IP Library Granted Patent US 11,647,999
Granted Patent B1
US 11,647,999 · App. 16/406,824 · Granted May 16, 2023

Method and apparatus for performing spine surgery

Inventors: Luiz Pimenta (Sao Paulo, BR); Michael Serra (San Diego, CA); Andrew Morris (San Diego, CA); Nathan Lovell (Oceanside, CA); Nelson Oi (San Diego, CA); Eugene Shoshtaev (Del Mar, CA)
Assignee: NuVasive, Inc.
A61B17/025A61B17/0206A61B17/0218A61B17/3211A61B17/320016A61B17/3423A61F2/442A61F2/4611A61B2017/00261A61B2017/0256A61B2017/0262A61B2017/320052A61B2018/00601A61F2250/0098
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Quick Facts
Patent No.
US 11,647,999
App. No.
16/406,824
Granted
May 16, 2023
Kind
B1
Abstract

Systems and methods are described for correcting sagittal imbalance in a spine including instruments for performing the controlled release of the anterior longitudinal ligament through a lateral access corridor and hyper-lordotic lateral implants.

Claims (29)

1. A resector for use in a surgical procedure of correcting sagittal imbalance of a spine, the resector comprising:

a cutter configured to access and cut an anterior longitudinal ligament (ALL) via a lateral approach, the cutter comprising an elongate extender, an anti-rotation bar fixedly attached to the elongate extender, and a blade securely attached to a distal end of the elongate extender; and

a tissue retractor that protects anterior movement of the cutter, the tissue retractor comprising a handle, an elongate shaft, one or more guide posts, and a curved head,

wherein the anti-rotation bar is configured to slideably mate with the one or more guide posts and restrict rotation of the cutter relative to the tissue retractor.

2. The resector of claim 1 is configured to be positioned through a lateral access corridor to access and cut a targeted intervertebral disc of the spine.

3. The resector of claim 2 , wherein the lateral access corridor is created along a lateral, transpsoas path to the targeted intervertebral disc of the spine.

4. The resector of claim 1 , wherein the ALL is adjacent to a targeted intervertebral disc of the spine and between a first vertebrae and a second vertebrae adjacent to the first vertebrae.

5. The resector of claim 1 , wherein an inside surface of the curved head compliments curvature of anterior aspects of a targeted intervertebral disc of the spine and an outer surface of the curved head forms a barrier that protects surrounding tissue of the targeted intervertebral disc, the ALL, or both.

6. The resector of claim 1 , wherein the cutter further comprises a connector at a proximal end of the elongate extender, the connector configured for connecting to a handle that is manipulated by a user to control movement of the cutter.

7. The resector of claim 1 , wherein the one or more guide posts comprises two guide posts, and the anti-rotation bar is configured to be inserted between the two guide posts.

8. The resector of claim 1 , wherein the elongate extender of the cutter further comprises a pair of distal wings that are sized and shaped to contact a proximal surface of a first vertebrae and a proximal surface of a second vertebrae adjacent thereto, wherein the first and the second vertebrae are adjacent to a targeted intervertebral disc of the spine.

9. The resector of claim 8 , wherein the pair of distal wings are generally perpendicular to a surface of the blade.

10. The resector of claim 8 , wherein the pair of distal wings are configured to restrict movement of the cutter in the cephalad or caudal direction.

11. The resector of claim 1 , wherein the cutter further comprises one or more distal fingers configured for protecting tissues from the blade, the one or more distal fingers extending more distally than a most distal edge of the blade.

12. A resector for use in a surgical procedure of correcting sagittal imbalance of a spine, the resector comprising:

a cutter configured to access and cut an anterior longitudinal ligament (ALL) via a lateral access corridor, the lateral access corridor created along a lateral path to a targeted intervertebral disc of the spine, the cutter comprising an elongate extender, an anti-rotation bar fixedly attached to the elongate extender, and a blade securely attached to a distal end of the elongate extender; and

a tissue retractor that protects anterior movement of the cutter, the tissue retractor comprising a handle, an elongate shaft, one or more guide posts, and a curved head, wherein the anti-rotation bar is configured to slideably mate with the one or more guide posts and restrict rotation of the cutter relative to the tissue retractor.

13. The resector of claim 12 , wherein the ALL is adjacent to the targeted intervertebral disc of the spine and between a first vertebrae and a second vertebrae adjacent to the first vertebrae.

14. The resector of claim 12 , wherein an inside surface of the curved head compliments curvature of anterior aspects of the targeted intervertebral disc of the spine and an outer surface of the curved head forms a barrier that protects surrounding tissue of the targeted intervertebral disc, the ALL, or both.

15. The resector of claim 12 , wherein the cutter further comprises a connector at a proximal end of the elongate extender, the connector configured for connecting to a handle that is manipulated by a user to control movement of the cutter.

16. The resector of claim 12 , wherein the one or more guide posts comprises two guide posts, and the anti-rotation bar is configured to be inserted between the two guide posts.

17. The resector of claim 12 , wherein the elongate extender of the cutter further comprises a pair of distal wings that are sized and shaped to contact a proximal surf ace of a first vertebrae and a proximal surface of a second vertebrae adjacent thereto, wherein the first and the second vertebrae are adjacent to the targeted intervertebral disc of the spine.

18. The resector of claim 17 , wherein the pair of distal wings are generally perpendicular to a surface of the blade.

19. The resector of claim 12 , wherein the cutter further comprises one or more distal fingers configured for protecting tissues from the blade, the one or more distal fingers extending more distally than a most distal edge of the blade.

20. A resector for use in a surgical procedure of correcting sagittal imbalance of a spine, the resector comprising:

a cutter comprising an elongate extender, an anti-rotation bar fixedly attached to the elongate extender, and a blade securely attached to a distal end of the elongate extender; and

a tissue retractor that protects anterior movement and cephalad or caudal movement of the cutter, the tissue retractor comprising a handle, an elongate shaft, one or more guide posts, and a curved head,

wherein the anti-rotation bar is configured to slideably mate with the one or more guide posts and restrict rotation of the cutter relative to the tissue retractor,

wherein the resector is configured to access and cut an anterior longitudinal ligament (ALL) via a lateral, transpsoas path to a targeted disc of the spine and wherein the resector protects surrounding tissue of the targeted disc of the spine, the ALL, or both during accessing and cutting of the ALL.

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 Jun 11, 2019
From: PIMENTA, LUIZ; SERRA, MICHAEL; MORRIS, ANDREW; LOVELL, NATHAN; OI, NELSON; SHOSHTAEV, EUGENE
To: NUVASIVE, INC.
Reel/Frame 049433/0478 →