IP Library Granted Patent US 11,207,187
Granted Patent B2
US 11,207,187 · App. 16/548,239 · Granted Dec 28, 2021

In-situ formed intervertebral fusion device and method

Inventors: Hassan Serhan (South Easton, MA); Thomas M. DiMauro (Southboro, MA); John Daniel Malone (Cumberland, RI)
Assignee: DePuy Synthes Products, Inc.
A61F2/441A61B17/00234A61F2/28A61F2/442A61F2/446A61F2/4425A61F2/4455A61F2/4465A61F2/4601A61F2/4611A61K9/0024A61K49/006A61L27/06A61L27/12A61L27/18A61L27/3821A61L27/3839A61L27/3847A61L27/50A61L27/52A61L27/54A61L27/56A61F2/30965A61F2002/2817A61F2002/2835A61F2002/302A61F2002/3023A61F2002/3055A61F2002/30062A61F2002/30065A61F2002/30092A61F2002/30131A61F2002/30224A61F2002/30308A61F2002/30383A61F2002/30451A61F2002/30556A61F2002/30579A61F2002/30583A61F2002/30586A61F2002/30593A61F2002/30604A61F2002/30622A61F2002/30841A61F2002/30953A61F2002/30971A61F2002/448A61F2002/4627A61F2002/4635A61F2002/4677A61F2210/0004A61F2210/0014A61F2210/0061A61F2210/0071A61F2210/0085A61F2220/0016A61F2220/0025A61F2220/0058A61F2230/0013A61F2230/0063A61F2230/0065A61F2230/0069A61F2250/001A61F2250/0003A61F2250/003A61F2250/0009A61F2250/0065A61F2310/00011A61F2310/00179A61F2310/00365A61L2300/252A61L2300/256A61L2300/404A61L2300/414A61L2300/43A61L2300/64A61L2430/02A61L2430/38
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Quick Facts
Patent No.
US 11,207,187
App. No.
16/548,239
Granted
Dec 28, 2021
Kind
B2
Abstract

An orthopedic device for implanting between adjacent vertebrae comprising: an arcuate balloon and a hardenable material within said balloon. In some embodiments, the balloon has a footprint that substantially corresponds to a perimeter of a vertebral endplate. An inflatable device is inserted through a cannula into an intervertebral space and oriented so that, upon expansion, a natural angle between vertebrae will be at least partially restored. At least one component selected from the group consisting of a load-bearing component and an osteobiologic component is directed into the inflatable device through a fluid communication means.

Claims (35)

1. An expandable spinal fusion implant, comprising:

a) an upper endplate having an upper surface and a lower surface, the upper surface configured to engage bone;

b) a lower endplate having a lower surface and an upper surface, the lower surface configured to engage bone;

c) a core having a first mating surface that mates with the upper endplate via a slidable guide-track and a second mating surface that mates with the lower endplate via a slidable guide-track; and

d) an elongate metallic element extending longitudinally through the core;

wherein the core includes an upper ramp component having a first ramped surface and a lower ramp component having a second ramped surface opposing the first ramped surface, and

wherein longitudinal translation of the ramped surfaces increases a height between the upper surface of the upper endplate and the lower surface of the lower endplate, and

wherein the first and second ramped surfaces bear against each other.

2. The implant of claim 1 , wherein the upper and lower endplates and the core are each arcuate in a plane parallel to their length.

3. The implant of claim 1 , wherein a cross-section taken through the endplates and the core defines an I shape.

4. The implant of claim 1 , wherein the elongate metallic element does not contact either of the upper and lower endplates.

5. An expandable spinal fusion implant, comprising:

an upper endplate having an upper surface configured to engage bone;

a lower endplate having a lower surface configured to engage bone; and

a core positionable between the upper and lower endplates, the core including:

an upper ramp component having a first surface that includes a guide configured to slide within a track formed in the upper endplate and a second surface that extends at an oblique angle with respect to the upper endplate; and

a lower ramp component having a third surface that includes a guide configured to slide within a track formed in the lower endplate and a fourth surface that extends at an oblique angle with respect to the lower endplate;

wherein a height between the upper surface of the upper endplate and the lower surface of the lower endplate is expandable by ramping action of the second and fourth surfaces, and

wherein the second and fourth surfaces bear against each other.

6. The implant of claim 5 , wherein the upper and lower endplates and the core are each arcuate along their length.

7. The implant of claim 5 , wherein a cross-section taken through the endplates and the core defines an I shape.

8. The implant of claim 5 , wherein the implant has a middle portion and opposed end portions, and wherein the middle portion has a greater height than the opposed end portions.

9. An expandable spinal fusion implant, comprising:

an upper endplate having an upper surface configured to engage bone;

a lower endplate having a lower surface configured to engage bone; and

a core positionable between the upper and lower endplates, the core including:

a first surface that includes a guide configured to slide within a track formed in the upper endplate;

a second surface that extends at an oblique angle with respect to the upper endplate;

a third surface that includes a guide configured to slide within a track formed in the lower endplate; and

a fourth surface that extends at an oblique angle with respect to the lower endplate;

wherein a height between the upper surface of the upper endplate and the lower surface of the lower endplate is expandable by ramping action of the second and fourth surfaces, and

wherein the second and fourth surfaces bear against each other.

10. The implant of claim 9 , wherein the upper and lower endplates and the core are each arcuate along their length.

11. The implant of claim 9 , wherein a cross-section taken through the endplates and the core defines an I shape.

12. The implant of claim 9 , wherein the implant has a middle portion and opposed end portions, and wherein the middle portion has a greater height than the opposed end portions.