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即使学习效率有所提高,温暖的环境也会增加隐性心理负荷。

Warmer Environments Increase Implicit Mental Workload Even If Learning Efficiency Is Enhanced.

作者信息

Kimura Tsukasa, Takemura Noriko, Nakashima Yuta, Kobori Hirokazu, Nagahara Hajime, Numao Masayuki, Shinohara Kazumitsu

机构信息

The Institute of Scientific and Industrial Research, Osaka University, Ibaraki, Japan.

Institute for Datability Science, Osaka University, Suita, Japan.

出版信息

Front Psychol. 2020 Apr 1;11:568. doi: 10.3389/fpsyg.2020.00568. eCollection 2020.

Abstract

Climate change is one of the most important issues for humanity. To defuse this problem, it is considered necessary to improve energy efficiency, make energy sources cleaner, and reduce energy consumption in urban areas. The Japanese government has recommended an air conditioner setting of 28°C in summer and 20°C in winter since 2005. The aim of this setting is to save energy by keeping room temperatures constant. However, it is unclear whether this is an appropriate temperature for workers and students. This study examined whether thermal environments influence task performance over time. To examine whether the relationship between task performance and thermal environments influences the psychological states of participants, we recorded their subjective rating of mental workload along with their working memory score, electroencephalogram (EEG), heart rate variability, skin conductance level (SCL), and tympanum temperature during the task and compared the results among different conditions. In this experiment, participants were asked to read some texts and answer questions related to those texts. Room temperature (18, 22, 25, or 29°C) and humidity (50%) were manipulated during the task and participants performed the task at these temperatures. The results of this study showed that the temporal cost of task and theta power of EEG, which is an index for concentration, decreased over time. However, subjective mental workload increased with time. Moreover, the low frequency to high frequency ratio and SCL increased with time and heat (25 and 29°C). These results suggest that mental workload, especially implicit mental workload, increases in warmer environments, even if learning efficiency is facilitated. This study indicates integrated evidence for relationships among task performance, psychological state, and thermal environment by analyzing behavioral, subjective, and physiological indexes multidirectionally.

摘要

气候变化是人类面临的最重要问题之一。为了解决这个问题,人们认为有必要提高能源效率,使能源更清洁,并减少城市地区的能源消耗。自2005年以来,日本政府建议夏季空调设定温度为28°C,冬季为20°C。这样设定的目的是通过保持室温恒定来节约能源。然而,目前尚不清楚这个温度对工人和学生来说是否合适。本研究考察了热环境是否会随着时间的推移影响任务表现。为了研究任务表现与热环境之间的关系是否会影响参与者的心理状态,我们记录了他们在任务过程中的主观心理负荷评分,以及工作记忆分数、脑电图(EEG)、心率变异性、皮肤电导水平(SCL)和鼓膜温度,并比较了不同条件下的结果。在这个实验中,参与者被要求阅读一些文本并回答与这些文本相关的问题。在任务过程中,对室温(18、22、25或29°C)和湿度(50%)进行了控制,参与者在这些温度下执行任务。本研究结果表明,任务的时间成本以及作为注意力指标的脑电图θ波功率随时间下降。然而,主观心理负荷却随时间增加。此外,低频与高频之比以及皮肤电导水平随时间和温度升高(25和29°C)而增加。这些结果表明,即使学习效率得到提高,在较温暖的环境中,心理负荷,尤其是隐性心理负荷会增加。本研究通过多维度分析行为、主观和生理指标,为任务表现、心理状态和热环境之间的关系提供了综合证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c02/7141281/bf7601479220/fpsyg-11-00568-g001.jpg

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