IP Library Granted Patent US 10,952,868
Granted Patent B2
US 10,952,868 · App. 16/102,664 · Granted Mar 23, 2021

Intervertebral device and methods of use

Inventors: Morgan Packard Lorio (Bristol, TN); Thomas Purcell (Del Mar, CA)
Assignee: EIT Emerging Implant Technologies GmbH
A61F2/4455A61F2/442A61F2/447A61F2002/2817A61F2002/2835A61F2002/30471A61F2002/30579A61F2002/30593A61F2002/30673A61F2002/30841A61F2002/30904A61F2002/448A61F2002/4415A61F2210/0071A61F2220/0016A61F2310/00017A61F2310/00023A61F2310/00161
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Quick Facts
Patent No.
US 10,952,868
App. No.
16/102,664
Granted
Mar 23, 2021
Kind
B2
Abstract

An intervertebral device comprises a plurality of struts that are rotatably associated with each adjacent strut to form a modifiable inner volume V for bone graft containment.

Claims (30)

1. An intervertebral device comprising:

a plurality of struts, wherein each strut is rotatably associated with adjacent struts to form a modifiable inner volume, the inner volume is substantially zero when the plurality of adjacent struts rotates towards other struts,

wherein each strut comprises a longitudinal body member extending from a first end and a second end of the strut, the first end includes a mating hole and the second end includes a slotted circular protrusion having radial flexibility provided by the slots and a distal end that is larger than a base end thereof; and

wherein the mating hole includes a corresponding inner shoulder such that upon insertion the protrusion is compressed radially until the enlarged distal end passes over and is accommodated by the inner shoulder, thus permanently trapping the protrusion within the mating hole to rotatably associate adjacent struts about the first end and second end.

2. The intervertebral device of claim 1 , wherein the intervertebral device further comprises a proximal portion and a distal portion, and a longitudinal axis and a transverse axis; and the plurality of struts rotate to expand or contract the modifiable inner volume generally along at least the longitudinal axis or the transverse axis.

3. The intervertebral device of claim 2 , wherein the distal and proximal portions are tapered when the inner volume is substantially zero for delivery of the intervertebral device.

4. The intervertebral device of claim 1 , further comprising an anterior surface and a posterior surfaces that are transverse to an axis of rotation along which each strut is rotatably associated with adjacent struts.

5. The intervertebral device of claim 4 , wherein at least one of the anterior surface and the posterior surface includes a teethed surface.

6. The intervertebral device of claim 1 , wherein each strut includes a width, which extends from an anterior surface to a posterior surface of the strut, and the width may be selected upon the particular vertebra that needs to resist subsidence or shortening of the intervertebral disc space.

7. The intervertebral device of claim 1 , further comprising a locking mechanism configured to lock the protrusion with the mating hole.

8. The intervertebral device of claim 1 , further comprising a locking mechanism configured to lock the intervertebral device in the expanded state.

9. The intervertebral device of claim 8 , wherein the locking mechanism is attached between non-adjacent struts at a position between the first and second ends of the non-adjacent struts.

10. The intervertebral device of claim 1 , wherein the intervertebral device further comprises a thickness profile configured to approximate the intervertebral space between vertebrae.

11. The intervertebral device of claim 10 , wherein the struts have a thickness, and the thickness profile is approximately the sum of the thickness of two adjacent struts.

12. An intervertebral device comprising:

a plurality of rotatably coupled struts having interior faces surrounding an inner volume, each strut comprising a longitudinal body member extending from a first end and a second end;

proximal and distal ends oppositely disposed along a longitudinal axis of the body, wherein the distal and proximal ends are tapered when the inner volume is substantially zero;

wherein the inner volume is in a closed state when the plurality of adjacent struts rotates towards other struts, and the inner volume is in an expanded state when the plurality of adjacent struts rotates away from other struts;

wherein the first end includes a mating hole and the second end includes a slotted circular protrusion having radial flexibility provided by the slots and a distal end that is larger than a base end thereof, wherein the mating hole includes a corresponding inner shoulder such that upon insertion the protrusion is compressed radially until the enlarged distal end passes over and is accommodated by the inner shoulder, thus permanently trapping the protrusion within the mating hole to rotatably associate adjacent struts about the first end and second end, and

a locking mechanism configured to lock the protrusion with the mating hole.

13. The intervertebral device of claim 12 , wherein each strut includes a width, which extends from an anterior surface to a posterior surface of the strut, and the width may be constant or vary depending upon the particular vertebra that needs to resist subsidence or shortening of the intervertebral disc space.

14. The intervertebral device of claim 12 , wherein the longitudinal body members of the struts generally run along the longitudinal axis or length of the strut.

15. The intervertebral device of claim 12 , wherein the longitudinal body members of the struts are linear.

16. An intervertebral device comprising:

a plurality of rotatably coupled struts surrounding a modifiable inner volume, each strut having a mating hole on a first end and a protrusion on a second end, wherein the plurality of rotatably coupled struts includes a plurality of pairs of adjacent struts, and the protrusion includes an enlarged distal end that is inserted and trapped within the mating hole to rotatably associate the struts of the adjacent struts about the first end and second end;

wherein the inner volume is zero when the plurality of adjacent struts rotates towards other struts of the plurality of rotatably coupled struts.

17. The intervertebral device of claim 16 , wherein the protrusion comprises a slotted circular member having radial flexibility provided by the slots and the enlarged distal end that is larger than a base end thereof, and the mating hole includes a corresponding inner shoulder such that upon insertion the protrusion is compressed radially until the enlarged distal end passes over and is accommodated by the inner shoulder, thus permanently trapping the protrusion within the mating hole.

18. The intervertebral device of claim 16 , further comprising a locking mechanism configured to lock the protrusion with the mating hole.

19. The intervertebral device of claim 16 , wherein proximal and distal ends oppositely disposed along a longitudinal axis of the body, wherein the distal and proximal ends are tapered when the inner volume is substantially zero.

20. The intervertebral device of claim 16 , wherein the intervertebral device further comprises an anterior surface and a posterior surface, wherein at least one of the anterior surface or the posterior surface include a teethed surface configured to grip an adjacent vertebra.