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The impact of indoor air temperature on the executive functions of human brain and the physiological responses of body

机译:室内气温对人脑执行功能和人体生理反应的影响

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摘要

>Background: This study aimed to investigate the effect size (ES) of air temperature on the executive functions of human brain and body physiological responses.>Methods: In this empirical study, the participants included 35 male students who were exposed to 4 air temperature conditions of 18°C, 22°C, 26°C and 30°C in 4 separate sessions in an air conditioning chamber. The participants were simultaneously asked to take part in the N-back test. The accuracy, electrocardiogram (ECG) signals and the respiration rate were recorded to determine the effect of air temperature. >Results: Compared to moderate air temperatures (22°C), high (30°C) and low (18°C) air temperatures had a much more profound effect on changes in heart beat rate, the accuracy of brain executive functions and the response time to stimuli. There were statistically significant differences in the accuracy by different workload levels and various air temperature conditions(P<0.05). Although the heart beat rate index, the ratio between low frequency and high frequency (LF/HF), and the respiratory rate were more profoundly affected by the higher and lower air temperatures than moderate air temperatures (P<0.05), this effect was not statistically significant, which may be due to significant reduction in the standard deviation of normal-to normal intervals (SNND) and the root of mean squared difference between adjacent normal heart beat (N-N) intervals (RMSSD) (P>0.05). >Conclusion: The results confirmed that the unfavorable air temperatures may considerably affect the physiological responses and the cognitive functions among indoor employees.Therefore, providing them with thermal comfort may improve their performance within indoor environments.
机译:>背景:该研究旨在调查气温对人脑执行功能和身体生理反应的影响大小(ES)。>方法:参与者包括35位男学生,他们在空调室内分别进行了4次独立训练,分别暴露于18°C,22°C,26°C和30°C的4种气温条件下。同时要求参与者参加N-back测试。记录准确性,心电图(ECG)信号和呼吸频率,以确定空气温度的影响。 >结果:与中等气温(22°C)相比,高温(30°C)和低温(18°C)对心跳率的变化影响更大,准确性执行功能和对刺激的反应时间在不同的工作量水平和不同的气温条件下,准确性的差异有统计学意义(P <0.05)。尽管与中等气温相比,气温的升高和降低对心跳率指数,低频与高频之比(LF / HF)和呼吸频率的影响更为显着(P <0.05)具有统计学意义,这可能是由于正常到正常间隔(SNND)的标准偏差以及相邻正常心跳(NN)间隔(RMSSD)之间的均方根的均方根显着降低(P> 0.05)。 >结论:结果证实,不利的气温可能会严重影响室内员工的生理反应和认知功能。因此,为他们提供热舒适感可能会改善他们在室内环境中的表现。

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