神经中的螺旋双曲磁场,当它们作为电流导体时

Dr. Jesús M. González- González
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引用次数: 1

摘要

神经磁场的知识对于应用外部电磁疗法来再生损伤的神经是有意义的。这项工作的目的是在双曲医学的概念内,对神经作为电流导体时产生的磁场进行理论研究,从而确定它们的双曲曲线是怎样的。利用互联网搜索引擎和各种数据库(Medline, Google Scholar, Researchgate, Scielo),对神经作为电流导体时产生的电磁场相关的科学论文进行了书目审查。对于这项工作,我们理论上使用了电磁学中的右手定则。所以,我们把它应用到一个神经模型上,来确定它的双曲磁场是什么样的。结论是:a)双曲曲线在自然界和人体生理学中非常普遍。电磁场的力线通过双曲曲线作用于人体生理。b)人的生理和神经可以像磁铁一样被分割成更小的碎片,并保持相同的特性。c)根据电磁学中的右手定则,神经碎片是一根电流导线,可以产生横向磁场。磁场有沿逆时针螺旋路径的双曲力线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Helical Hyperbolic Magnetic Field in Nerves, when they Act as Current Conductors
Knowledge of the magnetic field of a nerve is of interest for the application of external electromagnetic therapy to regenerate injured nerves. The aim of this work is to the theoretical study of the magnetic field generated in the nerves when they act as current conductors and thus determine how their hyperbolic curves are, within the concept of hyperbolic medicine. Using Internet search engines and various databases (Medline, Google Scholar, Researchgate, Scielo), a bibliographic review of scientific papers related to the electromagnetic field generated in the nerves, when they act as current conductors, has been carried out. For this work we use, theoretically, the right-hand rule in electromagnetism. So, we apply it to a model nerve, to determine what its hyperbolic magnetic field is like. The conclusions are: a) Hyperbolic curves are very common in nature and human physiology. The lines of force of an electromagnetic field act on human physiology through hyperbolic curves. b) Human physiology and a nerve can be divided into smaller fragments like a magnet do and maintain their same characteristics. c) A nerve fragment is a conducting wire of electric current that generates a transversal magnetic field, according to the right-hand rule in electromagnetism. That magnetic field has hyperbolic lines of force that follow a counterclockwise helical path.
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