Identifying physiological indicators of the cognitive, thermal, and combined (cognitive-thermal) stress conditions.

IF 2.9 2区 心理学 Q2 NEUROSCIENCES Psychophysiology Pub Date : 2024-09-01 Epub Date: 2024-05-06 DOI:10.1111/psyp.14601
Susana Carrizosa-Botero, Tatiana A Roldán-Rojo, Elizabeth Rendón-Vélez
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Abstract

Physiologically based stress detection systems have proven to be effective in identifying different stress conditions in the body to determine the source of stress and be able to counteract it. However, some stress conditions have not been widely studied, including thermal stress, cognitive stress, and combined (thermal-cognitive) stress conditions, which are frequently encountered in work or school environments. In order to develop systems to detect and differentiate these conditions, it is necessary to identify the physiological indicators that characterize each of them. The present research aims to identify which physiological indicators (heart rate, respiratory rate, galvanic skin response, and local temperature) could differentiate different stress conditions (no-stress, cognitive stress, thermal stress, and combined (thermal-cognitive) stress conditions). Thirty participants were exposed to cognitive, thermal, and combined stress sources while recording their physiological signals. The findings indicate that both mean heart rate and mean galvanic skin response identify moderate thermal and cognitive stress conditions as distinct from a no-stress condition, yet they do not differentiate between the two stress conditions. Additionally, heart rate uniquely identifies the cognitive-thermal stress condition, effectively distinguishing this combined stress condition from the singular stress conditions and the no-stress condition. Mean local temperature specifically signals thermal stress conditions, whereas mean respiratory rate accurately identifies cognitive stress conditions, with both indicators effectively separating these conditions from each other and from the no-stress condition. This is the first basis for differentiating thermal and cognitive stress conditions through physiological indicators.

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确定认知、热和综合(认知-热)压力条件的生理指标。
事实证明,以生理为基础的压力检测系统可以有效地识别人体的不同压力状况,从而确定压力的来源并加以应对。然而,有些压力状况尚未得到广泛研究,包括热压力、认知压力和综合(热-认知)压力状况,这些状况在工作或学习环境中经常遇到。为了开发出检测和区分这些情况的系统,有必要确定这些情况的生理指标。本研究旨在确定哪些生理指标(心率、呼吸频率、皮肤电反应和局部温度)可以区分不同的压力条件(无压力、认知压力、热压力和综合(热-认知)压力条件)。研究人员将 30 名参与者置于认知压力、热压力和综合压力源之下,同时记录他们的生理信号。研究结果表明,平均心率和平均皮肤电化反应都能识别出有别于无压力条件的中度热压力和认知压力条件,但它们并不能区分这两种压力条件。此外,心率能唯一识别认知-热应激状态,有效地将这种综合应激状态与单一应激状态和无应激状态区分开来。平均局部体温是热应激状态的特殊信号,而平均呼吸频率则能准确识别认知应激状态,这两个指标都能有效地将这些状态相互区分开来,并与无应激状态区分开来。这是通过生理指标区分热应激和认知应激状态的第一个依据。
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来源期刊
Psychophysiology
Psychophysiology 医学-神经科学
CiteScore
6.80
自引率
8.10%
发文量
225
审稿时长
2 months
期刊介绍: Founded in 1964, Psychophysiology is the most established journal in the world specifically dedicated to the dissemination of psychophysiological science. The journal continues to play a key role in advancing human neuroscience in its many forms and methodologies (including central and peripheral measures), covering research on the interrelationships between the physiological and psychological aspects of brain and behavior. Typically, studies published in Psychophysiology include psychological independent variables and noninvasive physiological dependent variables (hemodynamic, optical, and electromagnetic brain imaging and/or peripheral measures such as respiratory sinus arrhythmia, electromyography, pupillography, and many others). The majority of studies published in the journal involve human participants, but work using animal models of such phenomena is occasionally published. Psychophysiology welcomes submissions on new theoretical, empirical, and methodological advances in: cognitive, affective, clinical and social neuroscience, psychopathology and psychiatry, health science and behavioral medicine, and biomedical engineering. The journal publishes theoretical papers, evaluative reviews of literature, empirical papers, and methodological papers, with submissions welcome from scientists in any fields mentioned above.
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