利用热力学降解方法量化人体应激反应

S. Boregowda, R. Handy, Darrah K. Sleeth, N. Riches
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引用次数: 1

摘要

本研究提供了一种热力学退化方法来模拟人类的应激反应。手指皮肤温度被用作对压力源(或压力事件)的应激反应的指标,随后是恢复。熵变()是用周边皮肤的传热()和手指皮肤温度()计算的。假设人类的应激反应是一个准静态的过程,如手指皮肤温度变化所证明的那样。用一所医学院实验研究的数据证明了熵方法。在生理测试过程中,测量了松弛、应激源任务和恢复三种情况下的手指皮肤温度。熵变()被假设为熵损(),这是一个度量老化或系统退化的指标。男女被试均有老化比,即应激源熵变与恢复熵变之比。统计检验表明,男性和女性受试者对压力源的应激反应和恢复状态具有统计学意义。这种新方法对医学研究人员,特别是在职业健康领域评估人类暴露于压力环境可能很有价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using Thermodynamic Degradation Approach to Quantify Human Stress Response
The present study provides a thermodynamic degradation approach to model human stress response. Finger skin temperature was used as an indicator of stress response to a stressor (or stressful event) followed by a recovery. The entropy change ( ) is calculated using heat transfer ( ) from the peripheral skin and finger skin temperature ( ). It was hypothesized that the human stress response, as evidenced by finger skin temperature change, is a quasi-static process. The entropy approach is demonstrated using data from a medical school experimental study. The finger skin temperature was measured under three conditions (relaxation, stressor task, and recovery) during the physiological test profile. The entropy change ( ) is postulated as entropy damage ( ), which is a metric for measuring the aging or system degradation. The aging-ratio, , that is, the ratio of entropy change due to stressor to that of recovery, is presented for both male and female subjects. The statistical -tests demonstrate statistical significance in human stress response to stressor and recovery states within and between male and female subjects. This novel approach could be valuable to medical researchers, particularly in the field of occupational health to evaluate human exposure to stressful environments.
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