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Contralateral Noise Stimulation Delays P300 Latency in School-Aged Children

机译:对侧噪声刺激延迟了学龄儿童的P300潜伏期

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摘要

Background and ObjectiveThe auditory cortex modulates auditory afferents through the olivocochlear system, which innervates the outer hair cells and the afferent neurons under the inner hair cells in the cochlea. Most of the studies that investigated the efferent activity in humans focused on evaluating the suppression of the otoacoustic emissions by stimulating the contralateral ear with noise, which assesses the activation of the medial olivocochlear bundle. The neurophysiology and the mechanisms involving efferent activity on higher regions of the auditory pathway, however, are still unknown. Also, the lack of studies investigating the effects of noise on human auditory cortex, especially in peadiatric population, points to the need for recording the late auditory potentials in noise conditions. Assessing the auditory efferents in schoolaged children is highly important due to some of its attributed functions such as selective attention and signal detection in noise, which are important abilities related to the development of language and academic skills. For this reason, the aim of the present study was to evaluate the effects of noise on P300 responses of children with normal hearing.
机译:背景与目的听觉皮层通过耳蜗系统调节听觉传入,该系统支配耳蜗中的外毛细胞和内毛细胞下方的传入神经元。大多数研究人类传出活动的研究都侧重于通过用噪声刺激对侧耳朵来评估对耳声发射的抑制,从而评估内侧小腱膜束的激活。然而,神经生理学和涉及听觉通路较高区域传出活动的机制仍是未知的。另外,缺乏研究噪声对人的听觉皮层的影响的研究,特别是在小儿人群中,这表明需要在噪声条件下记录晚期听觉电位。评估学龄儿童的听觉传出是非常重要的,这是因为它具有某些归类的功能,例如选择性注意和噪声中的信号检测,这些功能与语言和学习技能的发展有关。因此,本研究的目的是评估噪声对听力正常的儿童P300反应的影响。

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