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Lessons and Perspectives from a 25-Year Bioelectromagnetics Research Program

机译:25年生物电磁学研究计划的教训和观点

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The question of whether electromagnetic fields from electric power or telecommunications systems can be linked unequivocally to health detriments has occupied scientific research endeavors for nearly half a century. For 25 years, the bioelectromagnetic research group at Swinburne University in Melbourne, Australia, has pursued a series of investigations with relevant endpoints, such as neurophysiological and neuropsychological effects, cell calcium level changes, proliferation, and genotoxic effects. Most have shown no significant changes due to fields, however, in some pilot studies significant changes were revealed, but in most cases these were not replicated in follow-up studies. This highlights a feature of this research area, generally; the unambiguous identification of small changes in noisy data where the understanding of possible interaction mechanisms is lacking. On the other hand, mathematical modelling studies, particularly with respect to fields near metallic implants, in workers exposed to fields in harsh environmental conditions and at very high frequencies (THz), continue to add to the expanding knowledge database on the characteristics of the complex electromagnetic environment we live in today.
机译:来自电力或电信系统的电磁场是否可以明确地与健康危害联系在一起的问题已经占据了近半个世纪的科学研究努力。 25年来,澳大利亚墨尔本斯威本大学的生物电磁研究小组进行了一系列相关研究,包括神经生理学和神经心理学作用,细胞钙水平变化,增殖和遗传毒性作用。由于田野的影响,大多数都没有显示出明显的变化,但是,在一些试点研究中,发现了显着的变化,但是在大多数情况下,这些都没有在后续研究中重复。通常,这突出了该研究领域的一个特征。缺乏对可能的交互机制的了解,可以清楚地识别出噪声数据中的微小变化。另一方面,数学建模研究(尤其是针对金属植入物附近的田地,在恶劣的环境条件下以及在非常高的频率(THz)下暴露于田地中的工人的研究)继续增加了有关复合物特性的知识数据库我们今天生活在电磁环境中。

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