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叶口蝠(Phyllostomus discolor)的耳蜗敏感性。

Cochlear sensitivity in the lesser spear-nosed bat, Phyllostomus discolor.

作者信息

Wittekindt Anna, Drexl Markus, Kössl Manfred

机构信息

Zoologisches Institut, J. W. Goethe Universität Frankfurt a. Main, Siesmayerstrasse 70, 60323 Frankfurt a. Main, Germany.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2005 Jan;191(1):31-6. doi: 10.1007/s00359-004-0564-x. Epub 2004 Sep 18.

Abstract

Behavioral auditory thresholds of Phyllostomus discolor are characterized by two threshold minima separated by an insensitive region at about 55 kHz (Esser and Daucher 1996). To investigate whether these characteristics are due to cochlear properties, we recorded distortion product otoacoustic emissions (DPOAEs) and calculated relative DPOAE threshold curves, which proved to be a good measure of cochlear sensitivity. Our results indicate that in P. discolor, cochlear sensitivity, as assessed by DPOAE recordings, does not show a threshold maximum at 55 kHz. The DPOAE threshold curves display an absolute minimum at approximately 30 kHz, and from that frequency region, the threshold continuously increases without any pronounced irregularities. The frequency tuning properties of the cochlea, as assessed by DPOAE suppression tuning curves (STCs) reveal broad filter bandwidths with Q10dB values between 3.4 and 10.7. There are no frequency-specific specializations of cochlear tuning. The characteristic pattern of subsequent threshold maxima and minima at high frequencies observed in behavioral studies seems to be shaped by transfer characteristics of the outer ear and/or neuronal processing in the ascending auditory pathway rather than by cochlear mechanics.

摘要

杂色叶口蝠的行为听觉阈值的特征是存在两个阈值最小值,在约55千赫兹处被一个不敏感区域隔开(埃塞尔和道彻尔,1996年)。为了研究这些特征是否归因于耳蜗特性,我们记录了畸变产物耳声发射(DPOAE)并计算了相对DPOAE阈值曲线,结果证明这是衡量耳蜗敏感性的一个好方法。我们的结果表明,在杂色叶口蝠中,通过DPOAE记录评估的耳蜗敏感性在55千赫兹处并未显示出阈值最大值。DPOAE阈值曲线在约30千赫兹处显示出一个绝对最小值,并且从该频率区域开始,阈值持续增加,没有任何明显的不规则性。通过DPOAE抑制调谐曲线(STC)评估的耳蜗频率调谐特性显示出较宽的滤波器带宽,Q10dB值在3.4至10.7之间。耳蜗调谐没有频率特异性特化。在行为研究中观察到的高频处后续阈值最大值和最小值的特征模式似乎是由外耳的传递特性和/或听觉上行通路中的神经元处理形成的,而不是由耳蜗力学形成的。

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