首页> 外文会议>Engineering in Medicine and Biology Society, 1998. Proceedings of the 20th Annual International Conference of the IEEE >Human responses to weak EMF are biologically plausible because 'ordinary' electrically excitable channels can account for an extreme sensitivity to electric fields in sharks and related species
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Human responses to weak EMF are biologically plausible because 'ordinary' electrically excitable channels can account for an extreme sensitivity to electric fields in sharks and related species

机译:人类对弱电动势的反应在生物学上是合理的,因为“普通”的电激发通道可以解释对鲨鱼和相关物种电场的极端敏感性

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The possibility that humans could respond to weak electric or magnetic fields (EMF) is often dismissed on the basis that our species does not have the type of cellular or molecular apparatus that enables other animals to be "hypersensitive" to electric fields. In this paper we examine the proposition that extreme electrical hypersensitivity in sharks and similar species could be accomplished using rather "ordinary" ionic channels arranged in favorable geometries so as to produce an avalanching response. In particular, we have used GENESIS programs to model shark electroreceptor cells with a variety of calcium channels and realistic geometries. We have found that certain of these arrangements allow the model cell to be almost as electrosensitive as are the real cells. Among other things, these results imply that human cells having similar "ordinary" channels could have architectures that make them responsive to fairly weak EMF.
机译:人们常常以人类没有能够使其他动物对电场“过敏”的细胞或分子装置类型为基础,来排除人类对弱电场或电磁场(EMF)做出反应的可能性。在本文中,我们研究了以下命题:可以使用排列在有利几何形状中的“普通”离子通道来完成鲨鱼和类似物种的极端电超敏反应,从而产生雪崩响应。特别是,我们已使用GENESIS程序对具有多种钙通道和实际几何形状的鲨鱼电感受器细胞进行建模。我们已经发现,这些布置中的某些布置使得模型单元几乎与真实单元一样对电敏感。这些结果尤其暗示具有相似“普通”通道的人类细胞可能具有使其对相当弱的EMF做出响应的体系结构。

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