IP Library Granted Patent US 10,052,212
Granted Patent B2
US 10,052,212 · App. 13/767,202 · Granted Aug 21, 2018

Intervertebral implant with improved fastening system for the fixing plate

Inventors: Meinrad Fiechter (Lugano, CH); Francesco Siccardi (Vico Morcote, CH); Marco Riva (Longone al Segrino, IT)
Assignee: MEDACTA INTERNATIONAL SA
A61F2/4455A61F2/4465A61B17/7059A61F2/30965A61F2/442A61F2002/2835A61F2002/304A61F2002/3008A61F2002/30364A61F2002/30365A61F2002/30367A61F2002/30383A61F2002/30387A61F2002/30388A61F2002/30393A61F2002/30395A61F2002/30401A61F2002/30426A61F2002/30492A61F2002/30507A61F2002/30509A61F2002/30517A61F2002/30578A61F2002/30604A61F2002/30607A61F2002/30616A61F2002/30774A61F2002/30777A61F2002/30787A61F2002/30789A61F2002/30792A61F2002/30794A61F2002/30841A61F2002/30843A61F2002/4475A61F2310/00023A61F2310/00796
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Quick Facts
Patent No.
US 10,052,212
App. No.
13/767,202
Granted
Aug 21, 2018
Kind
B2
Abstract

An Intervertebral implant ( 100 ) for the fusion between two vertebral bodies of a vertebral column comprising: an internally hollow fusion cage ( 1 ); a fixing plate ( 2 ); and cooperating features ( 8, 10, 17, 19, 20, 21 ) for fastening said fixing plate ( 2 ) on the anterior side of the fusion cage ( 1 ); the cooperating features ( 8, 10, 17, 19, 20, 21 ) comprising restraining means ( 8, 17 ) meant to restrain the fixing plate ( 2 ) in a posterior-anterior direction with respect to the fusion cage ( 1 ) and pivoting means ( 10, 19 ) being arranged to guide a rotation, about a pivot axis (x), of said fixing plate ( 2 ) with respect to said fusion cage ( 1 ).

Claims (36)

1. An intervertebral implant for fusion between adjacent vertebral bodies of a vertebral column, the intervertebral implant comprising:

a fusion cage interposable between the adjacent vertebral bodies, the fusion cage comprising first and second opposing sidewalls, a first anterior side between the first and second opposing sidewalls, and a first posterior side opposite the first anterior side between the first and second opposing sidewalls and defining a passageway between the first posterior and first anterior sides,

the first anterior side comprising a peripheral portion defining an asymmetric wedge-shaped abutment, and a medial portion being recessed with respect to the peripheral portion and defining an alignment passageway for a pivot axis; and

a fixing plate comprising

a second anterior side,

a second posterior side being wedge-shaped and opposing the second anterior side, the second posterior side configured to engage with the medial portion, and

a centering pin extending from the second posterior side and configured to be inserted into the alignment passageway to align the fusion cage and the fixing plate along the pivot axis and to allow the fixing plate to rotate about the pivot axis with respect to the fusion cage, the second posterior side configured to engage with the asymmetric wedge-shaped abutment to limit rotation of the fixing plate in a single direction.

2. The intervertebral implant according to claim 1 , wherein said second anterior side is integral with said second posterior side.

3. The intervertebral implant according to claim 1 , wherein the centering pin extends from a bottom of the second posterior side; and wherein the alignment passageway is at a bottom of the first anterior side.

4. The intervertebral implant according to claim 1 , wherein the medial portion defines a slideway in which the second posterior side slidably engages during rotation of the fixing plate.

5. The intervertebral implant according to claim 1 , wherein the medial portion and the second posterior side are dovetailed in cross-section.

6. The intervertebral implant according to claim 1 , wherein a profile of the medial portion and a profile of the second posterior side comprise interlocking features configured to provide a snap fit of the fixing plate upon reaching a locked configuration.

7. The intervertebral implant according to claim 6 , wherein the interlocking features comprise a locking recess on the profile of the medial portion and a locking protrusion on the profile of the second posterior side.

8. The intervertebral implant according to claim 1 , wherein the fusion cage comprises a first biocompatible material.

9. The intervertebral implant according to claim 8 , wherein the fixing plate comprises a second biocompatible material different from the first biocompatible material.

10. The intervertebral implant according to claim 1 , further comprising a biocompatible metal layer at least partially coating at least one of said fusion cage and said fixing plate.

11. The intervertebral implant according to claim 10 , wherein the biocompatible metal layer comprises at least one of titanium and hydroxyapatite.

12. The intervertebral implant according to claim 1 , wherein the fixing plate is selected from among a plurality of fixing plates having different geometries.

13. The intervertebral implant according to claim 1 , wherein the fixing plate defines at least one passageway configured to receive at least one bone screw.

14. The intervertebral implant according to claim 13 , wherein said at least one passageway is configured to host a plurality of different screw types.

15. The intervertebral implant according to claim 14 , wherein the plurality of different screw types comprises locking screws, poly-axial screws, compression screws, and combinations thereof.

16. The intervertebral implant according to claim 1 , wherein in a locked configuration, the fixing plate is locked to the first anterior side of the fusion cage after a rotation of the fixing plate.

17. An intervertebral implant for fusion between adjacent vertebral bodies of a vertebral column, the intervertebral implant comprising:

a fusion cage interposable between the adjacent vertebral bodies, the fusion cage comprising first and second opposing sidewalls, a first anterior side between the first and second opposing sidewalls, and a first posterior side opposite the first anterior side between the first and second opposing sidewalls and defining a passageway between the first posterior and first anterior sides,

the first anterior side comprising a peripheral portion defining an asymmetric wedge-shaped abutment, and a medial portion being recessed with respect to the peripheral portion and defining an alignment passageway for a pivot axis;

a fixing plate comprising

a second anterior side,

a second posterior side being integral with said second anterior side and being wedge-shaped and opposing the second anterior side, the second posterior side configured to engage with the medial portion, and

a centering pin extending from the second posterior side and configured to be inserted into the alignment passageway to align the fusion cage and the fixing plate along the pivot axis and to allow the fixing plate to rotate about the pivot axis with respect to the fusion cage, the second posterior side configured to engage with the asymmetric wedge-shaped abutment to limit rotation of the fixing plate in a single direction; and

a biocompatible metal layer at least partially coating at least one of said fusion cage and said fixing plate.

18. The intervertebral implant according to claim 17 , wherein the medial portion defines a slideway in which the second posterior side slidably engages during rotation of the fixing plate.

19. The intervertebral implant according to claim 17 , wherein a profile of the medial portion and a profile of the second posterior side comprise interlocking features configured to provide a snap fit of the fixing plate upon reaching a locked configuration.

20. The intervertebral implant according to claim 17 , wherein the fusion cage comprises a first biocompatible material.

21. The intervertebral implant according to claim 20 , wherein the fixing plate comprises a second biocompatible material different from the first biocompatible material.

22. The intervertebral implant according to claim 17 , wherein the fixing plate defines at least one passageway configured to receive at least one bone screw.

23. The intervertebral implant according to claim 17 , wherein the biocompatible metal layer comprises at least one of titanium and hydroxyapatite.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 3, 2013
From: FIECHTER, MEINRAD; SICCARDI, FRANCESCO; RIVA, MARCO
To: MEDACTA INTERNATIONAL SA
Reel/Frame 030139/0249 →
Priority Claims (1)
EP 12155953 · Feb 17, 2012 · regional
Continuity (1)
Related Publication 20130218276A1 · Aug 22, 2013
Cited By (3)
US 12,419,758 US 12,514,710 US 12,589,008