Thermo Regulation in the Canine Prostate During Transurethral Microwave Hyperthermia, Part I: Temperature Response
- 1 January 1998
- journal article
- Published by Taylor & Francis in International Journal of Hyperthermia
- Vol. 14 (1) , 29-37
- https://doi.org/10.3109/02656739809018212
Abstract
In this research, experiments were performed to study thermoregulation in the canine prostate during microwave hyperthermia. The transurethral thermal therapy (T3) system provided by Urologix, Inc. was used to impose microwave heating in the canine prostate. Five types of temperature responses to different microwave power levels as time varies, including both damped and sustained oscillatory temperature responses, have been observed. Decreases in prostatic tissue temperature during the microwave heating are believed to be caused by the increase in local blood flow stimulated by tissue temperature elevations. In this study, the characteristic temperatures and time associated with each response. This work will help to provide a better understanding of how tissue temperature is regulated within the canine prostate during transurethral microwave hyperthermia. Results of the present study offer an experimental foundation for a more detailed theoretical analysis on the temperature distribution based on the power input and local blood perfusion.Keywords
This publication has 5 references indexed in Scilit:
- Increased prostatic blood flow in response to microwave thermal treatment: Preliminary findings in two patients with benign prostatic hyperplasiaUrology, 1995
- A new approach for predicting the enhancement in the effective conductivity of perfused muscle tissue due to hyperthermiaAnnals of Biomedical Engineering, 1995
- Temperature mapping in the canine prostate during transurethrally-applied local microwave hyperthermiaThe Prostate, 1992
- A Thermohydrodynamic Solution of Pivoted Thrust Pads: Part II—Static LoadingJournal of Tribology, 1986
- Analysis of Tissue and Arterial Blood Temperatures in the Resting Human ForearmJournal of Applied Physiology, 1948