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The Physiological Basis and Clinical Use of the Binaural Interaction Component of the Auditory Brainstem Response

机译:听性脑干反应的双耳相互作用成分的生理基础和临床应用

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The auditory brainstem response (ABR) is a sound-evoked noninvasively measured electrical potential representing the sum of neuronal activity in the auditory brainstem and midbrain. ABR peak amplitudes and latencies are widely used in human and animal auditory research and for clinical screening. The binaural interaction component (BIC) of the ABR stands for the difference between the sum of the monaural ABRs and the ABR obtained with binaural stimulation. The BIC comprises a series of distinct waves, the largest of which (DN1) has been used for evaluating binaural hearing in both normal hearing and hearing-impaired listeners. Based on data from animal and human studies, the authors discuss the possible anatomical and physiological bases of the BIC (DN1 in particular). The effects of electrode placement and stimulus characteristics on the binaurally evoked ABR are evaluated. The authors review how interaural time and intensity differences affect the BIC and, analyzing these dependencies, draw conclusion about the mechanism underlying the generation of the BIC. Finally, the utility of the BIC for clinical diagnoses are summarized.
机译:听觉脑干反应(ABR)是一种声音诱发的非侵入式测量电位,代表了听觉脑干和中脑神经元活动的总和。 ABR峰幅度和潜伏期广泛用于人和动物的听觉研究和临床筛查。 ABR的双耳相互作用成分(BIC)代表单耳ABR的总和与通过双耳刺激获得的ABR之差。 BIC包含一系列不同的波,其中最大的波(DN1)已用于评估正常听力和听力受损的听众的双耳听觉。基于动物和人类研究的数据,作者讨论了BIC(尤其是DN1)的可能的解剖学和生理学基础。评估了电极放置和刺激特性对双耳诱发的ABR的影响。作者回顾了耳间时间和强度差异如何影响BIC,并分析了这些依赖性,得出了有关BIC产生机理的结论。最后,总结了BIC在临床诊断中的实用性。

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