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Lateralization of music processing with noises in the auditory cortex: an fNIRS study

机译:听觉皮层中带有噪音的音乐处理的横向化:fNIRS研究

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摘要

The present study is to determine the effects of background noise on the hemispheric lateralization in music processing by exposing 14 subjects to four different auditory environments: music segments only, noise segments only, music + noise segments, and the entire music interfered by noise segments. The hemodynamic responses in both hemispheres caused by the perception of music in 10 different conditions were measured using functional near-infrared spectroscopy. As a feature to distinguish stimulus-evoked hemodynamics, the difference between the mean and the minimum value of the hemodynamic response for a given stimulus was used. The right-hemispheric lateralization in music processing was about 75% (instead of continuous music, only music segments were heard). If the stimuli were only noises, the lateralization was about 65%. But, if the music was mixed with noises, the right-hemispheric lateralization has increased. Particularly, if the noise was a little bit lower than the music (i.e., music level 10~15%, noise level 10%), the entire subjects showed the right-hemispheric lateralization: This is due to the subjects' effort to hear the music in the presence of noises. However, too much noise has reduced the subjects' discerning efforts.
机译:本研究旨在通过将14个主体暴露于四种不同的听觉环境中来确定背景噪声对音乐处理中半球偏侧化的影响:仅音乐段,仅噪声段,音乐+噪声段以及受噪声段干扰的整个音乐。使用功能近红外光谱法测量了在10种不同条件下音乐的感知引起的两个半球的血流动力学响应。作为区分刺激诱发的血流动力学的特征,使用了给定刺激的血流动力学响应的平均值和最小值之差。音乐处理中的右半球偏侧化约为75%(而不是连续音乐,只能听到音乐片段)。如果刺激仅仅是噪声,则横向化约为65%。但是,如果音乐中混有杂音,则右半球的偏侧性增加了。特别是,如果噪音比音乐低一点(例如,音乐水平10〜15%,噪音水平10%),则整个对象都表现出右半球偏侧:这是由于对象努力聆听音乐所致。有噪音的音乐。但是,过多的噪音降低了受试者的辨别力。

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