Temperature Regulation in the Unrestrained Rabbit during Exposure to 600 MHz Radiofrequency Radiation
- 1 January 1986
- journal article
- research article
- Published by Taylor & Francis in International Journal of Radiation Biology
- Vol. 49 (6) , 987-997
- https://doi.org/10.1080/09553008514553211
Abstract
Six male New Zealand white rabbits were individually exposed to 600 MHz radiofrequency (RF) radiation for 90 min in a waveguide exposure system at an ambient temperature (Ta) of 20 or 30.degree. C. Immediately after exposure, the rabbit was removed from the exposure chamber and its colonic and ear skin temperatures were quickly measured. The whole-body specific absorption rate (SAR) required to increase colonic and ear skin temperature was determined. At a Ta of 20.degree. C the threshold SAR for elevating colonic and ear skin temperature was 0.64 and 0.26 W/kg, respectively. At a Ta of 30.degree. C the threshold SARs were slightly less than at 20.degree. C, with values of 0.26 W/kg for elevating colonic temperature and 0.19 W/kg for elevating ear skin temperature. The relationship between heat load and elevation in deep body temperature shown in this study at 600 MHz is similar to past studies which employed much higher frequencies of RF radiation (2450-2884 MHz). On the other hand, comparison of these data with studies on exercise-induced heat production and thermoregulation in the rabbit suggest that the relationship between heat gain and elevation in body temperature in exercise and from exposure to RF radiation may differ considerably. When combined with other studies, it was shown that the logarithm of the SAR required for a 1.0.degree. C elevation in deep body temperature of the rabbit, rat, hamster, and mouse was inversely related to the logarithm of body mass. The results of this study are consistent with the conclusion that body mass strongly influences thermoregulatory sensitivity of the aforementioned laboratory mammals during exposure to RF radiation.This publication has 21 references indexed in Scilit:
- Relationship between autonomic and behavioral thermoregulation in the mousePhysiology & Behavior, 1985
- Hyperthermia in Radiofrequency-Exposed Rhesus Monkeys: A Comparison of Frequency and Orientation EffectsRadiation Research, 1985
- Reduced thermal sensitivity in the rabbit by β-endorphin injection into the preoptic/anterior hypothalamusBrain Research, 1984
- Microwaves Induce Peripheral Vasodilation Squirrel MonkeysScience, 1980
- A Review of Selected Biological Effects and Dosimetric Data Useful for Development of Radiofrequency Safety Standards for Human Exposure*Journal of Microwave Power, 1979
- BODY TEMPERATURE REGULATION AND THERMONEUTRALITY IN RATSQuarterly Journal of Experimental Physiology and Cognate Medical Sciences, 1977
- Core temperature: Some shortcomings of rectal temperature measurementsPhysiology & Behavior, 1977
- Thermal responses to preoptic heating and ambient temperature in unrestrained rabbitsJournal of Thermal Biology, 1975
- The rabbit ear as a temperature sensorLife Sciences, 1971
- Influence of Passive and Active Heating on the Temperature Regulation of ManActa Physiologica Scandinavica, 1965