Spinal trauma correction and fixation
Tools and techniques are described that are useful for trauma correction of anterior compression, chance, or burst fractures, particularly where the posterior longitudinal ligament and posterior arch anatomy is still intact. The described tools can be used to reduce fracture and provide additional distraction for ligamentum taxis through a posterior approach that is compatible with both open and minimally invasive methodologies.
1 . A method of repairing a spinal trauma in a subject, the method comprising:
anchoring a first bone anchor assembly to a first vertebral structure;
anchoring a second bone anchor assembly to a second vertebral structure;
fixedly connecting a first guide member to the first bone anchor assembly, said first guide member having a distal end and a proximal end;
fixedly connecting a second guide member to the second bone anchor assembly, said second guide member having a distal end and a proximal end;
connecting a pivot rack to both of the first and second guide members, the pivot rack configured to allow the first and second guide members to rotate relative to one another about a first and second axis respectively, said first and second axes passing through the distal ends of the respective first and second guide members, and comprising a translation unit that controls the translation of the distal ends of the first and second guide members relative to one another;
connecting a locking rack to both of the first and second guide members, the locking rack configured to reversibly prevent the guide members from rotating relative to one another in at least one direction;
correcting the alignment of the first and second vertebral structures by at least one of angulation, distraction, and compression, wherein correcting the alignment of the first and second vertebral structures comprises:
rotating the first guide member and the second guide member such that a proximal intersection angle of a longitudinal axis of the first guide member and a longitudinal axis of the second guide member increases; and
distracting the first vertebral structure and the second vertebral structure by translating the distal ends of the first guide member and the second guide member away from one another, or compressing the vertebral structures by translating the distal ends of the first and second guide members toward one another; and
fixedly emplacing a spinal rod into the first and second bone anchor assemblies to maintain said at least one of angulation, distraction, and compression.
2 . The method of claim 1 , wherein correcting the alignment of the first and second vertebral structures by angulation comprises rotating the first guide member about the first axis and the second guide member about the second axis to effect angulation of the first and second vertebral structures.
3 . The method of claim 1 , wherein correcting the alignment of the first and second vertebral structures by one or more of distraction or compression comprises translating the distal ends of the first guide member and the second guide member relative to each another.
4 . The method of claim 1 , wherein correcting the alignment of the first and second vertebral structures corrects a burst fracture, a chance fracture or a dislocation fracture.
5 . The method of claim 1 , wherein the first and second vertebral structures are on nonadjacent vertebrae that are adjacent to an injured vertebral structure.
6 . The method of claim 1 , wherein the first and second vertebral structures are pedicles.
7 . The method of claim 1 , wherein the first and second elongate guide members are fixedly attached to the respective bone anchor assemblies prior to anchoring said bone anchor assemblies in the respective vertebral structures.
8 . The method of claim 1 , wherein anchoring a first bone anchor assembly to a first vertebral structure comprises inserting the first bone anchor assembly through a first incision, and anchoring a second bone anchor assembly to a second vertebral structure comprises inserting the second bone anchor assembly through a second incision.
9 . The method of claim 1 , further comprising:
anchoring a third bone anchor assembly to a third vertebral structure; and
fixedly emplacing the spinal rod into the third bone anchor assembly.
10 . A method of repairing a spinal trauma in a subject, the method comprising:
anchoring a first bone anchor assembly to a first vertebral structure;
anchoring a second bone anchor assembly to a second vertebral structure;
fixedly connecting a first guide member to the first bone anchor assembly, said first guide member having a distal end and a proximal end;
fixedly connecting a second guide member to the second bone anchor assembly, said second guide member having a distal end and a proximal end;
connecting a pivot rack to both of the first and second guide members, the pivot rack configured to allow the first and second guide members to rotate relative to one another about a first and second axis respectively, said first and second axes passing through the distal ends of the respective first and second guide members, and comprising a translation unit that controls the translation of the distal ends of the first and second guide members relative to one another;
connecting a locking rack to both of the first and second guide members, the locking rack configured to reversibly prevent the guide members from rotating relative to one another in at least one direction;
correcting the alignment of the first and second vertebral structures by at least one of angulation, distraction, and compression; and
fixedly emplacing a spinal rod into the first and second bone anchor assemblies to maintain said at least one of angulation, distraction, and compression;
inserting a dual driver and leverage instrument into at least one of the first and second guide members to provide leverage for rotating the first and second guide members relative to one another; and
tightening at least one arm unit of the pivot rack with said dual driver and leverage instrument, wherein the dual driver and leverage instrument includes a handle, a shaft fixedly connected to the handle, and a driving feature connected at the other end of the shaft;
angulating the handle relative to the shaft to provide leverage for rotating the first guide member and the second guide member relative to each another.
11 . The method of claim 10 , wherein the first and second vertebral structures are on nonadjacent vertebrae that are adjacent to an injured vertebral structure.
12 . The method of claim 10 , wherein the first and second vertebral structures are pedicles.
13 . The method of claim 10 , wherein the first and second elongate guide members are fixedly attached to the respective bone anchor assemblies prior to anchoring said bone anchor assemblies in the respective vertebral structures.
14 . The method of claim 10 , wherein anchoring a first bone anchor assembly to a first vertebral structure comprises inserting the first bone anchor assembly through a first incision, and anchoring a second bone anchor assembly to a second vertebral structure comprises inserting the second bone anchor assembly through a second incision.
15 . The method of claim 10 , further comprising:
anchoring a third bone anchor assembly to a third vertebral structure; and
fixedly emplacing the spinal rod into the third bone anchor assembly.