Bari Dindar S, Aldosky Haval Y Yacoob, Tronstad Christian, Kalvøy Håvard, Martinsen Ørjan G
Department of Physics, Faculty of Science, University of Zakho, Zakho, Iraq.
Department of Physics, College of Science, University of Duhok, Duhok, Iraq.
Skin Pharmacol Physiol. 2018;31(6):298-307. doi: 10.1159/000492275. Epub 2018 Sep 4.
BACKGROUND/AIM: Electrodermal activity (EDA) is a widely used measure in psychophysiological research, and its use in wearable devices has grown in recent times. It is recommended to have proper conditions for EDA measurement, and skin hydration is one factor that has a significant influence. It is, however, not known to what extent the ambient humidity influences the recording. This study explored the influence of relative humidity (RH) on EDA levels, and also the responses using a new technique for simultaneous recording of all measures of EDA: skin conductance (SC), skin susceptance (SS), and skin potential (SP) at the same skin site.
A total of 10 healthy subjects were exposed to environments of low and high RH while EDA measures were recorded, including cognitive, visual and breathing stimuli for evoking electrodermal responses of different origin. EDA levels and responses were compared between the two humidity levels for all stimuli and all EDA measures.
It was found that EDA levels, in particular for SC and SS, were significantly increased during high humidity exposure, but that the change in EDA responses (SC, SS, and SP) was not statistically significant (p > 0.05, paired t test).
This suggests that ambient humidity influences the recording of EDA levels and is important to consider when these parameters are used, but is not important in the recording or analysis of EDA responses.
背景/目的:皮肤电活动(EDA)是心理生理学研究中广泛使用的一种测量方法,近年来其在可穿戴设备中的应用不断增加。建议为EDA测量提供适当的条件,皮肤水合作用是一个有重大影响的因素。然而,环境湿度对记录的影响程度尚不清楚。本研究探讨了相对湿度(RH)对EDA水平的影响,以及使用一种新技术同时记录同一皮肤部位所有EDA测量指标(皮肤电导(SC)、皮肤电纳(SS)和皮肤电位(SP))时的反应情况。
在记录EDA测量指标的同时,让10名健康受试者暴露于低湿度和高湿度环境中,包括认知、视觉和呼吸刺激,以诱发不同来源的皮肤电反应。比较两种湿度水平下所有刺激和所有EDA测量指标的EDA水平及反应情况。
研究发现,在高湿度暴露期间,EDA水平,尤其是SC和SS水平显著升高,但EDA反应(SC、SS和SP)的变化无统计学意义(配对t检验,p>0.05)。
这表明环境湿度会影响EDA水平的记录,在使用这些参数时这一点很重要,但在EDA反应的记录或分析中并不重要。