首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Neural network-based evaluation of chronic non-thermal effects of modulated 2450 MHz microwave radiation on electroencephalogram.
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Neural network-based evaluation of chronic non-thermal effects of modulated 2450 MHz microwave radiation on electroencephalogram.

机译:基于神经网络的2450 MHz调制微波辐射对脑电图的慢性非热效应的评估。

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摘要

The effects of chronic exposure (2 h daily for 21 days) of 1 kHz square wave-modulated 2450 MHz microwave radiation (non-thermal) on sleep-EEG, open field behavior, and thyroid hormones (T(3), T(4), and TSH) have been analyzed in an animal model. Results revealed significant changes in these pathophysiological parameters (p < 0.05 or better), except body temperature, grooming behavior, and TSH levels. The sleep-EEG power spectrum data for slow wave sleep (SWS), rapid eye movement (REM) sleep, and awake (AWA) states in two experimental groups of rats (microwave exposed and the control) were tested by an artificial neural network (ANN), containing 60 nodes in input layer, weighted from power spectrum data from 0 to 30 Hz, 18 nodes in hidden layer and an output node. The target output values for this network were determined with another five-layered neural network (with the structure of 6-14-1-14-6). The input and output of this network was assigned with the six confirmed pathophysiological changes. The most important feature for chronic exposure of 2450 MHz microwave exposure and for control subjects was extracted from the third layer single neuron and used as the target value for the three-layered ANN. The network was found effective in recognizing the EEG power spectra with an average of 71.93% for microwave exposure and 93.13% for control subjects, respectively. However, the lower percentage of pattern identification agreement in the microwave-exposed group in comparison to the control group suggest only mild effects of microwave exposure with this experimental setup.
机译:1 kHz方波调制的2450 MHz微波辐射(非热)的长期暴露(每天2小时,每天21天)对睡眠脑电图,开放视野行为和甲状腺激素的影响(T(3),T(4 )和TSH)已在动物模型中进行了分析。结果显示,除了体温,修饰行为和TSH水平外,这些病理生理参数发生了显着变化(p <0.05或更高)。通过人工神经网络测试了两个实验组大鼠(微波暴露和对照组)的慢波睡眠(SWS),快速眼动(REM)睡眠和清醒(AWA)状态的sleep-EEG功率谱数据( ANN),在输入层包含60个节点,从0到30 Hz的功率谱数据加权,在隐藏层包含18个节点,还有一个输出节点。该网络的目标输出值由另一个五层神经网络(结构为6-14-1-14-6)确定。该网络的输入和输出分配了六个已确认的病理生理变化。从第三层单神经元提取了2450 MHz微波长期暴露和对照组的最重要特征,并将其用作三层ANN的目标值。发现该网络可有效识别EEG功率谱,微波暴露平均为71.93%,对照组为93.13%。但是,与对照组相比,微波暴露组中模式识别一致性的百分比较低,表明在此实验设置下,微波暴露的影响很小。

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