IP Library › Granted Patent US 7,647,123
Granted Patent B2
US 7,647,123 · App. 11/930,813 · Granted Jan 12, 2010

Method for treating intervertebral discs

Assignee: Oratec Interventions, Inc.
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Quick Facts
Patent No.
US 7,647,123
App. No.
11/930,813
Granted
Jan 12, 2010
Kind
B2
Abstract

An interverterbral fissure can be treated by providing a catheter having a distal end, a proximal end, a longitudinal axis, and an intradiscal section at the catheter's distal end on which there is at least one functional element. The next step is applying a force longitudinally to the proximal of the catheter which is sufficient to advance the intradiscal section through the nucleus pulposus and around an inner wall of an annulus fibrosus, but which force is insufficient to puncture the annulus fibrosus. Next the functional element is positioned at a selected location of the disc by advancing or retracting the catheter and optionally twisting the proximal end of the catheter. Then the functional unit treats the annular fissure. Optionally, there is an additional step of adding a substance to seal the fissure.

Claims (42)

1. A method comprising:

introducing an intervertebral disc apparatus within an intervertebral disc such that a radiofrequency electrode incorporated into the apparatus at a distal region of the apparatus is advanced beyond a center of a nucleus pulposus of the disc to a selected location that is closer to an inner wall of an annulus fibrosus of the disc than to the center of the nucleus pulposus; and

delivering energy from the electrode positioned at the selected location such that no material other than water is removed at the selected location of the intervertebral disc when energy is delivered.

2. The method of claim 1 , wherein delivering energy includes delivering thermal energy or electromagnetic energy.

3. The method of claim 1 , wherein the electrode is positioned adjacent an inner wall of the disc.

4. A method comprising:

introducing an intervertebral disc apparatus within an intervertebral disc such that a radiofrequency electrode incorporated into the apparatus at a distal region of the apparatus is advanced beyond a center of a nucleus pulposus of the disc to a selected location that is closer to an inner wall of an annulus fibrosus of the disc than to the center of the nucleus pulposus; and

delivering energy from the electrode positioned at the selected location such that no destructive lesion is formed on a disc at the selected location of the intervertebral disc when energy is delivered.

5. The method of claim 4 , wherein delivering energy includes delivering thermal energy or electromagnetic energy.

6. The method of claim 4 , wherein the electrode is positioned adjacent an inner wall of the disc.

7. A method comprising:

providing a catheter having a radiofrequency electrode at a distal region of the catheter;

advancing the electrode beyond a center of a nucleus pulposus of an intervertebral disc to a selected location that is closer to an inner wall of an annulus fibrosus of the disc than to the center of the nucleus pulposus; and

delivering a controlled amount of energy from the electrode positioned at the selected location such that no material other than water is removed from the disc.

8. The method of claim 7 , wherein delivering energy includes delivering thermal energy or electromagnetic energy.

9. The method of claim 7 , wherein the electrode is positioned at a site of an annular fissure of the inner wall of the disc.

10. A method comprising:

providing a catheter having a radiofrequency electrode at a distal region of the catheter;

advancing the electrode beyond a center of a nucleus pulposus of an intervertebral disc to a selected location that is closer to an inner wall of an annulus fibrosus of the disc than to the center of the nucleus pulposus; and

delivering a controlled amount of energy from the electrode positioned at the selected location such that no destructive lesion is formed in the disc.

11. The method of claim 10 , wherein delivering energy includes delivering thermal energy or electromagnetic energy.

12. The method of claim 10 , wherein the electrode is positioned at a site of an annular fissure of the inner wall of the disc.

13. A method comprising:

providing a catheter having a radiofrequency electrode at a distal region of the catheter;

positioning the electrode in the intervertebral disc;

advancing the electrode non-linearly within the intervertebral disc beyond a center of the nucleus pulposus of the disc to a selected location that is closer to an inner wall of an annulus fibrosus of the disc than to the center of the nucleus pulposus; and

delivering a controlled amount of energy to the selected location from the electrode positioned at the selected location such that no material other than water is removed from the disc.

14. The method of claim 13 , wherein the electrode is positioned at a site of an annular fissure of the inner wall of the disc.

15. A method comprising:

providing a catheter having a radiofrequency electrode at a distal region of the catheter;

positioning the electrode in the intervertebral disc;

advancing the electrode non-linearly within the intervertebral disc beyond a center of the nucleus pulposus of the disc to a selected location that is closer to an inner wall of an annulus fibrosus of the disc than to the center of the nucleus pulposus; and

delivering a controlled amount of energy to the selected location from the electrode positioned at the selected location such that no destructive lesion is formed in the disc.

16. The method of claim 15 , wherein the electrode is positioned at a site of an annular fissure of the inner wall of the disc.

17. A method for delivering a controlled amount of energy adjacent an inner wall of an intervertebral disc comprising:

introducing an intervertebral disc apparatus within an intervertebral disc such that a functional element incorporated into the apparatus adjacent a distal end of the apparatus is positioned proximate a wall of the intervertebral disc; and

delivering energy from the functional element to the wall of the invertebral disc such that no material other than water is removed at or near the wall of the intervertebral when energy is delivered.

18. The method of claim 17 , wherein delivering energy includes delivering thermal energy or electromagnetic energy.

19. A method for delivering a controlled amount of energy adjacent an inner wall of an intervertebral disc comprising:

introducing an intervertebral disc apparatus within an intervertebral disc such that a functional element incorporated into the apparatus adjacent a distal end of the apparatus is positioned proximate a wall of the intervertebral disc; and

delivering energy from the functional element to the wall of the invertebral disc such that no destructive lesion is formed on a disc at or near the wall of the intervertebral disc when energy is delivered.

20. the method of claim 19 , wherein delivering energy includes delivering thermal energy or electromagnetic energy.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Aug 6, 2014
From: MADISON CAPITAL FUNDING LLC, AS ADMINISTRATIVE AGENT
To: NEUROTHERM, INC.
Reel/Frame 033483/0265 →
SECURITY AGREEMENT Recorded Feb 3, 2011
From: NEUROTHERM, INC.
To: MADISON CAPITAL FUNDING LLC, AS AGENT
Reel/Frame 025736/0482 →
SECURITY INTEREST Recorded Jan 25, 2011
From: NEUROTHERM, INC.
To: RBS CITIZENS, N.A.
Reel/Frame 025749/0177 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 11, 2010
From: ORATEC INTERVENTIONS, INC.
To: NEUROTHERM, INC.
Reel/Frame 024358/0917 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2008
From: SAAL, JOEL; SAAL, JEFFREY A.; LE, LE T.; SHARKEY, HUGH; ASHLEY, JOHN E.
To: ORATEC INTERVENTIONS, INC.
Reel/Frame 020486/0295 →
Continuity (42)
Division 1071200600 · Nov 14, 2003
Continuation 1038860900 · Mar 17, 2003
Continuation 0970762700 · Nov 6, 2000
Continuation 0923681600 · Jan 25, 1999
Continuation 0916270400 · Sep 29, 1998
Continuation In Part 0915355200 · Sep 15, 1998
Continuation In Part 0888152500 · Jun 24, 1997
Continuation 0888169200 · Jun 24, 1997
Continuation 0888152700 · Jun 24, 1997
Continuation 0888169300 · Jun 24, 1997
Continuation 0888169400 · Jun 24, 1997
Continuation In Part 0987683300 · Jun 6, 2001
Continuation In Part 1062489400 · Jul 23, 2003
Continuation In Part 0987683200 · Jun 6, 2001
Continuation In Part 0987683100 · Jun 6, 2001
Division 0975378600 · Jan 2, 2001
Continuation In Part 0902268800 · Feb 12, 1998
Continuation In Part 1024277700 · Sep 13, 2002
Division 0934006500 · Jun 25, 1999
Continuation In Part 0902261200 · Feb 12, 1998
Continuation In Part 0977623100 · Feb 1, 2001
Continuation In Part 0977618600 · Feb 1, 2001
Division 0927280600 · Mar 19, 1999
Division 0927280600 · Mar 19, 1999
Continuation In Part 0988485900 · Jun 18, 2001
Continuation 0979262800 · Feb 22, 2001
Continuation In Part 0966447300 · Sep 18, 2000
Continuation 0869605100 · Aug 13, 1996
Provisional Application 6018522100 · Feb 25, 2000
Provisional Application 6007854500 · Mar 19, 1998
Provisional Application 6004794100 · May 29, 1997
Provisional Application 6004781800 · May 28, 1997
Provisional Application 6004784800 · May 28, 1997
Provisional Application 6004784100 · May 28, 1997
Provisional Application 6004782000 · May 28, 1997
Provisional Application 6003762000 · Feb 12, 1997
Provisional Application 6003778200 · Feb 12, 1997
Provisional Application 6002973400 · Oct 23, 1996
Provisional Application 6002973500 · Oct 23, 1996
Provisional Application 6002960000 · Oct 23, 1996
Provisional Application 6002960200 · Oct 23, 1996
Related Publication 20080058910A1 · Mar 6, 2008