Wireless, continuous monitoring of daily stress and management practice via soft bioelectronics.

Wireless, continuous monitoring of daily stress and management practice via soft bioelectronics.
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DOI:
10.1016/j.bios.2020.112764
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发表时间:
2021-02-01
影响因子:
12.6
通讯作者:
Yeo WH
Yeo WH
中科院分区:
工程技术1区
文献类型:
--
作者:
Kim H;Kim YS;Mahmood M;Kwon S;Epps F;Rim YS;Yeo WH

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压力已成为直接影响人类健康的重要因素。由于日常生活中不可避免的压力来源众多,有效的压力管理对于维持健康的生活至关重要。可穿戴设备的最新进展允许通过检测皮肤上的皮肤电反应来监测压力水平。其中一些装置显示出评估应力消除方法的能力。然而,先前的工作已经被限制在受控的实验室环境中,具有短期(<1小时)的应激干预评估。现有系统的主要问题包括由刚性和笨重的电子设备以及活动手指上的强制设备连接引起的运动伪影和不适。在这里,我们介绍软,无线,皮肤一样的电子产品(SKINTRONICS),提供连续,便携式日常压力和管理实践监测。这款轻巧的多功能一体化设备可以连续六个小时捕捉受试者在日常活动中的压力变化,包括案头工作,清洁和休息。与此同时,SKINTRONICS证明,典型的减压方法(正念和冥想)可以降低压力水平,即使是在一天中,这是由统计分析支持的。与商业压力监测仪相比,这种低轮廓、无线、无凝胶设备显示出增强的透气性和最小化的运动伪影。总的来说,这项研究首次展示了软纳米膜生物电子学在日常生活中对压力和干预有效性的长期持续评估。
Stress has become a significant factor, directly affecting human health. Due to the numerous sources of stress that are inevitable in daily life, effective management of stress is essential to maintain a healthy life. Recent advancements in wearable devices allow monitoring stress levels via the detection of galvanic skin response on the skin. Some of these devices show the capability of assessing stress relief methods. However, prior works have been limited in a controlled laboratory setting with a short period assessment (<1 h) of stress intervention. The existing systems’ main issues include motion artifacts and discomfort caused by rigid and bulky electronics and mandatory device connection on active fingers. Here, we introduce soft, wireless, skin-like electronics (SKINTRONICS) that offers continuous, portable daily stress and management practice monitoring. The ultrathin, lightweight, all-in-one device captures the change of a subject’s stress over six continuous hours during everyday activities, including desk work, cleaning, and resting. At the same time, the SKINTRONICS proves that typical stress alleviation methods (mindfulness and meditation) can reduce stress levels, even in the middle of the day, which is supported by statistical analysis. The low-profile, wireless, gel-free device shows enhanced breathability and minimized motion artifacts compared to a commercial stress monitor. Collectively, this study shows the first demonstration of soft, nanomembrane bioelectronics for long-term, continuous assessment of stress and intervention effectiveness throughout daily life.
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