Spinal Facet Joint Immobilization Systems and Methods
The present invention provides novel systems and methods for aligning and securely holding superior and inferior facets of the spine of a patient to be joined during an interbody fusion or other spinal immobilization procedure (simultaneously compressing the associated facet joint), drilling a hole through which a facet fixation device will be placed, and placing the facet fixation device to a desired penetration depth. The present invention also provides novel facet anchor devices.
1 . A facet clamp device, comprising:
a pair of elongate arms joined at a pivot joint;
a pair of washers coupled to the pair of elongate arms, wherein the pair of washers are configured to engage a pair of facets associated with a spine of a patient; and
a compression lock coupled to the pair of elongate arms, wherein the compression lock is operable for holding the pair of elongate arms secure with respect to one another.
2 . The facet clamp device of claim 1 , further comprising a pair of handles coupled to the pair of elongate arms opposite the pair of washers, wherein the pair of handles are disposed at an angle of approximately 90 degrees to the pair of elongate arms.
3 . The facet clamp device of claim 1 , wherein each washer of the pair of washers comprises a friction surface for engaging one of the pair of facets.
4 . The facet clamp device of claim 1 , wherein one or more washers of the pair of washers are pivotable with respect to the associated elongate arm of the pair of elongate arms.
5 . The facet clamp device of claim 1 , wherein one or more washers of the pair of washers define a bore through which one or more of a drill bit, a depth gauge, and a facet fixation device is/are selectively placed.
6 . A facet anchor device, comprising:
an elongate locking member configured to be selectively disposed through and at least partially within a bore formed through a pair of facets associated with a spine of a patient, the elongate locking member comprising one or more inwardly biased locking structures, the one or more inwardly biased locking structures each comprising a lip structure; and
a threaded plug member configured to be selectively disposed within a threaded bore formed through the elongate locking member, thereby outwardly biasing the inwardly biased locking structures and lip structures, the lip structures preventing the elongate locking member from being removed from the bore formed through the pair of facets.
7 . The facet anchor device of claim 6 , the elongate locking member further comprising a head nut coupled to the elongate locking member opposite the lip structures.
8 . The facet anchor device of claim 6 , wherein an outside surface of the elongate locking member and an inside surface of the bore formed through the pair of facets are correspondingly threaded.
9 . The facet anchor device of claim 6 , wherein the elongate locking member and the one or more inwardly biased locking structures are integrally formed.
10 . The facet anchor device of claim 6 , wherein the inwardly biased locking structures and the lip structures are integrally formed.
11 . A facet bolt implantation device, comprising:
a substantially arcuate bridge member;
a pair of washers coupled to the substantially arcuate bridge member, wherein the pair of washers are configured to engage a pair of facets associated with a spine of a patient; and
a cannulated compression mechanism coupled to the substantially arcuate bridge member, wherein the cannulated compression mechanism is configured to selectively advance one washer of the pair of washers towards the other washer of the pair of washers, and wherein the cannulated compression mechanism is configured to receive a facet fixation device there through.
12 . The facet bolt implantation device of claim 11 , wherein each washer of the pair of washers comprises a friction surface for engaging one of the pair of facets.
13 . The facet bolt implantation device of claim 11 , wherein one or more washers of the pair of washers are pivotable with respect to the substantially arcuate bridge member.
14 . The facet bolt implantation device of claim 11 , wherein the substantially arcuate bridge member and the cannulated compression mechanism are each manufactured from a radiolucent material.
15 . The facet bolt implantation device of claim 11 , further comprising a depth gauge associated with the cannulated compression mechanism, wherein the depth gauge is operable for indicating a deflection of the pair of washers from an initial position to a subsequent position, this deflection indicating what size facet fixation device should be used.