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首页> 外文期刊>International Journal of Environmental Research and Public Health >Acoustic Noise Alters Selective Attention Processes as Indicated by Direct Current (DC) Brain Potential Changes
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Acoustic Noise Alters Selective Attention Processes as Indicated by Direct Current (DC) Brain Potential Changes

机译:直流(DC)脑电势变化表明,声学噪声会改变选择性注意过程

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Acoustic environmental noise, even of low to moderate intensity, is known to adversely affect information processing in animals and humans via attention mechanisms. In particular, facilitation and inhibition of information processing are basic functions of selective attention. Such mechanisms can be investigated by analyzing brain potentials under conditions of externally directed attention (intake of environmental information) versus internally directed attention (rejection of environmental stimuli and focusing on memory/planning processes). This study investigated brain direct current (DC) potential shifts—which are discussed to represent different states of cortical activation—of tasks that require intake and rejection of environmental information under noise. It was hypothesized that without background noise rejection tasks would show more positive DC potential changes compared to intake tasks and that under noise both kinds of tasks would show positive DC shifts as an expression of cortical inhibition caused by noise. DC potential shifts during intake and rejection tasks were analyzed at 16 standard locations in 45 persons during irrelevant speech or white noise vs. control condition. Without noise, rejection tasks were associated with more positive DC potential changes compared to intake tasks. During background noise, however, this difference disappeared and both kinds of tasks led to positive DC shifts. Results suggest—besides some limitations—that noise modulates selective attention mechanisms by switching to an environmental information processing and noise rejection mode, which could represent a suggested “attention shift”. Implications for fMRI studies as well as for public health in learning and performance environments including susceptible persons are discussed.
机译:众所周知,即使是中低强度的声环境噪声也会通过注意力机制对动物和人类的信息处理产生不利影响。特别是,促进和禁止信息处理是选择性注意的基本功能。可以通过分析外部定向注意(获取环境信息)与内部定向注意(拒绝环境刺激并专注于记忆/计划过程)条件下的脑电势来研究此类机制。这项研究调查了需要吸收和拒绝噪声下环境信息的任务的脑部直流电(DC)电位移动-讨论其代表皮层激活的不同状态。假设没有背景噪声抑制任务会比进气任务表现出更多的正DC电位变化,并且在噪声下,这两种任务都会表现出正DC偏移,作为由噪声引起的皮层抑制的一种表达。在不相关的语音或白噪声与控制条件下,在45人的16个标准位置分析了进气和排气任务期间的直流电势变化。在没有噪音的情况下,与进气任务相比,拒绝任务与更正的直流电势变化相关。但是,在背景噪声期间,这种差异消失了,并且两种任务都导致正的DC偏移。结果表明(除某些限制外),噪声通过切换到环境信息处理和噪声抑制模式来调节选择性注意机制,这可能表示建议的“注意转移”。讨论了功能磁共振成像研究以及对包括易感人群在内的学习和表演环境中公共卫生的影响。

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