IP Library Granted Patent US 10,485,674
Granted Patent B2
US 10,485,674 · App. 15/264,677 · Granted Nov 26, 2019

Expandable interbody spacer

Inventors: Jonathan Perloff (Slatington, PA); William Rhoda (Media, PA); Mark Weiman (Coatesville, PA); Chad Glerum (Pennsburg, PA); Edward Dwyer (Pittsgrove, NJ); Victoria Alexander (Royersford, PA); Brian Garvey (Landenberg, PA); Daniel Waite (Pottstown, PA); Conor Fleming (Media, PA); Samuel Petersheim (Elverson, PA); Bria Howell (Philadelphia, PA); Marcin Niemiec (Norristown, PA); Vipin Kunjachan (Jeffersonville, PA); Jason Gray (East Greenville, PA); Christopher Saville (Morgantown, PA); James Himmelberger (Souderton, PA); Kevin Gahman (Douglassville, PA)
Assignee: Globus Medical, Inc.
A61F2/4425A61B17/7097A61F2/442A61F2/447A61F2/4455A61F2/4611A61F2/44A61F2002/2835A61F2002/305A61F2002/3037A61F2002/3055A61F2002/30108A61F2002/30143A61F2002/30156A61F2002/30159A61F2002/30166A61F2002/30176A61F2002/30189A61F2002/30266A61F2002/30364A61F2002/30365A61F2002/30405A61F2002/30443A61F2002/30462A61F2002/30471A61F2002/30472A61F2002/30484A61F2002/30492A61F2002/30509A61F2002/30515A61F2002/30518A61F2002/30525A61F2002/30542A61F2002/30545A61F2002/30579A61F2002/30581A61F2002/30588A61F2002/30629A61F2002/30637A61F2002/30772A61F2002/30836A61F2002/30892A61F2002/30904A61F2002/4415A61F2002/4475A61F2002/4627A61F2002/4677A61F2310/00017A61F2310/00023A61F2310/00179
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Quick Facts
Patent No.
US 10,485,674
App. No.
15/264,677
Granted
Nov 26, 2019
Kind
B2
Abstract

Devices and methods for treating one or more damaged, diseased, or traumatized portions of the spine, including intervertebral discs, to reduce or eliminate associated back pain. In one or more embodiments, the present invention relates to an expandable interbody spacer. The expandable interbody spacer may comprise a first jointed arm comprising a plurality of links pivotally coupled end to end. The expandable interbody spacer further may comprise a second jointed arm comprising a plurality of links pivotally coupled end to end. The first jointed arm and the second jointed arm may be interconnected at a proximal end of the expandable interbody spacer. The first jointed arm and the second jointed arm may be interconnected at a distal end of the expandable interbody spacer.

Claims (51)

1. An expandable spacer comprising:

an upper endplate and a lower endplate, wherein the upper and lower endplates comprise a first endplate portion and a second endplate portion that can be separated from one another in a lateral direction,

wherein the expandable spacer has a first unexpanded configuration and a second expanded configuration that is larger than the first unexpanded configuration, and

wherein the first endplate portion and the second endplate portion are hinged in the first unexpanded configuration and the second expanded configuration,

wherein the expandable spacer comprises an actuation member and a translation member having laterally outwardly facing ramps for separating the first endplate portion from the second endplate portion,

wherein the translation member separates the first endplate portion from the second endplate portion laterally,

wherein the expandable spacer includes two side slots extending along a majority of a length of the first and second endplate portions,

wherein the two side slots are configured to receive an instrument for positioning the expandable spacer, and

wherein an inner surface of the first endplate portion and an inner surface of the second endplate portion are each curved from the upper endplate to the lower endplate in a manner to receive the actuation member,

wherein in the first unexpanded configuration, the inner surface of the first endplate portion and the inner surface of the second endplate portion form a circular opening to receive the actuation member,

wherein in the first unexpanded configuration, the first endplate portion and the second endplate portion align with one another such that no opening extends through a midline of the expandable spacer and the first endplate portion and second endplate portion are in contact with the actuation member, and in the second expanded configuration, the first endplate portion and the second endplate portion are angled away from the actuation member.

2. The spacer of claim 1 , wherein the expandable spacer further comprises surface texturing on at least one of the upper endplate and the lower endplate.

3. The spacer of claim 2 , wherein the surface texturing comprises at least one of teeth, ridges or ribbing.

4. The spacer of claim 1 , wherein the first endplate portion and the second endplate portion are separated from one another along a midline that extends through the spacer.

5. The spacer of claim 1 , wherein the translation member comprises a first pair of ramps separated from a second pair of ramps by a bridge member.

6. The spacer of claim 1 , wherein the actuation member is operably attached to the translation member for actuating the translation member.

7. The spacer of claim 6 , wherein the actuation member comprises a hex screw opening.

8. An expandable spacer comprising:

an upper endplate and a lower endplate, a translation member and an actuation member, wherein the translation member includes a pair of ramps that engage with inner sidewalls of the expandable spacer to cause expansion of first and second endplate portions of the spacer,

wherein the expandable spacer has a first unexpanded configuration and a second expanded configuration that is larger than the first unexpanded configuration, and

wherein the upper endplate and the lower endplate are hinged in the first unexpanded configuration and the second expanded configuration,

wherein the translation member includes laterally outwardly facing ramps for separating the first endplate portion from the second endplate portion,

wherein the translation member separates the first endplate portion from the second endplate portion laterally,

wherein the expandable spacer includes two side slots extending along a majority of a length of the first and second endplate portions,

wherein the two side slots are configured to receive an instrument for positioning the expandable spacer, and

wherein an inner surface of the first endplate portion and an inner surface of the second endplate portion are each curved from the upper endplate to the lower endplate in a manner to receive the actuation member,

wherein in the first unexpanded configuration, the inner surface of the first endplate portion and the inner surface of the second endplate portion form a circular opening to receive the actuation member,

wherein in the first unexpanded configuration, the first endplate portion and the second endplate portion align with one another such that no opening extends through a midline of the expandable spacer and the first endplate portion and second endplate portion are in contact with the actuation member, and in the second expanded configuration, the first endplate portion and the second endplate portion are angled away from the actuation member.

9. The spacer of claim 8 , wherein the translation member further comprises a bridge member connecting the pair of ramps to a second pair of ramps.

10. The spacer of claim 8 , wherein at least one of the upper endplate and the lower endplate includes surface protrusions.

11. The spacer of claim 10 , wherein the surface protrusions comprise at least one of teeth, ridges, or ribbing.

12. The spacer of claim 8 , wherein the first endplate portion and second endplate portion are separable from one another in a v-shape configuration in the second expanded configuration.

13. The spacer of claim 8 , in the second expanded configuration, the first endplate portion and the second endplate portion spread away from one another such that an opening extends through the midline of the expandable spacer and the first endplate portion and second endplate portion are no longer in contact with the actuation member.

14. An expandable spacer comprising:

an upper endplate and a lower endplate, wherein the upper and lower endplates comprises a first endplate portion and a second endplate portion that can be separated from one another via a hinge member,

wherein the expandable spacer has a first unexpanded configuration and a second expanded configuration that is larger than the first unexpanded configuration, and

wherein the upper endplate and the lower endplate are hinged in the first unexpanded configuration and the second expanded configuration,

wherein the expandable spacer comprises a translation member having laterally outwardly facing ramps for separating the first endplate portion from the second endplate portion, and an actuation member rotatably coupled to the translation member,

wherein the translation member separates the first endplate portion from the second endplate portion laterally,

wherein the expandable spacer includes two side slots extending along a majority of a length of the first and second endplate portions,

wherein the two side slots are configured to receive an instrument for positioning the expandable spacer, and

wherein an inner surface of the first endplate portion and an inner surface of the second endplate portion are each curved from the upper endplate to the lower endplate in a manner to receive the actuation member,

wherein in the first unexpanded configuration, the inner surface of the first endplate portion and the inner surface of the second endplate portion form a circular opening to receive the actuation member,

wherein in the first unexpanded configuration, the first endplate portion and the second endplate portion align with one another such that no opening extends through a midline of the expandable spacer and the first endplate portion and second endplate portion are in contact with the actuation member, and in the second expanded configuration, the first endplate portion and the second endplate portion are angled away from the actuation member.

15. The spacer of claim 14 , wherein, in the expanded configuration, the first endplate portion is separated from the second endplate portion via a v-shape configuration.

16. The spacer of claim 14 , wherein the upper endplate includes ridges.

17. The spacer of claim 16 , wherein the lower endplate includes ridges.

18. The spacer of claim 14 , wherein the expandable spacer expands via the actuation member and a translation member.

19. The spacer of claim 1 , wherein in the second expanded configuration, the first endplate portion and the second endplate portion spread away from one another such that an opening extends through the midline of the expandable spacer and the first endplate portion and the second endplate portion are no longer in contact with the actuation member.

20. The spacer of claim 1 , wherein the actuation member is rotatable, rotation of the actuation member in a first direction causes lateral translation of the translation member, thereby causing lateral expansion of the first endplate portion and the second endplate portion.

21. The spacer of claim 1 , wherein the inner surface of the first endplate portion extends between the upper endplate and the lower endplate, and the inner surface of the second endplate portion extends between the upper endplate and the lower endplate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2016
From: PERLOFF, JONATHAN; RHODA, WILLIAM; WEIMAN, MARK; GLERUM, CHAD; DWYER, EDWARD; ALEXANDER, VICTORIA; GARVEY, BRIAN; WAITE, DANIEL; FLEMING, CONOR; PETERSHEIM, SAMUEL; HOWELL, BRIA; NIEMIEC, MARCIN; KUNJACHAN, VIPIN; GRAY, JASON; SAVILLE, CHRISTOPHER; HIMMELBERGER, JAMES; GAHMAN, KEVIN
To: GLOBUS MEDICAL, INC.
Reel/Frame 040026/0493 →
Continuity (3)
Continuation 13941095 · Jul 12, 2013
Continuation In Part 13483852 · May 30, 2012
Related Publication 20170007422A1 · Jan 12, 2017
Cited By (4)
US 12,318,307 US 12,453,640 US 12,458,509 US 12,533,242