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A window into the brain mechanisms associated with noise sensitivity

机译:进入与噪声敏感性相关的大脑机制的窗口

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摘要

Noise sensitive individuals are more likely to experience negative emotions from unwanted sounds and they show greater susceptibility to adverse effects of noise on health. Noise sensitivity does not originate from dysfunctions of the peripheral auditory system, and it is thus far unknown whether and how it relates to abnormalities of auditory processing in the central nervous system. We conducted a combined electroencephalography and magnetoencephalography (M/EEG) study to measure neural sound feature processing in the central auditory system in relation to the individual noise sensitivity. Our results show that high noise sensitivity is associated with altered sound feature encoding and attenuated discrimination of sound noisiness in the auditory cortex. This finding makes a step towards objective measures of noise sensitivity instead of self-evaluation questionnaires and the development of strategies to prevent negative effects of noise on the susceptible population.
机译:对噪音敏感的人更容易因有害声音而产生负面情绪,并且他们更容易受到噪音对健康的不利影响。噪声敏感性并非源于周围听觉系统的功能障碍,因此,目前尚不清楚它是否以及如何与中枢神经系统的听觉处理异常相关。我们进行了脑电图和磁脑电图(M / EEG)的组合研究,以测量中枢听觉系统中与个人噪声敏感性相关的神经声音特征处理。我们的研究结果表明,高噪声灵敏度与声音特征编码的改变和听觉皮层中声音噪声的减弱识别有关。这一发现使人们朝着客观测量噪音敏感度迈出了一步,而不是进行自我评估问卷调查,并制定了防止噪音对易感人群产生负面影响的策略。

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