雷电电流相关人体头部模型琼脂糖凝胶的电化学表征研究

N. Yusof, E. Supriyanto, D. Dewi
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引用次数: 0

摘要

生物医学领域中出现的问题影响着能够解决特殊问题的工程装置的发展。雷击伤害是雷电灾害发生的特殊情况之一,其原因尚不清楚。组织诊断程序对疾病的治疗是有益的;因此,在电化学测量中需要对这一过程进行进一步的研究。组织的电学性质是研究人体电流分布的主要性质,而人体电流分布与雷击电流有关。根据以往的研究,人体头部一直是雷击伤害的常见接触点。由此,引出相应的雷击经人体损伤的研究。本论文主要研究脑、颅骨和头皮幻影等组织样本的制备作为人体头部模型。利用电化学阻抗谱(EIS)在100Hz ~ 1MHz的频率范围内对制备过程进行表征,以识别组织模体样品的电学特性,并通过组织模体样品的扩散速率分析离子电荷分布,从而得出组织模体样品的稳定性姿态。通过测量来确定影响电解液浓度的电导率、电阻率、相对介电常数和耗散系数。通过本研究,验证了该材料的电学性能与以往的研究结果相当。同时也证明了在较高浓度的溶剂中扩散速率加快,证实了所有组织模态根据组织性质都是稳定的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of electrochemical characterization of agarose gel for model of human head correlated to lightning currents
Problems arisen in biomedical field have given an influence to the development of engineering devices which can especially solve special problems. Lightning injury is one of the special cases occurred that has some reasons which are not yet understood. Tissue diagnostic procedure is really beneficial in treating the diseases; hence further study concerning this procedure is required in electrochemical measurements. Electrical properties of tissue are the primary properties for the study in the current distribution through human body which is correlated to lightning current. Based on previous studies, human head is always the common contact point of lightning injury. Thus, this leads to the investigations of corresponding lightning injury through human body. This thesis focuses on the fabrication of tissue samples including the brain, skull and scalp phantom as a human head model. The fabrication is characterized based on electrochemical impedance spectroscopy (EIS) measurements against the frequency range from 100Hz to 1MHz to recognize the electrical properties and analyze the ion charge distribution by the diffusion rate of tissue phantom samples to contribute the stability poses. The measurements are conducted to determine the electrical conductivity, resistivity, relative permittivity and dissipation factor that affect the concentration of electrolyte. From this research, it is verified that the electrical properties show a comparable result with previous studies. It is also proven that the diffusion rate accelerates in higher concentration of solvent, confirming that all tissue phantoms are stable according to the tissue properties.
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