Standalone Interbody Implants
US-2015328009-A1 · Nov 19, 2015 · US
US10537438B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10537438-B2 |
| Application number | US-201815967626-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 1, 2018 |
| Priority date | May 15, 2014 |
| Publication date | Jan 21, 2020 |
| Grant date | Jan 21, 2020 |
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Stand-alone interbody fusion devices for engagement between adjacent vertebrae. The stand-alone interbody fusion devices may include frames and one or more endplates coupled to the frame. The frame may be configured and designed to provide the apertures which are designed to retain bone fasteners, such as screws or anchors, and secure the implant to the adjacent vertebrae.
Opening claim text (preview).
What is claimed is: 1. An intervertebral implant for implantation in an intervertebral space between adjacent vertebrae, the implant comprising: a frame comprising a body, a first extension extending from the body, and a second extension extending from the body, wherein the frame further comprises a first hole for receiving a first screw and a second hole for receiving a second screw; a first screw extending through the first hole; a second screw extending through the second hole; and a spacer connected to the frame, wherein the spacer comprises a first spacer portion, a second spacer portion, and a connector between the first spacer portion and the second spacer portion, wherein the connector separates the first spacer portion and the second spacer portion such that they do not directly contact one another, and wherein the connector comprises a first tenon and a second tenon. 2. The implant of claim 1 , wherein the frame further comprises an upper surface and a lower surface, wherein a first torsional stabilizer extends from the upper surface and a second torsional stabilizer extends from the lower surface. 3. The implant of claim 1 , wherein the frame further comprises a first eyebrow that extends around a portion of the first hole and a second eyebrow that extends around a portion of the second hole. 4. The implant of claim 1 , wherein the first screw is angled in an upward direction and the second screw is angled in a downward direction. 5. The implant of claim 1 , wherein the connector comprises a cross-shaped member. 6. The implant of claim 1 , wherein the first spacer portion comprises a first mortise for receiving the first tenon and the second spacer portion comprises a second mortise for receiving the second tenon. 7. The implant of claim 1 , wherein the first spacer portion further comprises a cut-out portion for receiving a pin therethrough. 8. The implant of claim 7 , wherein the pin extends through the connector and the first spacer portion. 9. The implant of claim 1 , wherein the frame further comprises a pair of torsional stabilizers extending from an upper surface thereof. 10. An intervertebral implant for implantation in an intervertebral space between adjacent vertebrae, the implant comprising: a frame comprising a body, a first extension extending from the body, and a second extension extending from the body, wherein the frame further comprises a first hole for receiving a first screw and a second hole for receiving a second screw; a first screw extending through the first hole; a second screw extending through the second hole; and a spacer connected to the frame, wherein the spacer comprises a first spacer portion, a second spacer portion, and a connector between the first spacer portion and the second spacer portion, wherein each of the first spacer portion, second spacer portion and connector includes a protrusion from an upper surface configured for gripping into bone, and wherein the connector comprises a first tenon and a second tenon. 11. The implant of claim 10 , wherein the frame further comprises an upper surface and a lower surface, wherein a first torsional stabilizer extends from the upper surface and a second torsional stabilizer extends from the lower surface, wherein each of the first torsional stabilizer and second torsional stabilizer comprises a triangular cross-section. 12. The implant of claim 10 , wherein the frame further comprises a first eyebrow that extends around a portion of the first hole and a second eyebrow that extends around a portion of the second hole. 13. The implant of claim 10 , wherein the first screw is angled in an upward direction and the second screw is angled in a downward direction. 14. The implant of claim 10 , wherein the connector comprises a cross-shaped member. 15. The implant of claim 10 , wherein the first spacer portion comprises a first mortise for receiving the first tenon and the second spacer portion comprises a second mortise for receiving the second tenon. 16. The implant of claim 10 , wherein the first spacer portion further comprises a cut-out portion, wherein the first extension of the frame is received in the cut-out portion of the spacer. 17. The implant of claim 10 , wherein the first spacer portion further comprises a first cut-out portion and the second spacer portion further comprises a second cut-out portion. 18. The implant of claim 17 , wherein the first cut-out portion is formed on an upper portion of the first spacer portion and the second cut-out portion is formed on a lower portion of the second spacer portion.
using a locking cam · CPC title
Longitudinally-oriented cooperating ribs and grooves on mating lateral surfaces of a mainly longitudinal connection · CPC title
parallel · CPC title
substantially parallelepipedal, e.g. having a rectangular or trapezoidal cross-section · CPC title
Titanium or titanium-based alloys, e.g. Ti-Ni alloys · CPC title
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