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Results of a United States and Soviet Union joint project on nervous system effects of microwave radiation.

机译:美国和苏联关于微波辐射对神经系统影响的联合项目的结果。

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摘要

During the course of a formal program of cooperation between the United States and the Soviet Union concerning the biological effects of physical factors in the environment, it was concluded that duplicate projects should be initiated with the general goal of determining the most sensitive and valid test procedures for evaluating the effects of microwave radiation on the central nervous system. This report details an initial step in this direction. Male rats of the Fischer 344 strain were exposed or sham exposed to 10 mW/cm2 continuous wave microwave radiation at 2.45 GHz for a period of 7 hr. Animals were subjected to behavioral, biochemical, or electrophysiological measurements during and/or immediately after exposure. Behavioral tests used were passive avoidance and activity in an open field. Biochemical measurements were ATPase (Na+, K+; Mg2+, Ca2+) and K+ alkaline phosphatase activities. Electrophysiological measurements consisted of EEG frequency analysis. Neither group observed a significant effect of microwave irradiation on open field activity. Both groups observed changes in variability of the data obtained using the passive avoidance procedure, but not in the same parameters. The U.S. group, but not the USSR group, found significantly less Na+,K+-ATPase activity in the microwave-exposed animals compared to the sham exposed animals. Both groups found incidences of statistically significant effects in the power spectral analysis of EEG frequency, but not at the same frequency. The failure of both groups to substantiate the results of the other reinforces our contention that such duplicate projects are important and necessary.
机译:在美国和苏联之间关于环境中物理因素的生物效应的正式合作计划的过程中,得出的结论是,应该启动重复的项目,其总体目标是确定最敏感和有效的测试程序用于评估微波辐射对中枢神经系统的影响。该报告详细说明了朝此方向迈出的第一步。将Fischer 344品系的雄性大鼠暴露或假暴露于2.45 GHz的10 mW / cm2连续波微波辐射中7小时。在暴露期间和/或暴露后立即对动物进行行为,生化或电生理测量。使用的行为测试是被动回避和在露天场所的活动。生化指标为ATPase(Na +,K +; Mg2 +,Ca2 +)和K +碱性磷酸酶活性。电生理测量包括脑电频率分析。两组均未观察到微波辐射对明场活动的显着影响。两组均观察到使用被动回避程序获得的数据的变异性变化,但参数不同。美国组而不是苏联组发现,与假冒动物相比,微波暴露动物的Na +,K + -ATPase活性明显降低。两组均在脑电图频率的功率谱分析中发现具有统计学显着影响的发生率,但频率不同。两组都未能证实另一组的结果,这进一步加剧了我们的争议,即此类重复的项目是重要且必要的。

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