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首页> 外文期刊>Journal of Mechanical Science and Technology >An examination of the effects of various noises on physiological sensibility responses by using human EEG
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An examination of the effects of various noises on physiological sensibility responses by using human EEG

机译:使用人脑电图检查各种噪声对生理敏感性反应的影响

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This study investigated human stress levels based on electroencephalogram (EEG) data and carried out a subjective evaluation analysis about noise. Visual information is very important for finding human's emotional state. And relatively more previous works have been done than those using auditory stimulus. Since there are fewer previous works, we thought that using auditory stimulus is good choice for our study. Twelve human subjects were exposed to classic piano, ocean wave, army alarm, ambulance, and mosquito noises. We used two groups of comfortable and uncomfortable noises are to see the difference between the definitely different two groups to confirm usefulness of using this setting of experiment. EEG data were collected during the experimental session. The subjects were tested in a soundproof chamber and asked to minimize blinking, head movement, and swallowing during the experiment. The total time of the noise experiment included the time of the relaxation phase, during which the subjects relaxed in silence for 10 minutes. The relaxation phase was followed by a 20 - second noise exposure. The alpha band activities of the subjects were significantly decreased for the ambulance and mosquito noises, as it compared to the classic piano and ocean wave noises. The alpha band activities of the subjects decreased by 12.8 ± 2.3% for the ocean wave noise, decreased by 32.0 ± 5.4% for the army alarm noise, decreased by 34.5 ± 6.7% for the ambulance noise and decreased by 58.3 ± 9.1% for the mosquito noise compared to that of classic piano. On the other hand, their beta band activities were significantly increased for the ambulance and mosquito noises as it compared to classic piano and ocean wave. The beta band activities of the subjects increased by 7.9 ± 1.7% for the ocean wave noise, increased by 20.6 ± 5.3% for the army alarm noise, increased by 48.0 ± 7.5% for the ambulance noise and increased by 61.9 ± 11.2% for the mosquito noise, as it is compared to classic piano. The results of the subjective evaluation were similar to those of the EEG signal analysis. The results from this study may contribute to apply this method to actual products which are closely related to human-machine-interface (HMI) like air-conditioner, car, and so on. So, our experiment was designed for its own purpose.
机译:这项研究基于脑电图(EEG)数据调查了人的压力水平,并对噪声进行了主观评估分析。视觉信息对于发现人的情绪状态非常重要。与以前相比,使用听觉刺激所做的工作相对更多。由于以前的著作较少,我们认为使用听觉刺激是我们研究的不错选择。十二个人类被暴露于经典钢琴,海浪,军队警报,救护车和蚊子声中。我们使用两组舒适和不舒适的噪音来观察两组之间的差异,以确认使用此实验设置的有用性。在实验期间收集脑电数据。在隔音室中对受试者进行测试,并要求他们在实验过程中尽量减少眨眼,头部运动和吞咽。噪音实验的总时间包括放松阶段的时间,在此期间,受试者保持沉默10分钟。弛豫阶段之后是20秒的噪音暴露。与经典钢琴声和海浪声相比,救护车和蚊子声的受试者阿尔法乐队活动明显减少。受试者的Alpha波段活动对于海浪噪声下降了12.8±2.3%,对于军警噪声下降了32.0±5.4%,对于救护车噪声下降了34.5±6.7%,对于救护车噪声下降了58.3±9.1%与传统钢琴相比,蚊子的噪音更大。另一方面,与经典钢琴和海浪相比,由于救护车和蚊子的噪音,他们的β频段活动显着增加。受试者的β波段活动对于海浪噪声而言增加了7.9±1.7%,对于军警噪声而言增加了20.6±5.3%,对于救护车噪声而言增加了48.0±7.5%,对于救护车噪声而言增加了61.9±11.2%与传统钢琴相比,蚊子发出的噪音很大。主观评价的结果与脑电信号分析的结果相似。这项研究的结果可能有助于将该方法应用于与人机界面(HMI)密切相关的实际产品,例如空调,汽车等。因此,我们的实验是为自己的目的而设计的。

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