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听觉过度刺激后龙猫脑干轴突的退化。

Degeneration of axons in the brainstem of the chinchilla after auditory overstimulation.

作者信息

Kim J, Morest D K, Bohne B A

机构信息

Department of Anatomy, School of Medicine, University of Connecticut Health Center, Farmington 06030, USA.

出版信息

Hear Res. 1997 Jan;103(1-2):169-91. doi: 10.1016/s0378-5955(96)00173-6.

Abstract

The patterns of axonal degeneration following acoustic overstimulation of the cochlea were traced in the brainstem of adult chinchillas. The Nauta-Rasmussen method for axonal degeneration was used following survivals of 1-32 days after a 105 min exposure to an octave-band noise with a center frequency of 4 kHz and a sound pressure level of 108 dB. Hair-cell and myelinated nerve-fiber loss were assessed in the cochlea. The cochleotopic pattern of terminal degeneration in the ventral cochlear nucleus correlated with the sites of myelinated fiber and inner-hair-cell loss: this correlation was less rigorous with outer-hair-cell loss, especially in the dorsal cochlear nucleus. These results are consistent with a dystrophic process with a slow time course depending on hair-cell loss and/or direct cochlear nerve-fiber damage. However, in a number of cases with no damage in the apical cochlea, fine fiber degeneration occurred with a faster course in low-frequency regions in the dorsal cochlear nucleus and, transynaptically, in a non-cochleotopic pattern in the superior olive and inferior colliculus. These findings suggest that neuronal hyperactivity plays a role in the central degeneration following acoustic overstimulation, possibly by an excitotoxic process.

摘要

在成年龙猫的脑干中追踪了耳蜗受到声学过度刺激后轴突退变的模式。在暴露于中心频率为4 kHz、声压级为108 dB的倍频程噪声105分钟后,分别存活1 - 32天,采用Nauta - Rasmussen轴突退变方法。评估耳蜗中的毛细胞和有髓神经纤维损失。耳蜗腹侧核中终末退变的耳蜗拓扑模式与有髓纤维和内毛细胞损失的部位相关:与外毛细胞损失的相关性则较弱,尤其是在耳蜗背侧核中。这些结果与一个依赖于毛细胞损失和/或直接耳蜗神经纤维损伤、具有缓慢时间进程的营养不良过程一致。然而,在一些耳蜗顶部未受损的情况下,在耳蜗背侧核的低频区域出现了较快进程的细纤维退变,并经突触传递,在上橄榄核和下丘中呈现非耳蜗拓扑模式。这些发现表明,神经元活动亢进可能通过兴奋性毒性过程,在声学过度刺激后的中枢退变中发挥作用。

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