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Interaction of wireless communication fields with blood-brain barrier of laboratory animals

机译:无线通信领域与实验动物血脑屏障的相互作用

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摘要

The blood-brain barrier is an anatomic and physiologic complex associated with the cerebral microvasculature. Anatomically, it consists of tight junctions between the endothelial cells of the blood capillaries, which is enveloped by a network of astrocytic foot processes. Many investigators have published studies on the effect of radio waves on the blood-brain barrier of animals, with varied results. Several reports during the past decade have observed leakages of endogenous serum albumin in blood, suggested that repeated exposure to microwave radiation from cellular mobile telephones could alter the permeability of the blood-brain barrier at SARs that are well below the maximal permissible level for mobile telephones. While an effort to confirm had failed at SARs of 0.3–1.5 W/kg, it had confirmed extravasation of serum albumin at 7.5 W/kg: a level about four times greater than the maximal permissible level for cellular mobile telephones. Currently, there are considerable interests from several laboratories around the world to replicate the reported occurrence of abnormal neurons in the rat brain — resulting from leakages of endogenous serum albumin — following low-level RF exposure. This review examines the methodologies and conditions under which BBB permeability changes have been reported to occur.
机译:血脑屏障是与脑微血管相关的解剖和生理复合体。从解剖学上讲,它由毛细血管内皮细胞之间的紧密连接组成,该连接被星形胶质足突网络覆盖。许多研究者发表了有关无线电波对动物血脑屏障影响的研究,结果各不相同。在过去的十年中,有几份报告观察到血液中内源性血清白蛋白的泄漏,这表明,反复暴露于蜂窝移动电话的微波辐射下可能会改变SAR处血脑屏障的渗透率,该渗透率远低于移动电话的最大允许水平。 。虽然在SAR为0.3–1.5 W / kg时无法进行确认的努力,但它已确认在7.5 W / kg的情况下渗出了血清白蛋白:该水平大约是蜂窝电话的最大允许水平的四倍。当前,全世界的一些实验室都对复制低水平的RF暴露引起的大鼠脑中异常神经元的发生(由内源性血清白蛋白泄漏引起的)进行复制表示了浓厚的兴趣。这篇综述检查了据报道发生血脑屏障通透性改变的方法和条件。

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