Extracellular local field potentials in men and women based on a theoretical model of voltage decrease as a function of distance

H. Koch, C. Raschka
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Abstract

Extracellular microelectrodes determine the field potential difference adjacent to the neuron and depend on the composition of the tissue, including ohmic resistance and distance from the source. Based on theoretical aspects, a reciprocal voltage versus distance model is postulated, which was assessed by means of clinical neurographical data in men and women. Data of women showed higher voltages and could be slightly better fitted to the model. Voltage amplitude and to a lesser extent rise time (RT) were the only action potential characteristics which could predict the gender in a discriminant analysis model. In conclusion, neurographical studies may be a suitable option to assess ohmic resistance of tissue and composition of tissue in addition to bioimpedance (BIA) methods.
基于电压随距离降低的理论模型的男性和女性细胞外局部场电位
细胞外微电极决定神经元附近的场电位差,并取决于组织的组成,包括欧姆电阻和与源的距离。基于理论方面,假设了电压与距离的倒数模型,并通过男性和女性的临床神经学数据进行了评估。女性的数据显示出更高的电压,可以稍微更好地适应模型。在判别分析模型中,电压幅值和上升时间(RT)是唯一能预测性别的动作电位特征。总之,除了生物阻抗(BIA)方法外,神经学研究可能是评估组织欧姆电阻和组织组成的合适选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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