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Monitoring the Radiation Injury of Red Blood Cells to Micowave Radiation with Different Power Density

机译:监测不同功率密度的红细胞对微波辐射的辐射损伤

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Multiple state-of-the-art techniques, such as multi-dimensional micro-imaging, fast multi-channel micro-spetrophoto-metry, and dynamic micro-imaging analysis, were used to dynamically investigate various effects of cell under the 900MHzelectromagnetic radiation. Cell changes in shape, size under different power density electromagnetic waves radiation were presented in this paper. Experimental results indicated that the isolated human red blood cells (RBCs) do not have obviously real-time responses to the ultra-low density (15 μW/cm2, 31 μW/cm2) electromagnetic wave radiation when the radiation time is not more than 30 minutes; however, the cells do have significant reactions in shape, size to the electromagnetic waves radiation with power densities of 1 mW/cm2and 5 mW/cm2. The data reveals the possible influences and statistical relationships among living human cell functions, radiation amount and exposure time with high-frequency electromagnetic waves. The results of this study may be significant on protection of human being and other living organisms against possible radiation affections of the high-frequency electromagnetic waves.
机译:多维微成像,快速多通道微分光光度法和动态微成像分析等多种最新技术被用来动态研究900MHz电磁辐射下细胞的各种作用。提出了在不同功率密度的电磁波辐射下细胞的形状,大小的变化。实验结果表明,当辐射时间不超过30时,分离的人红细胞(RBC)对超低密度(15μW/ cm2,31μW/ cm2)电磁波辐射没有明显的实时响应。分钟;但是,电池的形状,大小确实对电磁波辐射有明显的反应,功率密度分别为1 mW / cm2和5 mW / cm2。数据揭示了人类活细胞功能,辐射量和高频电磁波暴露时间之间可能的影响和统计关系。这项研究的结果可能对保护人类和其他生物免受高频电磁波可能的辐射影响具有重要意义。

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