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Local cochlear damage reduces local nonlinearity and decreases generator-type cochlear emissions while increasing reflector-type emissions

机译:局部耳蜗损伤减少了局部非线性并减少了发生器型耳蜗的发射同时增加了反射器型的发射

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摘要

Distortion product otoacoustic emissions (DPOAEs) originate in cochlear nonlinearity and emerge into the ear canal as an apparent sum of emission types, one of which (generator) travels directly out and the other (reflector) travels out following linear reflection. The present study explores intracochlear sources of DPOAEs via simultaneous ear canal and intracochlear pressure measurements in gerbils. A locally damaged cochlea was produced with reduced local intracochlear nonlinearity and significant elevation of the compound action potential thresholds at frequencies represented within the damaged region. In the DPOAE the comparison of healthy to locally damaged cochleae showed the following: (1) In the broad frequency region corresponding to the locally damaged best frequency, DPOAEs evoked by wider f2∕f1 stimuli decreased, consistent with the reduction in local nonlinearity. (2) DPOAEs evoked by narrow f2∕f1 stimuli often had a bimodal change, decreasing in a lower frequency band and increasing in a band just adjacent and higher, and the DPOAE phase-vs-frequency slope steepened. These changes confirm the complex nature of the DPOAE.
机译:畸变产物耳声发射(DPOAE)起源于耳蜗非线性,并作为表观发射类型的总和进入耳道,其中一种(发生器)直接传播出去,另一种(反射器)在线性反射后传播出去。本研究通过沙土鼠的同时耳道和耳蜗内压力测量,探索了DPOAEs的耳蜗内来源。产生了局部受损的耳蜗,该局部受损的耳蜗具有减小的局部耳蜗内非线性并且在受损区域内所代表的频率处复合动作电位阈值显着升高。在DPOAE中,健康的耳蜗与局部受损的耳蜗的比较结果如下:(1)在与局部受损的最佳频率相对应的宽频率区域中,由更宽的f2 ∕ f1刺激引起的DPOAEs减少,这与局部非线性的降低一致。 (2)由狭窄的f2 ∕ f1刺激引起的DPOAE通常具有双峰变化,在较低的频带中减小,而在紧邻的较高的频带中增加,并且DPOAE的相位与频率斜率陡峭。这些变化证实了DPOAE的复杂性。

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