RESOURCE-EFFECTIVE SOLUTIONS TO ADDRESS HYPOMAGNETIC INFLUENCE ON HUMAN BODY

M. Kartashova, A. Artamonov, E. Plotnikov
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Abstract

Relevance: Hypomagnetic conditions have undesirable effects concerning various fields of science and technology. In biology, they cause adverse circumstances, which affect the functioning of living organisms. However, humans experience hypomagnetic fields (HMF) during space exploration, through some branches of production, military objects, and community transport. On the other hand, various high-precision technologies must have or operate under a hypomagnetic field. Aims: We aimed to provide a critical analysis of several ways of preparing hypomagnetic field, differences between hypomagnetic chambers and Helmholtz coils, and review of thematic patents and articles available in the Russian Federation. Methods: We structured and analyzed modern achievements in HMF. Experimental studies on living organisms were evaluated because they show different technical conditions connected to the theme of the hypomagnetic field. Results: Based on this analysis, a new resource-effective technology, which reveals several concerns on the hypomagnetic field, was offered. This technology is essential to be used during preparations for space missions, which require products with special necessities in terms of effectiveness and reliability. Conclusion: We summarized and correlated the results of experiments with possible magnetic conditions, which can occur during space missions and in some military and civil applications. Protection strategies from hypomagnetic conditions were considered. Novel experiments regarding realistic conditions were suggested.
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解决低磁对人体影响的资源有效解决方案
相关性:低磁条件对科学技术的各个领域都有不良影响。在生物学中,它们造成不利的环境,影响生物体的功能。然而,人类在太空探索过程中,通过一些生产部门、军事物体和社区运输,体验到低磁场(HMF)。另一方面,各种高精度技术必须具有或在低磁场下运行。目的:我们旨在提供几种制备次磁场的方法的批判性分析,次磁室和亥姆霍兹线圈之间的差异,并审查俄罗斯联邦现有的专题专利和文章。方法对现代HMF研究成果进行梳理和分析。对生物体的实验研究进行了评价,因为它们显示了与低磁场主题相关的不同技术条件。结果:在此基础上,提出了一种资源有效的新技术,揭示了对低磁场的几个关注。这项技术在空间任务的准备工作中是必不可少的,这需要在有效性和可靠性方面具有特殊必需品的产品。结论:我们总结了实验结果,并将其与可能发生在航天任务和一些军事和民用应用中的磁条件进行了关联。考虑了对低磁条件的保护策略。提出了符合现实条件的新颖实验。
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审稿时长
7 weeks
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