motion of the plates over the core.

9. A prosthetic disc as in claim 8 , wherein the flange extends continuously around a lateral circumference of the core.

10. A prosthetic disc as in claim 8 , wherein at least one of the bearing surfaces is spherical.

11. A prosthetic disc as in claim 10 , wherein both bearing surfaces are spherical.

12. A prosthetic disc as in claim 8 , wherein the peripheral restraining structure defines a stop structure to limit relative inclination of the plates during sliding movement of the plates over the core.

13. A prosthetic disc as in claim 8 , wherein the peripheral restraining structure comprises a U-shaped peripheral flange.

14. A method of retaining a core in a prosthetic disc, the method comprising:

providing a first plate having a first surface which engages a vertebra, an opposite bearing surface and a peripheral restraining structure located at an outer edge of the bearing surface of the first plate and integrally formed with the first plate, the peripheral restraining structure comprising an inwardly directed flange which forms an overhang;

providing a second plate having a first surface which engages a vertebra, an opposite bearing surface, wherein the second plate has no peripheral restraining structure; and

retaining a rigid mobile core between the first and second plates with the peripheral restraining structure, wherein the peripheral restraining structure formed integrally with the first plate limits motion in each of the anterior, posterior and lateral directions.

15. A method as in claim 14 , wherein the core extends into the overhang during sliding motion of the plates over the core.

16. A method as in claim 14 , wherein the core includes a rib which extends into the overhang.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 31, 2020
From: DE VILLIERS, MALAN; HAHNLE, ULRICH, MD
To: SPINALMOTION, INC.
Reel/Frame 054787/0818 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2016
From: SIMPLIFY MEDICAL, INC.
To: SIMPLIFY MEDICAL PTY LTD
Reel/Frame 039643/0049 →
CHANGE OF NAME Recorded Jul 16, 2014
From: SPINALMOTION, INC.
To: SIMPLIFY MEDICAL, INC.
Reel/Frame 033347/0141 →
Continuity (4)
Continuation 10855253 · May 26, 2004
Provisional Application 60473803 · May 27, 2003
Provisional Application 60473802 · May 27, 2003
Related Publication 20090222101A1 · Sep 3, 2009