首页> 外文期刊>The Journal of Comparative Neurology >Auditory efferent feedback system deficits precede age-related hearing loss: contralateral suppression of otoacoustic emissions in mice.
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Auditory efferent feedback system deficits precede age-related hearing loss: contralateral suppression of otoacoustic emissions in mice.

机译:听觉传出反馈系统缺陷先于与年龄有关的听力丧失:对侧抑制小鼠耳声发射。

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The C57BL/6J mouse has been a useful model of presbycusis, as it displays an accelerated age-related peripheral hearing loss. The medial olivocochlear efferent feedback (MOC) system plays a role in suppressing cochlear outer hair cell (OHC) responses, particularly for background noise. Neurons of the MOC system are located in the superior olivary complex, particularly in the dorsomedial periolivary nucleus (DMPO) and in the ventral nucleus of the trapezoid body (VNTB). We previously discovered that the function of the MOC system declines with age prior to OHC degeneration, as measured by contralateral suppression (CS) of distortion product otoacoustic emissions (DPOAEs) in humans and CBA mice. The present study aimed to determine the time course of age changes in MOC function in C57s. DPOAE amplitudes and CS of DPOAEs were collected for C57s from 6 to 40 weeks of age. MOC responses were observed at 6 weeks but were gone at middle (15-30 kHz) and high (30-45 kHz) frequencies by 8 weeks. Quantitative stereological analyses of Nissl sections revealed smaller neurons in the DMPO and VNTB of young adult C57s compared with CBAs. These findings suggest that reduced neuron size may underlie part of the noteworthy rapid decline of the C57 efferent system. In conclusion, the C57 mouse has MOC function at 6 weeks, but it declines quickly, preceding the progression of peripheral age-related sensitivity deficits and hearing loss in this mouse strain.
机译:C57BL / 6J小鼠因其与年龄相关的周围性听力丧失而加速发展,因此已成为老年性耳聋的有用模型。内侧小耳蜗传出反馈(MOC)系统在抑制耳蜗外毛细胞(OHC)响应,尤其是背景噪音方面起着作用。 MOC系统的神经元位于上橄榄复合体中,特别是在背卵周橄榄核(DMPO)和梯形体的腹核(VNTB)中。我们先前发现,通过对人类和CBA小鼠的畸变产物耳声发射(DPOAEs)进行对侧抑制(CS)可以测量,在OHC变性之前,MOC系统的功能会随着年龄的增长而下降。本研究旨在确定C57s中MOC功能的年龄变化的时程。收集了6至40周龄的C57的DPOAE的DPOAE振幅和CS。在6周时观察到MOC响应,但到8周时在中频(15-30 kHz)和高频(30-45 kHz)消失。 Nissl切片的定量立体分析显示,与CBA相比,年轻成人C57的DMPO和VNTB中的神经元较小。这些发现表明,神经元大小的减少可能是C57传出系统迅速下降的部分原因。总之,C57小鼠在第6周具有MOC功能,但在此小鼠品系出现周围年龄相关的敏感性缺陷和听力下降之前,它会迅速下降。

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