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首页> 外文期刊>Frontiers in Human Neuroscience >Cold-Blooded Attention: Finger Temperature Predicts Attentional Performance
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Cold-Blooded Attention: Finger Temperature Predicts Attentional Performance

机译:冷血注意力:手指温度预测注意力表现

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Thermal stress has been shown to increase the chances of unsafe behavior during industrial and driving performances due to reductions in mental and attentional resources. Nonetheless, establishing appropriate safety standards regarding environmental temperature has been a major problem, as modulations are also be affected by the task type, complexity, workload, duration, and previous experience with the task. To bypass this attentional and thermoregulatory problem, we focused on the body rather than environmental temperature. Specifically, we measured tympanic, forehead, finger and environmental temperatures accompanied by a battery of attentional tasks. We considered a 10 min baseline period wherein subjects were instructed to sit and relax, followed by three attentional tasks: a continuous performance task (CPT), a flanker task (FT) and a counting task (CT). Using multiple linear regression models, we evaluated which variable(s) were the best predictors of performance. The results showed a decrement in finger temperature due to instruction and task engagement that was absent when the subject was instructed to relax. No changes were observed in tympanic or forehead temperatures, while the environmental temperature remained almost constant for each subject. Specifically, the magnitude of the change in finger temperature was the best predictor of performance in all three attentional tasks. The results presented here suggest that finger temperature can be used as a predictor of alertness, as it predicted performance in attentional tasks better than environmental temperature. These findings strongly support that peripheral temperature can be used as a tool to prevent unsafe behaviors and accidents.
机译:由于减少了精神和注意力资源,热应力已显示出在工业和驾驶性能中增加不安全行为的机会。尽管如此,建立适当的环境温度安全标准仍是一个主要问题,因为调制方式也会受到任务类型,复杂性,工作量,持续时间以及任务的先前经验的影响。为了绕开这个注意力和体温调节问题,我们专注于身体而不是环境温度。具体来说,我们测量了鼓膜,前额,手指和环境温度,并伴有一系列注意事项。我们考虑了一个10分钟的基线期,在这个基线期中,受试者被要求坐下并放松,然后进行三项注意任务:连续表演任务(CPT),侧翼任务(FT)和计数任务(CT)。使用多个线性回归模型,我们评估了哪些变量是绩效的最佳预测指标。结果表明,由于指示和任务投入而导致的手指温度下降,而指示受试者放松时则没有。鼓膜或前额温度未见变化,而每个受试者的环境温度几乎保持恒定。具体来说,手指温度变化的幅度是所有三个注意任务中表现的最佳预测指标。此处显示的结果表明,手指温度可以用作警觉性的预测指标,因为它比环境温度更好地预测了注意任务的表现。这些发现强烈支持外围温度可以用作防止不安全行为和事故的工具。

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