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Relating the Variability of Tone-Burst Otoacoustic Emission and Auditory Brainstem Response Latencies to the Underlying Cochlear Mechanics

机译:关联声频爆破耳声发射和听觉脑干响应潜伏期对基础的耳蜗力学的变化。

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摘要

Forward and reverse cochlear latency and its relation to the frequency tuning of the auditory filters can be assessed using tone bursts (TBs). Otoacoustic emissions (TBOAEs) estimate the cochlear roundtrip time, while auditory brainstem responses (ABRs) to the same stimuli aim at measuring the auditory filter buildup time. Latency ratios are generally close to two and controversy exists about the relationship of this ratio to cochlear mechanics. We explored why the two methods provide different estimates of filter buildup time, and ratios with large inter-subject variability, using a time-domain model for OAEs and ABRs. We compared latencies for twenty models, in which all parameters but the cochlear irregularities responsible for reflection-source OAEs were identical, and found that TBOAE latencies were much more variable than ABR latencies. Multiple reflection-sources generated within the evoking stimulus bandwidth were found to shape the TBOAE envelope and complicate the interpretation of TBOAE latency and TBOAE/ABR ratios in terms of auditory filter tuning.
机译:向前和向后耳蜗潜伏期及其与听觉滤波器频率调谐的关系可以使用音调突发(TB)进行评估。耳声发射(TBOAE)估计耳蜗的往返时间,而对相同刺激的听觉脑干反应(ABR)则旨在测量听觉过滤器的建立时间。延迟率通常接近于2,并且关于该比率与耳蜗力学之间的关系存在争议。我们探究了为什么使用OAE和ABR的时域模型,这两种方法为何提供不同的滤波器建立时间估计,以及具有较大的对象间可变性的比率。我们比较了二十种模型的时延,其中除了反射源OAE的耳蜗不规则性以外的所有参数都相同,并且发现TBOAE时延比ABR时延更具可变性。发现在诱发刺激带宽内产生的多种反射源可以塑造TBOAE包络,并使TBOAE潜伏期和TBOAE / ABR比的解释在听觉滤波器调整方面变得复杂。

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  • 期刊名称 other
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  • 年(卷),期 -1(1703),-1
  • 年度 -1
  • 页码 090003
  • 总页数 10
  • 原文格式 PDF
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