IP Library Granted Patent US 11,154,288
Granted Patent B1
US 11,154,288 · App. 16/271,289 · Granted Oct 26, 2021

Method and apparatus for performing spinal fusion surgery

Inventors: Nathan Lovell (Oceanside, CA); Michael Serra (San Diego, CA); Troy B. Woolley (Erie, CO); Mark D. Peterson (Central Point, OR); Antoine G. Tohmeh (Spokane, WA)
Assignee: NuVasive, Inc.
A61B17/025A61B17/0206A61B17/0218A61B17/708A61B17/7076A61B17/7077A61B17/86A61B2017/00477A61B2017/0256A61B2090/0811
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,154,288
App. No.
16/271,289
Granted
Oct 26, 2021
Kind
B1
Abstract

Implants, instruments, and methods for performing surgical procedures on the spine, including one or more of creating an operative corridor to the spine, delivering implants to the spine, fusing one or more segments of the spine and fixing one or more segments of the spine.

Claims (70)

1. A method for performing a spinal fixation procedure on a spinal segment of a human spine, the spinal segment including at least a first vertebra and a second vertebra separated from the first vertebra by an intervertebral disc space, comprising:

coupling a distal end of a first retractor blade to a first portion of a first bone anchor;

coupling a distal end of a second retractor blade to a first portion of a second bone anchor;

anchoring the first bone anchor to a pedicle of the first vertebra;

anchoring the second bone anchor to a pedicle of the second vertebra;

coupling a proximal end of the first retractor blade to a first arm of a retractor body;

coupling a proximal end of the second retractor blade to a second arm of the retractor body;

actuating the first and second arms of the retractor body to move the first retractor blade away from the second retractor blade in a first direction to create an operative corridor to a spinal segment;

advancing a third retractor blade through the operative corridor to the spinal segment;

coupling the third retractor blade to a secondary retractor body;

moving the third retractor blade away from the first and second retractor blades in a second direction orthogonal to the first direction;

uncoupling the first retractor blade from the first portion of the first bone anchor and coupling a first receiver to the first portion of the first bone anchor;

uncoupling the second retractor blade from the first portion of the second bone anchor and coupling a second receiver to the first portion of the second bone anchor;

inserting a rod into the first and second receivers;

locking the rod to the first and second receivers;

removing the first, second and third retractor blades from the operative corridor; and

closing the operative corridor.

2. The method of claim 1 , wherein the distal end of the first retractor blade is coupled to the first portion of the first bone anchor via a hoop shim slidably engaged with the first retractor blade.

3. The method of claim 1 , wherein the first retractor blade is coupled to the first portion of the first bone anchor in a polyaxial engagement.

4. The method of claim 1 , wherein the second retractor blade is coupled to the first portion of the second bone anchor in a polyaxial engagement.

5. The method of claim 1 , further comprising adjusting an angle of the operative corridor relative to the spinal segment.

6. The method of claim 5 , wherein the angle of the operative corridor is parallel to the intervertebral disc space.

7. The method of claim 1 , wherein the distal end of the second retractor blade is coupled to the first portion of the second bone anchor via a hoop shim slidably engaged with the second retractor blade.

8. A method for performing a spinal fixation procedure on a spinal segment of a human spine, the spinal segment including at least a first vertebra and a second vertebra separated from the first vertebra by an intervertebral disc space, comprising:

coupling a distal end of a first retractor blade to a first portion of a first bone anchor;

coupling a distal end of a second retractor blade to a first portion of a second bone anchor;

after coupling the distal end of the first retractor blade to the first portion of the first bone anchor, anchoring the first bone anchor to a pedicle of the first vertebra;

after coupling the distal end of the second retractor blade to the first portion of the second bone anchor, anchoring the second bone anchor to a pedicle of the second vertebra;

coupling a proximal end of the first retractor blade to a first arm of a retractor body;

coupling a proximal end of the second retractor blade to a second arm of the retractor body;

creating an operative corridor to a spinal segment, the operative corridor defined, in part, by the first retractor blade and the second retractor blade;

advancing a third retractor blade through the operative corridor to the spinal segment;

coupling the third retractor blade to a secondary retractor body;

moving the third retractor blade away from the first and second retractor blades in a second direction different from the first direction;

uncoupling the first retractor blade from the first portion of the first bone anchor and coupling a first receiver to the first portion of the first bone anchor;

uncoupling the second retractor blade from the first portion of the second bone anchor and coupling a second receiver to the first portion of the second bone anchor;

inserting a rod into the first and second receivers;

locking the rod to the first and second receivers; and

removing the first, second and third retractor blades from the operative corridor.

9. The method of claim 8 , wherein the distal end of the first retractor blade is coupled to the first portion of the first bone anchor via a hoop shim slidably engaged with the first retractor blade.

10. The method of claim 8 ,

wherein the first retractor blade is coupled to the first portion of the first bone anchor in a polyaxial engagement; and

wherein the second retractor blade is coupled to the first portion of the second bone anchor in a polyaxial engagement.

11. The method of claim 8 , further comprising adjusting an angle of the operative corridor relative to the spinal segment.

12. The method of claim 11 , wherein the adjusted angle of the operative corridor is more parallel to the intervertebral disc space than the angle was prior to the adjusting.

13. The method of claim 8 , wherein the distal end of the second retractor blade is coupled to the first portion of the second bone anchor via a hoop shim slidably engaged with the second retractor blade.

14. A method comprising:

coupling a distal end of a first retractor blade to a first portion of a first bone anchor;

coupling a distal end of a second retractor blade to a first portion of a second bone anchor;

after coupling the distal end of the first retractor blade to the first portion of the first bone anchor, anchoring the first bone anchor to a pedicle of a first vertebra;

after coupling the distal end of the second retractor blade to the first portion of the second bone anchor, anchoring the second bone anchor to a pedicle of a second vertebra;

coupling a proximal end of the first retractor blade to a retractor body;

coupling a proximal end of the second retractor blade to the retractor body;

creating an operative corridor to a spinal segment, the operative corridor defined, in part, by the first retractor blade and the second retractor blade;

after creating the operative corridor,

advancing a third retractor blade through the operative corridor to the spinal segment;

coupling the third retractor blade to a secondary retractor body;

moving the third retractor blade away from the first and second retractor blades in a second direction different from the first direction;

uncoupling the first retractor blade from the first portion of the first bone anchor and coupling a first receiver to the first portion of the first bone anchor;

uncoupling the second retractor blade from the first portion of the second bone anchor and coupling a second receiver to the first portion of the second bone anchor;

inserting a rod into the first and second receivers; and

locking the rod to the first and second receivers.

15. The method of claim 14 , further comprising:

removing the first, second and third retractor blades from the operative corridor.

16. The method of claim 14 , wherein the distal end of the first retractor blade is coupled to a first portion of the first bone anchor via a hoop shim slidably engaged with the first retractor blade.

17. The method of claim 14 ,

wherein the first retractor blade is coupled to the first portion of the first bone anchor in a polyaxial engagement; and

wherein the second retractor blade is coupled to the first portion of the second bone anchor in a polyaxial engagement.

18. The method of claim 14 , further comprising adjusting an angle of the operative corridor relative to the spinal segment such that the adjusted angle of the operative corridor is more parallel to an intervertebral disc space between the first vertebra and the second vertebra than the angle was prior to the adjusting.

19. The method of claim 14 , wherein the distal end of the second retractor blade is coupled to a first portion of the second bone anchor via a hoop shim slidably engaged with the second retractor blade.

Assignments (2)
SECURITY INTEREST Recorded Feb 28, 2020
From: NUVASIVE, INC.; NUVASIVE CLINICAL SERVICES MONITORING, INC.; NUVASIVE CLINICAL SERVICES, INC.; NUVASIVE SPECIALIZED ORTHOPEDICS, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 052918/0595 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2019
From: LOVELL, NATHAN; SERRA, MICHAEL; WOOLLEY, TROY B.; PETERSON, MARK D.; TOHMEH, ANTOINE G.
To: NUVASIVE, INC.
Reel/Frame 048293/0930 →
Continuity (3)
Continuation 15097186 · Apr 12, 2016
Continuation 13469076 · May 10, 2012
Provisional Application 61484580 · May 10, 2011
Cited By (3)
US 12,349,889 US 12,383,249 US 12,390,206