IP Library Granted Patent US 9,079,550
Granted Patent B2
US 9,079,550 · App. 13/269,643 · Granted Jul 14, 2015

Spine surgery method and instrumentation

Inventors: Henry F. Fabian (Steamboat Springs, CO); Larry A. Cicoretti (Poland, OH)
Assignee: Vertebration, Inc.
B60R19/18B60K13/02B60K13/04B60Q1/2626B60Q1/2653B60R19/50B60R2019/1886Y10T29/49826
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Quick Facts
Patent No.
US 9,079,550
App. No.
13/269,643
Granted
Jul 14, 2015
Kind
B2
Abstract

Surgical instrumentation for use in placing an implant into a disc space between a pair of spinal vertebrae may include: (a) a distractor having a distal end that may be placed into the disc space between the pair of spinal vertebrae; (b) an inserter for use in moving the implant toward the disc space between the pair of spinal vertebrae; and, (c) a distractor/inserter rail/groove interconnection that interconnects the distractor and the inserter for relative movement thereby.

Claims (41)

1. Surgical instrumentation for use in placing an implant into a disc space between a pair of spinal vertebrae comprising:

a distractor having a proximal end and a distal end that may be placed into the disc space between the pair of spinal vertebrae;

an inserter for use in moving the implant toward the disc space between the pair of spinal vertebrae;

a distractor/inserter rail/groove interconnection that interconnects the distractor and the inserter for relative movement thereby;

a cable that is operatively connected to the implant and that extends at least partially through the inserter; and,

a cable tensioning device supported to the inserter and operable to apply tension to the cable to cause the implant to deploy.

2. The surgical instrumentation of claim 1 wherein the cable tensioning device comprises:

a tensioning knob that can be moved to adjust the cable tension.

3. The surgical instrumentation of claim 2 wherein the tensioning knob is rotatable to adjust the cable tension.

4. The surgical instrumentation of claim 3 wherein:

the tensioning knob, when rotated a first predetermined amount, provides a first audible sound signifying that the implant has been deployed; and,

the tensioning knob, when rotated a second predetermined amount, provides a second audible sound signifying that the cable material is about to fail.

5. The surgical instrumentation of claim 3 wherein the cable tensioning device further comprises:

a rotatable shaft that can be rotated by the tensioning knob and about which the cable can be wound.

6. The surgical instrumentation of claim 1 wherein the inserter comprises:

an inserter handle that is attachable to a proximal end of the inserter;

a distal end that is used to contact the implant; and,

a counter rotation handle extending from the proximal end.

7. The surgical instrumentation of claim 1 wherein:

the implant has a convex surface;

the inserter has a concave surface that receives the convex surface; and,

the surgical instrumentation further comprises: an adjustment mechanism that is adjustable to tighten the concave surface of the inserter against the convex surface of the inserter.

8. Surgical instrumentation for use in placing an implant having a convex surface into a disc space between a pair of spinal vertebrae comprising:

a distractor having a proximal end and a distal end that may be placed into the disc space between the pair of spinal vertebrae;

an inserter for use in moving the implant toward the disc space between the pair of spinal vertebrae, wherein the inserter has a concave surface that receives the convex surface of the implant;

a distractor/inserter rail/groove interconnection that interconnects the distractor and the inserter for relative movement thereby; and,

an adjustment mechanism comprising a slot formed in the inserter and a sleeve that is movable with respect to the inserter to compress the slot to tighten the concave surface of the inserter against the convex surface of the inserter.

9. The surgical instrumentation of claim 8 wherein:

the slot is formed on a distal end of the inserter; and,

the sleeve is movable along the length of the inserter to compress the slot to tighten the concave surface of the inserter against the convex surface of the inserter.

10. The surgical instrumentation of claim 9 wherein the width of the inserter is tapered with the distal end being wider.

11. The surgical instrumentation of claim 10 further comprising:

a cable that is operatively connected to the implant and that extends at least partially through the inserter; and,

a cable tensioning device supported to the inserter and operable to apply tension to the cable to cause the implant to deploy.

12. The surgical instrumentation of claim 11 wherein:

the distractor comprises a first marking;

the inserter comprises a second marking; and,

the first and second markings when aligned define a motion limiter used to limit the relative movement of the distractor and the inserter along the distractor/inserter rail/groove interconnection.

13. The surgical instrumentation of claim 8 wherein the distractor/inserter rail/groove interconnection comprises:

at least one groove having at least a first relatively outer width and a second relatively inner width that is substantially greater than the first relatively outer width; and,

at least one rail that is received within the groove, the rail having a at least a first relatively outer width and a second relatively inner width that is substantially smaller than the first relatively outer width.

Continuity (2)
Division 11756168 · May 31, 2007
Related Publication 20120029645A1 · Feb 2, 2012