Claims
- 1. A method for treating urinary incontinence, the method comprising:directing energy from a probe, through an intermediate tissue, and into target tissue, wherein the energy heats the target tissue so that the target tissue contracts without ablating the target tissue, and so that the contracted target tissue inhibits the incontinence; and cooling the intermediate tissue with the probe to avoid injuring the intermediate tissue when the target tissue is heated by the probe, wherein cooling begins before the directing energy step.
- 2. A method as claimed in claim 1, wherein the energy directing step comprises energizing an electrode.
- 3. A method as claimed in claim 1, comprising cooling the tissue before and after the directing energy step.
- 4. A method as claimed in claim 1, wherein microwave or ultrasound energy heats the target tissue.
- 5. A method as claimed in claim 1, further comprising injecting an insulating fluid into the space surrounding the target tissue so as to avoid injuring organs and other tissue surrounding the target tissue opposite the intermediate tissue.
- 6. A method as claimed in claim 1, further comprisinginserting th probe into a vagina, the target tissue comprising endopelvic fascia and the intermediate tissue comprising vaginal wall.
- 7. A method as claimed in claim 6, wherein the directing energy step is performed so as to reposition a bladder or bladder neck as a therapy for urinary stress incontinence.
- 8. A method as claimed in claim 1, wherein the energy directing step comprises energizing bipolar electrodes.
- 9. A method as claimed in claim 8, further comprising selecting a spacing and sizing of the bipolar electrodes to control the penetration of the bipolar energy.
- 10. A method for directing energy into a target tissue of a patient body through an intermediate tissue so as to treat urinary incontinence, the method comprising:electrically coupling a first electrode to the patient body; electrically coupling a second electrode to the intermediate tissue, the second electrode mounted on a probe; pre-cooling the intermediate tissue with the probe; and applying an electrical potential between the first and second electrodes, wherein an electrode surface of the second electrode is sufficiently large and flat to provide a current flux that extends through the pre-cooled intermediate tissue and into the target tissue so that the current flux heats the target tissue and the target tissue inhibits the incontinence.
- 11. A method as claimed in claim 10, further comprising inserting the probe into an orifice of the patient body to access the intermediate tissue surface, and insulating the target tissue opposite the intermediate tissue.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is related to U.S. patent applications Ser. No. 08/910,370, Ser. No. 08/910,360, and Ser. No. 08/910,371, all filed concurrently herewith, the full disclosures of which are incorporated herein by reference.
US Referenced Citations (106)
Foreign Referenced Citations (18)
Number |
Date |
Country |
WO 9307815 |
Apr 1993 |
WO |
9315664 |
Aug 1993 |
WO |
WO 9600041 |
Jan 1996 |
WO |
WO 9600042 |
Jan 1996 |
WO |
WO 9634568 |
Nov 1996 |
WO |
WO 9715238 |
May 1997 |
WO |
WO 9720510 |
Jun 1997 |
WO |
WO 9724992 |
Jul 1997 |
WO |
WO 9732532 |
Sep 1997 |
WO |
WO 9739688 |
Oct 1997 |
WO |
WO 9743970 |
Nov 1997 |
WO |
WO 9743971 |
Nov 1997 |
WO |
WO 9805286 |
Feb 1998 |
WO |
WO 9805380 |
Feb 1998 |
WO |
WO 9807468 |
Feb 1998 |
WO |
WO 9838936 |
Sep 1998 |
WO |
WO 9916502 |
Apr 1999 |
WO |
WO 0122897 |
Apr 2001 |
WO |
Non-Patent Literature Citations (1)
Entry |
Hayes et al., “Prediction of Transient Temperature Fields and Cumulative Tissue Destruction for Radio Frequency Heating of a Tumor,” Medical Physics, University of Texas, Austin, Texas; 12 (6) :1985. |