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皮肤电传导测量用电极凝胶研究。

A study on electrode gels for skin conductance measurements.

机构信息

Department of Clinical and Biomedical Engineering, Oslo University Hospital-Rikshospitalet, Norway.

出版信息

Physiol Meas. 2010 Oct;31(10):1395-410. doi: 10.1088/0967-3334/31/10/008. Epub 2010 Sep 1.

Abstract

Low-frequency skin conductance is used within several clinical applications and is mainly sensitive to sweating and the moisture content of the stratum corneum, but also how electrodes introduce changes in the electrical properties. Four electrode gels were investigated with regard to sorption characteristics and electrical properties. Skin conductance time series were collected from 18 test subjects during relaxation, exercise and recovery, wearing different pairs of electrodes contralaterally on the hypothenar and the T9 dermatome. Pressure test was applied on the T9 electrodes. Impedance frequency sweeps were taken on the T9 electrodes the same day and the next, parameterized to the Cole model. ANOVA on the initial skin conductance level change, exercise response amplitude, recovery offset and pressure-induced changes revealed significant differences among gel types. The wetter gels caused a higher positive level change, a greater response amplitude, larger recovery offset and greater pressure-induced artifacts compared to the solid gels. Sweating on the T9 site led to negative skin conductance responses for the wetter gels. Correlations were found between the desorption measurements and the initial skin conductance level change (hypothenar: R = 0.988 T9: R = 0.901) RM-ANOVA on the Cole parameters revealed a significant decrease in R(s) of the most resistive gel. Clinical implications are discussed.

摘要

低频皮肤电导被应用于多种临床应用中,主要对出汗和角质层的水分含量以及电极如何引入电特性变化敏感。本文研究了 4 种电极凝胶的吸附特性和电特性。在放松、运动和恢复期间,让 18 名测试对象佩戴不同对的电极,分别位于小鱼际和 T9 皮区的对侧,共采集了 18 名测试对象的皮肤电导时间序列。对 T9 电极进行压力测试。当天和次日在 T9 电极上进行阻抗频率扫描,用 Cole 模型进行参数化。对初始皮肤电导水平变化、运动反应幅度、恢复偏移和压力引起的变化的方差分析显示,凝胶类型之间存在显著差异。与固体凝胶相比,较湿的凝胶导致更高的正向水平变化、更大的反应幅度、更大的恢复偏移和更大的压力引起的伪影。较湿的凝胶在 T9 部位引起负的皮肤电导反应。在去吸附测量和初始皮肤电导水平变化之间发现了相关性(小鱼际:R = 0.988;T9:R = 0.901)。Cole 参数的 RM-ANOVA 显示,最具电阻性的凝胶的 R(s)显著下降。讨论了临床意义。

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