Optimizing Sensor Locations for Electrodermal Activity Monitoring Using a Wearable Belt System.

IF 3.3 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
Journal of Sensor and Actuator Networks Pub Date : 2025-04-01 Epub Date: 2025-03-18 DOI:10.3390/jsan14020031
Riley Q McNaboe, Youngsun Kong, Wendy A Henderson, Xiaomei Cong, Aolan Li, Min-Hee Seo, Ming-Hui Chen, Bin Feng, Hugo F Posada-Quintero
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Abstract

Wearable devices for continuous health monitoring in humans are constantly evolving, yet the signal quality may be improved by optimizing electrode placement. While the commonly used locations to measure electrodermal activity (EDA) are at the fingers or the wrist, alternative locations, such as the torso, need to be considered when applying an integrated multimodal approach of concurrently recording multiple bio-signals, such as the monitoring of visceral pain symptoms like those related to irritable bowel syndrome (IBS). This study aims to quantitatively determine the EDA signal quality at four torso locations (mid-chest, upper abdomen, lower back, and mid-back) in comparison to EDA signals recorded from the fingers. Concurrent EDA signals from five body locations were collected from twenty healthy participants as they completed a Stroop Task and a Cold Pressor task that elicited salient autonomic responses. Mean skin conductance (meanSCL), non-specific skin conductance responses (NS.SCRs), and sympathetic response (TVSymp) were derived from the torso EDA signals and compared with signals from the fingers. Notably, TVSymp recorded from the mid-chest location showed significant changes between baseline and Stroop phase, consistent with the TVSymp recorded from the fingers. A high correlation (0.77-0.83) was also identified between TVSymp recorded from the fingers and three torso locations: mid-chest, upper abdomen, and lower back locations. While the fingertips remain the optimal site for EDA measurement, the mid-chest exhibited the strongest potential as an alternative recording site, with the upper abdomen and lower back also demonstrating promising results. These findings suggest that torso-based EDA measurements have the potential to provide reliable measurement of sympathetic neural activities and may be incorporated into a wearable belt system for multimodal monitoring.

使用可穿戴皮带系统优化皮肤电活动监测的传感器位置。
用于人类连续健康监测的可穿戴设备不断发展,但通过优化电极放置可以改善信号质量。虽然测量皮肤电活动(EDA)的常用位置是手指或手腕,但在应用同时记录多种生物信号的综合多模式方法时,需要考虑其他位置,如躯干,例如监测与肠易激综合征(IBS)相关的内脏疼痛症状。本研究旨在定量确定四个躯干位置(胸中、上腹部、下背部和中背部)的EDA信号质量,并与手指记录的EDA信号进行比较。在20名健康参与者完成Stroop任务和Cold Pressor任务时,从他们的5个身体部位收集并发的EDA信号,这些任务会引起显著的自主神经反应。从躯干EDA信号中获得平均皮肤电导(meanSCL)、非特异性皮肤电导反应(NS.SCRs)和交感神经反应(TVSymp),并与手指信号进行比较。值得注意的是,从胸部中部位置记录的TVSymp在基线和Stroop期之间显示出显著变化,与从手指记录的TVSymp一致。从手指记录的TVSymp与三个躯干位置(胸中、上腹部和下背部)之间也发现了高度相关(0.77-0.83)。虽然指尖仍然是EDA测量的最佳位置,但中胸作为替代记录位置的潜力最大,上腹部和下背部也显示出有希望的结果。这些发现表明,基于躯干的EDA测量有可能提供可靠的交感神经活动测量,并可能纳入可穿戴带系统进行多模态监测。
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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来源期刊
Journal of Sensor and Actuator Networks
Journal of Sensor and Actuator Networks Physics and Astronomy-Instrumentation
CiteScore
7.90
自引率
2.90%
发文量
70
审稿时长
11 weeks
期刊介绍: Journal of Sensor and Actuator Networks (ISSN 2224-2708) is an international open access journal on the science and technology of sensor and actuator networks. It publishes regular research papers, reviews (including comprehensive reviews on complete sensor and actuator networks), and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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