Expandable spinal fusion implant, related instruments and methods
A system for performing interbody fusion surgery including an expandable intervertebral spacer and specialized instruments for choosing the correct size of implant, implanting the device within the intervertebral space, and for delivery of bone graft or bone substitute to the interior of the implant.
1. A method of inserting an intervertebral spacer into an intervertebral space of a patient, the method comprising:
a. accessing the intervertebral space;
b. removing an intervertebral disc in need of replacement present in the intervertebral space;
c. inserting the intervertebral spacer into the intervertebral space, the intervertebral spacer comprising:
i. a lateral side having a proximal end and a distal end and comprising a first plurality of links joined by a first plurality of joints;
ii. a medial side having a proximal end and a distal end and comprising a second plurality of links joined by a second plurality of joints;
iii. a proximal end including an insertion link having an aperture dimensioned to receive an insertion tool, said insertion link joined to proximal ends of the lateral side and the medial side;
iv. a distal end;
v. a first support face configured to contact a first vertebral body endplate and a second support face opposite said first support face configured to contact a second vertebral body endplate; and
vi. a positioner gear assembly housed in the distal end of the intervertebral spacer and configured to maintain the intervertebral spacer in an expanded configuration,
wherein (i) said intervertebral spacer has an insertion configuration in which the intervertebral spacer is elongated, (ii) the lateral side and the medial side are linear, (iii) an axis of insertion of the intervertebral spacer info the intervertebral space is parallel to a longitudinal axis of the intervertebral spacer, (iv) when in the expanded configuration the lateral and medial sides are displaced to define a graft aperture, and (v) the intervertebral spacer has a hexagonal perimeter that is asymmetrical about the axis of insertion.
2. The method of claim 1 wherein the intervertebral spacer is bisected by a first axis parallel to a sagittal plane when the spacer is in the expanded configuration.
3. The method of claim 2 wherein the perimeter of the intervertebral spacer is symmetrical about the first axis.
4. The method of claim 1 wherein at least one of the links of the lateral side of the intervertebral spacer comprise a window.
5. The method of claim 4 wherein at least one of the links of the medial side of the intervertebral spacer comprise a window.
6. The method of claim 1 wherein at least one of the links of the medial side of the intervertebral spacer comprise a window.
7. The method of claim 1 wherein the intervertebral spacer's lateral side has a first height at the distal end and a second height at the proximal end and wherein the first height is greater than the second height.
8. The method of claim 7 wherein the intervertebral spacer's medial side has a first height at the distal end and a second height at the proximal end and wherein the first height is greater than the second height.
9. A method of inserting an intervertebral spacer into an intervertebral space of a patient, the method comprising:
a. accessing the intervertebral space;
b. removing an intervertebral disc in need of replacement present in the intervertebral space;
c. inserting the intervertebral spacer into the intervertebral space, the intervertebral spacer comprising:
i. a lateral side having a proximal end and a distal end and comprising a first plurality of links joined by a first plurality of joints;
ii. a medial side having a proximal end and a distal end and comprising a second plurality of links joined by a second plurality of joints;
iii. a proximal end and a distal end;
iv. a first support face configured to contact a first vertebral body endplate;
v. a second support face opposite said first support face configured to contact a second vertebral body endplate,
wherein when the intervertebral spacer is in an expanded configuration the lateral and medial sides are displaced to define a graft aperture and the intervertebral spacer has a hexagonal perimeter that is asymmetrical about an axis of insertion.
10. The method of claim 9 wherein the intervertebral spacer has an insertion configuration in which the intervertebral spacer is elongated and the lateral side and the medial side are linear and the axis of insertion into the intervertebral space that is parallel to a longitudinal axis of the intervertebral spacer.
11. The method of claim 9 wherein the intervertebral spacer is bisected by a first axis parallel to a sagittal plane when the spacer is in the expanded configuration.
12. The method of claim 11 wherein the perimeter of the intervertebral spacer is symmetrical about the first axis.
13. The method of claim 9 wherein at least one of the links of the lateral side of the intervertebral spacer comprise a window.
14. The method of claim 9 wherein at least one of the links of the medial side of the intervertebral spacer comprise a window.
15. The method of claim 9 wherein the intervertebral spacer's lateral side has a first height at the distal end and a second height at the proximal end and wherein the first height is greater than the second height.
16. The method of claim 15 wherein the intervertebral spacer's medial side has a first height at the distal end and a second height at the proximal end and wherein the first height is greater than the second height.
17. A method of inserting an intervertebral spacer into an intervertebral space of a patient, the method comprising:
inserting the intervertebral spacer into the intervertebral space, the intervertebral spacer comprising:
i. a lateral side having a proximal end and a distal end and comprising a first plurality of links joined by a first plurality of joints;
ii. a medial side having a proximal end and a distal end and comprising a second plurality of links joined by a second plurality of joints;
iii. a proximal end and a distal end;
iv. a first support face configured to contact a first vertebral body endplate; and
v. a second support face opposite said first support face configured to contact a second vertebral body endplate, wherein the intervertebral spacer comprises a positioner gear assembly housed in the distal end of the intervertebral spacer and configured to maintain the intervertebral spacer in an expanded configuration, wherein the positioner gear assembly comprises a positioner gear having a biasing element and an arc shaped body.
18. The method of claim 17 , wherein the arc shaped body comprises a plurality of radially cut teeth configured to allow expansion or contraction of the spacer to a predetermined size.