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热应激和精神疲劳对手动灵巧性的独立和交互影响。

Independent and interactive effects of thermal stress and mental fatigue on manual dexterity.

机构信息

THERMOSENSELAB, Environmental Ergonomics Research Centre, Loughborough University, Loughborough, United Kingdom.

Sport and Exercise Sciences Research Unit, Department of Psychology, Educational Science and Human Movement, University of Palermo, Palermo, Italy.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2020 Dec 1;319(6):R703-R711. doi: 10.1152/ajpregu.00226.2020. Epub 2020 Oct 14.

Abstract

Many occupations and sports require high levels of manual dexterity under thermal stress and mental fatigue. Yet, multistressor studies remain scarce. We quantified the interactive effects of thermal stress and mental fatigue on manual dexterity. Seven males (21.1 ± 1.3 yr) underwent six separate 60-min trials characterized by a combination of three air temperatures (hot, 37°C; neutral, 21°C; cold, 7°C) and two mental fatigue states (MF, mental fatigue induced by a 35-min cognitive battery; no-MF, no mental fatigue). Participants performed complex (O'Connor test) and simple (hand-tool test) manual tasks pre- and posttrial to determine stressor-induced performance changes. We monitored participants' rectal temperature and hand skin temperature (T) continuously and assessed the reaction time (hand-click test) and subjective mental fatigue (5-point scale). Thermal stress ( < 0.0001), but not mental fatigue ( = 0.290), modulated T (heat, +3.3°C [95% CI: +0.2, +6.5]; cold, -7.5°C [-10.7, -4.4]). Mental fatigue ( = 0.021), but not thermal stress ( = 0.646), slowed the reaction time (∼10%) and increased subjective fatigue. Thermal stress and mental fatigue had an interactive effect on the complex manual task ( = 0.040), with cold-no-MF decreasing the performance by -22% [-39, -5], whereas neutral-MF, cold-MF, and heat-MF by -36% [-53, -19], -34% [-52, -17], and -36% [-53, -19], respectively. Only mental fatigue decreased the performance in the simple manual task (-30% [-43, -16] across all thermal conditions; = 0.002). Cold stress-induced impairments in complex manipulation increase with mental fatigue; yet combined stressors' effects are no greater than those of mental fatigue alone, which also impairs simple manipulation. Mental fatigue poses a greater challenge to manual dexterity than thermal stress.

摘要

许多职业和运动都需要在热应激和精神疲劳下具备较高的手眼协调性。然而,多应激因素研究仍然很少。我们量化了热应激和精神疲劳对手眼协调性的交互影响。7 名男性(21.1±1.3 岁)接受了 6 项单独的 60 分钟试验,这些试验的特点是结合了三种空气温度(热,37°C;中性,21°C;冷,7°C)和两种精神疲劳状态(MF,由 35 分钟认知电池引起的精神疲劳;非-MF,无精神疲劳)。参与者在试验前后进行了复杂(奥康纳测试)和简单(手工具测试)的手动任务,以确定应激引起的性能变化。我们连续监测参与者的直肠温度和手部皮肤温度(T),并评估反应时间(手点击测试)和主观精神疲劳(5 分制)。热应激(<0.0001),而不是精神疲劳(=0.290),调节了 T(热,升高 3.3°C [95%CI:0.2,6.5];冷,降低 7.5°C [-10.7,-4.4])。精神疲劳(=0.021),而不是热应激(=0.646),会减缓反应时间(约 10%)并增加主观疲劳。热应激和精神疲劳对复杂手动任务有交互作用(=0.040),冷-非-MF 使性能降低 22%[-39,-5],而中性-MF、冷-MF 和热-MF 分别降低 36%[-53,-19]、34%[-52,-17]和 36%[-53,-19]。只有精神疲劳降低了简单手动任务的性能(在所有热条件下降低 30%[-43,-16];=0.002)。冷应激引起的复杂操作障碍随着精神疲劳的增加而增加;然而,联合应激因素的影响并不大于精神疲劳单独的影响,精神疲劳也会损害简单操作。精神疲劳对手眼协调性的挑战大于热应激。

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