新定义的电磁硬脑膜装甲可作为大脑保护脑球:初步理论分析

M. Aydin, Mustafa Can Güler, Mehmet Hakan Şahi̇n, Erkan Cem Celik, O. N. Keleş
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引用次数: 0

摘要

背景:产生电场和磁场的系统必须绝缘才能保持平衡。可以肯定的是,大脑具有非常强烈的电场和磁场,它周围的硬脑膜和脑脊液(CSF)是绝缘的。本文将根据数学和物理学定律推测这些结构的电物理特性。材料与方法另一方面,在人体样本中,利用头皮毛发数量和头皮厚度、电导率、头骨厚度、颅脑容积比、循环 CSF 的蛛网膜下腔厚度和脑室容积等参数来研究脑电图波的形态特征。由于本研究是推测性的,因此没有对数据进行详细的统计评估。研究结果脑电图波的几何形状、头皮厚度和毛发数量、头骨厚度、蛛网膜下腔深度、脑室容积、硬脑膜厚度。在囟门闭合的儿科病例或有骨缺损的成人病例中,脑电图伪像过多。据统计,安全限值在 0.05
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Newly Defined Electromagnetic Dural Armor Functioned as a Brain Protecting Cerebrosphere: A Preliminary Theoretical Analysis
Background: Electric and magnetic field-generating systems must be insulated in order to maintain their balance. It is certain that the brain, which has a very intense electric and magnetic field, is insulated by the dura mater and cerebrospinal fluid (CSF) that surround it. In this article, the electrophysical properties of these structures will be postulated in accordance with the laws of mathematics and physics. Material and Methods: In human samples, on the other hand, the morphological features of EEG waves were examined with parameters such as the number of scalp hairs and scalp thickness, conductivity, skull thickness, ratios between cranial and brain volumes, and the thickness of the subarachnoid space where CSF circulates, and ventricular volumes. Since this study is postulative, the data were not detailed by statistical evaluation. Results: With the geometric shapes of EEG waves; scalp thickness and number of hairs, skull thickness, depth of subarachnoid space, ventricular volumes, thickness of dura mater. EEG artifacts were excessive in pediatric cases with closed fontanelles or in adults with bone defects. There were statistically varying safety limits between 0.05
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