Calcium‐ion efflux from brain tissue: Power‐density versus internal field‐intensity dependencies at 50‐MHz RF radiation
- 1 January 1980
- journal article
- research article
- Published by Wiley in Bioelectromagnetics
- Vol. 1 (3) , 277-283
- https://doi.org/10.1002/bem.2250010304
Abstract
In previous experiments changes were found in calcium-ion efflux from chickbrain tissue that had been exposed in vitro to 147-MHz radiation across a specific range of power densities when the field was amplitude modulated at 16 Hz. In the present study, 50-MHz radiation, similarly modulated as a sinusoid, was found to produce changes in calcium-ion efflux from chick brains exposed in vitro in a Crawford cell. Exposure conditions were optimized to broaden any power-density window and to enhance the opportunity to detect changes in the calcium-ion efflux. The results of a power-density series demonstrated two effective ranges: One spanning a range from 1.44 to 1.67 mW/cm2, and the other including 3.64 mW/cm2, which were bracketed by no-effect results at 0.72, 2.17, and 4.32 mW/cm2. Peaks of positive findings are associated with near-identical rates of energy absorption: 1.4 μW/g at 147 MHz, and 1.3 μW/g at 50 MHz, which indicates that the enhanced-efflux phenomenon is more dependent on the intensity of fields in the brain than on the power density of incident radiation. In addition, the phenomenon appears to occur at multiples of some, as yet unknown, rate of radiofrequency (RF) energy absorption. Because of the extremely small increments of temperature associated with positive findings (< 4 × 10−4°C), and the existence of more than one productive absorption rate, a solely thermal explanation appears extremely unlikely.Keywords
This publication has 6 references indexed in Scilit:
- Broadening of the RF Power-Density Window for Calcium-ion Efflux from Brain TissueIEEE Transactions on Biomedical Engineering, 1981
- Power density, field intensity, and carrier frequency determinants of RF‐energy‐lnduced calcium‐ion efflux from brain tissueBioelectromagnetics, 1980
- Induction of calcium‐ion efflux from brain tissue by radiofrequency radiation: Effect of sample number and modulation frequency on the power‐density windowBioelectromagnetics, 1980
- Induction of calcium‐ion efflux from brain tissue by radio‐frequency radiation: Effects of modulation frequency and field strengthRadio Science, 1979
- The Characteristic Impedance of Rectangular Transmission Lines with Thin Center Conductor and Air DielectricIEEE Transactions on Microwave Theory and Techniques, 1978
- A Versatile Temperature Controlled Exposure Chamber for Microwave Bioeffects ResearchIEEE Transactions on Biomedical Engineering, 1975