Lateral spondylolisthesis reduction cage
An intervertebral fusion device comprising inferior and superior fusion cage devices that provide an ability to correct spondylolisthesis via in-situ adjustment.
1. A method of installing an intervertebral fusion device, wherein the device comprises:
a) an upper endplate having an anterior wall, a posterior wall, an upper surface for contacting an upper vertebral body of a patient, teeth extending from the upper surface for enhancing securement, a lower surface, and a throughhole running from the upper surface to the lower surface and adapted for promoting fusion,
b) a lower endplate having an anterior wall, a posterior wall, a lower surface for contacting a lower vertebral body of the patient, teeth extending from the lower surface for enhancing securement, an upper surface, and a throughhole running from the lower surface to the upper surface and adapted for promoting fusion,
c) a first core component having an upper endportion engaged with the upper endplate and a lower endportion engaged with the lower endplate, and
d) a second core component having an upper endportion engaged with the upper endplate and a lower endportion engaged with the lower endplate,
wherein the device has a collapsed configuration and an expanded configuration,
wherein the upper endplate does not contact the lower endplate in the expanded configuration,
wherein each of the upper endplate, the upper endportion of the first core, and the upper end portion of the second core moves away from the lower surface of the lower endplate during expansion from the collapsed configuration to the expanded configuration,
wherein the method comprises:
inserting the device into a disc space so that the anterior wall of the upper endplate faces anteriorly relative to the patient and the posterior wall of the upper endplate faces posteriorly relative to the patient, and
expanding the inserted device from the collapsed configuration to the expanded configuration,
wherein each of the anterior and posterior walls of the upper endplate moves posteriorly during expansion from the collapsed configuration to the expanded configuration.
2. The method of claim 1 , wherein the first core component is unitary and the second core component is unitary.
3. The method of claim 1 , further comprising e) at least one screw extending through an opening formed in a proximal end of the device and substantially parallel to a longitudinal axis of the upper endplate.
4. The method of claim 1 , wherein the upper surface of the upper endplate and the lower surface of the lower endplate are domed.
5. The method of claim 1 , wherein the upper and lower endplates are tapered for ease of insertion into the disc space.
6. The method of claim 1 , wherein the upper and lower endplates are formed from titanium or a titanium alloy.
7. The method of claim 1 , wherein at least one of the first core component and the second core component is disposed on a proximal surface of the upper endplate or a proximal surface of the lower endplate.