用听觉诱发电位评价噪声性听力损失。

Scandinavian audiology. Supplementum Pub Date : 1998-01-01
M Fabiani, A Mattioni, M Saponara, A Cordier
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引用次数: 0

摘要

正如许多动物实验所证明的那样,噪音会损害耳蜗和中央听觉通路。在临床研究中,很难区分这两个部位的相对贡献。听觉诱发电位ABR、MLR和SVR研究耳蜗后神经传导,这些技术的结果共同证明了对耳蜗功能的客观评价。作者研究了一组130名高频听力损失的运动射击运动员,发现在38只耳朵中可以识别出清晰的耳蜗后成分。与暴露于创伤性噪声的强度、频率和时间的相关性表明,爆炸噪声是NIHL的诱因。然而,暴露于类似噪音的运动员没有遭受类似的听力损失,可能是因为众所周知的个体噪音敏感性。
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Auditory evoked potentials for the assessment of noise induced hearing loss.

As it has been demonstrated in many animal experiments, noise can damage the cochlea and the central auditory pathways. It is very difficult in clinical studies to separate the relative contribution of both these sites. Auditory evoked potentials ABR, MLR and SVR study retrocochlear nervous conduction and collectively the results of these techniques proved an objective evaluation of the cochlear function. The Authors have studied a group of 130 sport shooters with high frequency hearing loss and found that in 38 ears a clear retrocochlear component could be recognised. Correlation with intensity, frequency and length of exposure to the traumatic noise demonstrates that explosive noise is an agent for NIHL. However athletes exposed to similar noises did not suffer from similar hearing loss, probably because of the well known individual noise susceptibility.

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Crises. Central auditory tests. Neuroanatomy of tinnitus. Clinical relevance of medial efferent auditory pathways. Selected management approaches to central auditory processing disorders.
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