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  • 标题:How to Relax in Stressful Situations: A Smart Stress Reduction System
  • 本地全文:下载
  • 作者:Yekta Said Can ; Heather Iles-Smith ; Niaz Chalabianloo
  • 期刊名称:Healthcare
  • 电子版ISSN:2227-9032
  • 出版年度:2020
  • 卷号:8
  • 期号:2
  • 页码:100-118
  • DOI:10.3390/healthcare8020100
  • 出版社:MDPI Publishing
  • 摘要:Stress is an inescapable element of the modern age. Instances of untreated stress may lead to a reduction in the individual’s health, well-being and socio-economic situation. Stress management application development for wearable smart devices is a growing market. The use of wearable smart devices and biofeedback for individualized real-life stress reduction interventions has received less attention. By using our unobtrusive automatic stress detection system for use with consumer-grade smart bands, we first detected stress levels. When a high stress level is detected, our system suggests the most appropriate relaxation method by analyzing the physical activity-based contextual information. In more restricted contexts, physical activity is lower and mobile relaxation methods might be more appropriate, whereas in free contexts traditional methods might be useful. We further compared traditional and mobile relaxation methods by using our stress level detection system during an eight day EU project training event involving 15 early stage researchers (mean age 28; gender 9 Male, 6 Female). Participants’ daily stress levels were monitored and a range of traditional and mobile stress management techniques was applied. On day eight, participants were exposed to a ‘stressful’ event by being required to give an oral presentation. Insights about the success of both traditional and mobile relaxation methods by using the physiological signals and collected self-reports were provided.
  • 关键词:commercial smartwatch; mental stress; psychophysiological; emotion regulation; heart rate variability; electrodermal activity commercial smartwatch ; mental stress ; psychophysiological ; emotion regulation ; heart rate variability ; electrodermal activity
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