基于肌电信号的电皮肤电阻(GSR)应力测量与分析

Boomika S, K. M., A. M, Munusamy S
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引用次数: 0

摘要

世界上最常见的疾病是紧张性头痛(TTH)。使用生物反馈(BF)和肌电图(EMG)来研究疾病的影响,以确定患者的头痛程度。但是,在TTH中有任何音频,视觉,联合肌电或GSR BF分析。为此,本研究将测试TTH患者的皮肤电阻抗和肌电生物反馈的有效性,并分析和评估患者的听觉、感知和听觉感知的有效性。在一个特定数据集中的240名受访者中,140名是女性,其余100名是男性。目前随机分为7组,包括对照组(n = 26)、肌电反馈听觉组(EMGa) (n = 28)、视觉组(EMGv) (n = 27)、视听联合组(EMGav) (n = 28)和皮肤电阻抗生物反馈听觉组(GSRa) (n = 28)。虽然每个人在安静的环境中都有15个单独的30分钟生物反馈程序,肌电图和GSR生物反馈也是检查TTH的有效工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stress Measurement and Analysis of Galvanic Skin Resistance (GSR) using EMG Signal
The most prevalent condition in the world is Tension-Type Headache (TTH). The impact of the illness was investigated using biofeedback (BF) and electromyography (EMG) to determine the person's headache. There has been any audio, visual, combined EMG or GSR BF analysis in TTH, though. In order to do this, the proposed study will test the effectiveness of galvanic skin resistance and electromyography biofeedback in TTH patients as well as analyze and assess the effectiveness of patients' audio, perception, and audio-perception. Out of 240 respondents in a particular dataset, 140 are female and the remaining 100 are male. Currently, seven groups were randomly allocated, including a control group (n = 26), electromyography feedback auditory (EMGa) (n = 28), visual (EMGv) (n = 27), combination audio-visual (EMGav) (n = 28), and galvanic skin resistance biofeedback auditory (GSRa) (n = 28). While every individual has 15 separate 30-minute biofeedback procedures in a quiet environment, EMG and GSR biofeedback are effective tools for examining TTH too.
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