Galvin M J, Dutton M S, McRee D I
Bioelectromagnetics. 1982;3(2):219-26. doi: 10.1002/bem.2250030206.
The chronotropic and inotropic effects of 2.45-GHz continuous wave (CW) microwave radiation were investigated in the isolated spontaneously beating rat atria. Isolated atria were placed in specially designed tubes inserted into a waveguide exposure system. The atria were then irradiated for a period of 30 min, followed by a 30-min recovery period. The control atria were prepared simultaneously and sham exposed. Experiments were conducted at two temperatures, 22 and 37 degrees C, and two specific absorption rates, 2 mW/g and 10 mW/g. At both temperatures the rate of atrial contraction was not altered by a 30-min exposure at either 2 or 10 mW/g. The average rate (beats per min) was approximately 100 for both the control and exposed atria at 22 degrees C and 215 beats per min for both the control and exposed atria at 37 degrees C. In addition, no inotropic effects on the spontaneously beating atria were noted at any exposure level. These data suggest that 2.45-GHz CW microwave radiation at these intensities has no overt effect on these variables in isolated rat atria.
研究了2.45-GHz连续波(CW)微波辐射对离体大鼠自发搏动心房的变时性和变力性作用。将离体心房置于插入波导暴露系统的特制管中。然后对心房进行30分钟的照射,随后是30分钟的恢复期。同时制备对照心房并进行假暴露。实验在22℃和37℃两个温度以及2 mW/g和10 mW/g两个比吸收率下进行。在两个温度下,2 mW/g或10 mW/g的30分钟暴露均未改变心房收缩率。在22℃时,对照心房和暴露心房的平均速率(每分钟搏动次数)约为100,在37℃时,对照心房和暴露心房的平均速率均为每分钟215次搏动。此外,在任何暴露水平下均未观察到对自发搏动心房的变力性作用。这些数据表明,这些强度的2.45-GHz CW微波辐射对离体大鼠心房的这些变量没有明显影响。