首页> 外文期刊>Journal of Neurophysiology >Medial olivocochlear reflex effects on amplitude growth functions of long- and short-latency components of click-evoked otoacoustic emissions in humans.
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Medial olivocochlear reflex effects on amplitude growth functions of long- and short-latency components of click-evoked otoacoustic emissions in humans.

机译:内侧OlivoChlear反射效应对人类点击诱发的耳声辐射的长期和短期组分的幅度生长功能。

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Functional outcomes of medial olivocochlear reflex (MOCR) activation, such as improved hearing in background noise and protection from noise damage, involve moderate to high sound levels. Previous noninvasive measurements of MOCR in humans focused primarily on otoacoustic emissions (OAEs) evoked at low sound levels. Interpreting MOCR effects on OAEs at higher levels is complicated by the possibility of the middle-ear muscle reflex and by components of OAEs arising from different locations along the length of the cochlear spiral. We overcame these issues by presenting click stimuli at a very slow rate and by time-frequency windowing the resulting click-evoked (CE)OAEs into short-latency (SL) and long-latency (LL) components. We characterized the effects of MOCR on CEOAE components using multiple measures to more comprehensively assess these effects throughout much of the dynamic range of hearing. These measures included CEOAE amplitude attenuation, equivalent input attenuation, phase, and slope of growth functions. Results show that MOCR effects are smaller on SL components than LL components, consistent with SL components being generated slightly basal of the characteristic frequency region. Amplitude attenuation measures showed the largest effects at the lowest stimulus levels, but slope change and equivalent input attenuation measures did not decrease at higher stimulus levels. These latter measures are less commonly reported and may provide insight into the variability in listening performance and noise susceptibility seen across individuals. NEW & NOTEWORTHY The auditory efferent system, operating at moderate to high sound levels, may improve hearing in background noise and provide protection from noise damage. We used otoacoustic emissions to measure these efferent effects across a wide range of sound levels and identified level-dependent and independent effects. Previous reports have focused on level-dependent measures. The level-independent effects identified here may provide new insights into the functional relevance of auditory efferent activity in humans.
机译:内侧橄榄耳蜗反射(MOCR)激活的功能结果,如改善背景噪声中的听力和防止噪声损伤,涉及中等至高音量。以前对人类MOCR的无创测量主要集中在低声级诱发的耳声发射(OAE)。由于中耳肌肉反射的可能性以及耳蜗螺旋长度上不同位置产生的耳声发射的成分,在更高水平上解释MOCR对耳声发射的影响是复杂的。我们克服了这些问题,以非常慢的速度呈现点击刺激,并通过时频窗将产生的点击诱发(CE)OAE分为短延迟(SL)和长延迟(LL)成分。我们采用多种测量方法来描述MOCR对CEOAE成分的影响,以便在听力的大部分动态范围内更全面地评估这些影响。这些测量包括CEOAE振幅衰减、等效输入衰减、相位和生长函数斜率。结果表明,与LL分量相比,SL分量的MOCR效应更小,这与SL分量在特征频率区域的基础上产生的轻微变化相一致。振幅衰减测量在最低刺激水平下显示出最大的效果,但斜率变化和等效输入衰减测量在较高刺激水平下没有减少。后一种测量方法不太常见,它可以让我们深入了解个体在听力表现和噪音敏感性方面的变化。新的和值得注意的听觉传出系统,在中等至高声级下工作,可以改善背景噪声中的听力,并提供保护,免受噪声损害。我们使用耳声发射来测量广泛声级范围内的这些传出效应,并确定了与声级相关和独立的效应。以前的报告侧重于水平相关的措施。本文确定的水平无关效应可能为人类听觉传出活动的功能相关性提供新的见解。

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