Paper
2 April 1998 Microwave occlusion of the rabbit uterine horn
B. Stuart Trembly, Paul D. Manganiello M.D., P. Jack Hoopes D.V.M.
Author Affiliations +
Proceedings Volume 3249, Surgical Applications of Energy; (1998) https://doi.org/10.1117/12.304360
Event: BiOS '98 International Biomedical Optics Symposium, 1998, San Jose, CA, United States
Abstract
A microwave applicator was developed and tested in a rabbit model, with the goal of developing a system to sterilize a human female through a transvaginal-transcervical- transuterine retrograde technique. The clinical procedure wold create an occluding lesion in the isthmic portion of the human fallopian tube in an out-patient procedure. The microwave applicator consisted of a flexible coaxial cable from which the inner conductor was extended to form a resonant monopole antenna. The coaxial cable and monopole were placed within a sealed teflon catheter of 3 mm diameter. A second parallel catheter of 1 mm diameter was secured to the first to provide guidance for a microwave- immune thermometry probe. Following laparotomy exposure, the applicator was placed with a transvaginal-transcervical retrograde technique in each uterine horn in succession. The temperature was elevated to 65 degree(s)C for 5 minutes. Thirty days following treatment, there was marked constriction and discoloration of the treated site as well as significant architectural effacement of the tissue composing the uterine wall. In some cases, the uterine lumen was completely occluded. Future experiments will assess the tissue response to smaller thermal doses.
© (1998) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
B. Stuart Trembly, Paul D. Manganiello M.D., and P. Jack Hoopes D.V.M. "Microwave occlusion of the rabbit uterine horn", Proc. SPIE 3249, Surgical Applications of Energy, (2 April 1998); https://doi.org/10.1117/12.304360
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Cited by 2 scholarly publications.
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KEYWORDS
Microwave radiation

Tissues

Fallopian tube

Antennas

Uterus

Temperature metrology

Image segmentation

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