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背景噪声对基于视频显示终端(VDT)的空间注意力的反应时间和脑直流电电位变化的影响

Impact of background noise on reaction time and brain DC potential changes of VDT-based spatial attention.

作者信息

Trimmel Michael, Poelzl Gerhard

机构信息

Medical University of Vienna, OE Public Health, Institute of Environmental Health, Kinderspitalgasse 15, A-1095 Vienna, Austria.

出版信息

Ergonomics. 2006 Feb 10;49(2):202-8. doi: 10.1080/00140130500434986.

Abstract

Background noise is often discussed in terms of mental costs. In this study the effect of background noise on brain activity as reflected by the direct coupled (DC) potential was investigated by a within design in ten participants. During two successive blocks of 7 min each, participants performed 156 trials of a visual display terminal (VDT)-based visual-spatial attention task without noise and two blocks with a mixture of the environmental noises of barking dogs, traffic noise and irrelevant speech of 60 dBA. Brain DC potentials were recorded along the midline and analysed for change by time on task. For noise conditions, reaction time was prolonged and the DC-potential shifted towards positivity, contrary to control condition, independent of block and location. Results suggest reduced cortical resources by widespread inhibitory activation through background noise. It can be concluded that even low intensity background noise is associated with energy consumption and with impaired performance in spatial attention.

摘要

背景噪声通常从心理成本的角度进行讨论。在本研究中,采用组内设计,对10名参与者进行了研究,以探讨背景噪声对直接耦合(DC)电位所反映的大脑活动的影响。在两个连续的7分钟时间段内,参与者在无噪声条件下进行了156次基于视觉显示终端(VDT)的视觉空间注意力任务试验,并在另外两个时间段内,在存在60分贝A的狗叫声、交通噪声和无关语音等环境噪声混合的条件下进行了试验。沿着中线记录大脑DC电位,并分析任务过程中的时间变化。在噪声条件下,与对照条件相反,反应时间延长,DC电位向正向偏移,且与时间段和位置无关。结果表明,背景噪声通过广泛的抑制性激活降低了皮质资源。可以得出结论,即使是低强度的背景噪声也与能量消耗以及空间注意力表现受损有关。

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