IP Library › Granted Patent US 11,883,064
Granted Patent B2
US 11,883,064 · App. 17/214,759 · Granted Jan 30, 2024

Multi-shield spinal access system

Inventors: Daniel Thommen (Liestal, CH); Joern Richter (Kandern, DE); Michael Wang (North Miami, FL); Richard Assaker (Kain, BE); Richard Fessler (Winnetka, IL); Christoph Mehren (Munich, DE); Seang Beng Tan (Clementi, SG); William Taylor (Del Mar, CA); Eric Buehlmann (Duxbury, MA); Michael White (Liestal, CH)
Assignee: Medos International Sarl
A61B17/3421A61B1/00045A61B1/00089A61B1/00091A61B1/00094A61B1/00096A61B1/00103A61B1/00128A61B1/00133A61B1/00135A61B1/00154A61B1/012A61B1/018A61B1/05A61B1/051A61B1/055A61B1/07A61B1/126A61B1/233A61B1/2676A61B1/317A61B1/3132A61B1/3135A61B1/32A61B5/068A61B5/24A61B5/407A61B5/4041A61B17/00234A61B17/025A61B17/0218A61B17/0293A61B17/320068A61B17/3423A61B17/3462A61B17/60A61B17/708A61B17/7032A61B17/7074A61B18/1815A61B90/03A61B90/361A61B90/50A61B90/57A61F2/4455A61F2/4611A61B1/00149A61B17/0206A61B17/1637A61B17/1671A61B17/1703A61B17/1757A61B17/3403A61B17/3439A61B17/70A61B17/7083A61B34/30A61B34/70A61B90/30A61B2017/0034A61B2017/00261A61B2017/00314A61B2017/00345A61B2017/00407A61B2017/00477A61B2017/00557A61B2017/00738A61B2017/00831A61B2017/00858A61B2017/00871A61B2017/00946A61B2017/00991A61B2017/0256A61B2017/0262A61B2017/320075A61B2017/345A61B2017/347A61B2017/3443A61B2017/3445A61B2017/3447A61B2017/3454A61B2017/3484A61B2017/564A61B2018/00339A61B2018/00565A61B2018/00577A61B2018/1861A61B2018/1869A61B2034/2055A61B2090/034A61B2090/036A61B2090/08021A61B2090/306A61B2090/371A61B2090/3983A61B2218/002A61B2218/007A61F2002/4635
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Quick Facts
Patent No.
US 11,883,064
App. No.
17/214,759
Granted
Jan 30, 2024
Kind
B2
Abstract

An access device for accessing an intervertebral disc having an outer shield comprising an access shield with a larger diameter (˜16-30 mm) that reaches from the skin down to the facet line, with an inner shield having a second smaller diameter (˜5-12 mm) extending past the access shield and reaches down to the disc level. This combines the benefits of the direct visual microsurgical/mini open approaches and the percutaneous, “ultra-MIS” techniques.

Claims (42)

1. A method of accessing an intervertebral disc in a patient, comprising:

a) making an incision in a skin of the patient,

b) percutaneously inserting through the incision an outer shield having a substantially tubular shape, the outer shield having a length adapted to extend from the incision to a superior articular process in the spine of the patient,

c) resecting at least a lateral portion of the superior articular process,

d) inserting an inner shield through the outer shield so that a distal end portion of the inner shield extends to the disc, the inner shield having an outer surface,

e) disposing a video chip in a distal end portion of a channel of the outer shield, wherein the channel opens into the inner surface of the outer shield at least at the distal end portion of the outer shield.

2. The method of claim 1 , wherein inserting an inner shield comprises the outer surface of the inner shield substantially nesting within the inner surface of the outer shield and extending the inner shield distally past the distal end portion of the outer shield.

3. A method of accessing an intervertebral disc in a patient, comprising:

a) making an incision in a skin of the patient,

b) percutaneously inserting through the incision an outer shield having a substantially tubular shape,

c) inserting an inner shield through the outer shield so that a distal end portion of the inner shield extends to the disc, the inner shield having an outer surface,

d) disposing a video chip in a distal end portion of a channel of the outer shield, wherein the channel opens into the inner surface of the outer shield at least at the distal end portion of the outer shield.

4. The method of claim 1 , wherein the distal end portion of the inner shield has an arcuate transverse cross-section.

5. The method of claim 1 , further comprising contacting the outer surface of the shield to a nerve root to shield the nerve root.

6. The method of claim 1 , further comprising coupling a navigation instrument to the outer shield.

7. The method of claim 1 , further comprising coupling a light source to the outer shield.

8. The method of claim 1 , wherein the channel opens into the inner surface of the outer shield along the distal end portion of the outer shield proximal to a distal end of the outer shield.

9. The method of claim 3 , wherein inserting an inner shield comprises the outer surface of the inner shield substantially nesting within the inner surface of the outer shield and extending the inner shield distally past the distal end portion of the outer shield.

10. The method of claim 3 wherein the inner shield is angled into a center of an access window at a distal end of the outer shield, and then is subsequently advanced longitudinally onto a medial side of a nerve root.

11. The method of claim 9 , wherein the distal end portion of the inner shield has an arcuate transverse cross-section.

12. The method of claim 9 , further comprising contacting the outer surface of the shield to a nerve root to shield the nerve root.

13. The method of claim 9 , further comprising coupling a navigation instrument to the outer shield.

14. The method of claim 9 , further comprising coupling a light source to the outer shield.

15. The method of claim 9 , wherein the channel opens into the inner surface of the outer shield along the distal end portion of the outer shield proximal to a distal end of the outer shield.

16. A method of accessing an intervertebral disc in a patient, comprising the steps of:

a) making an incision in a skin of the patient,

b) percutaneously inserting through the incision an outer shield having a substantially tubular shape, the outer shield having a length adapted to extend from the incision to a superior articular process (SAP) in the spine of the patient,

c) stabilizing the outer shield to a pedicle anchor

d) inserting an outer shield integrated optical visualization instrument,

e) resecting a portion of the superior articular process, and/or performing a microsurgical decompression procedure,

f) inserting an inner shield through the outer shield so that a distal end portion of the inner shield extends to the disc, the inner shield having an outer surface,

g) contacting the outer surface of the shield to a nerve root to shield the nerve root,

h) microsurgically decompressing any tissue deemed to be causing nerve impingement,

i) extracting the intervertebral disc material including the removal of the cartilaginous material from the vertebral endplates,

j) inserting an interbody device into a disc space,

k) deploying a mechanism of stabilization to stabilize the intervertebral segment.

17. The method of claim 16 , wherein inserting an inner shield comprises the outer surface of the inner shield substantially nesting within the inner surface of the outer shield and extending the inner shield distally past the distal end portion of the outer shield.

18. The method of claim 16 , wherein the distal end portion of the inner shield has an arcuate transverse cross-section.

19. The method of claim 16 , wherein inserting the outer shield integrated optical visualization instrument comprises disposing a video chip in a distal end portion of a channel of the outer shield, wherein the channel opens into the inner surface of the outer shield at least at the distal end portion of the outer shield.

20. The method of claim 19 , wherein the channel opens into the inner surface of the outer shield along the distal end portion of the outer shield proximal to a distal end of the outer shield.

21. The method of claim 16 , further comprising coupling a navigation instrument to the outer shield.

22. The method of claim 16 , further comprising coupling a light source to the outer shield.

Continuity (3)
Continuation 15254877 · Sep 1, 2016
Provisional Application 62214297 · Sep 4, 2015
Related Publication 20210282806A1 · Sep 16, 2021
Cited By (5)
US 12,193,704 US 12,383,302 US 12,402,909 US 12,496,093 US 12,507,880