Suppr超能文献

圆窗处神经电活动频谱的决定因素:递质释放与神经去极化。

Determinants of the spectrum of the neural electrical activity at the round window: transmitter release and neural depolarisation.

作者信息

Patuzzi R B, Brown D J, McMahon C M, Halliday A F

机构信息

The Auditory Laboratory, Department of Physiology, M311, University of Western Australia, Crawley, WA 6009, Australia.

出版信息

Hear Res. 2004 Apr;190(1-2):87-108. doi: 10.1016/S0378-5955(03)00405-2.

Abstract

In this paper we summarise the changes we have observed in the electrical activity at the round window (RW) of guinea pigs during transient cooling of the RW or cochlear nucleus (CN), transient hypoxia, low frequency acoustic biasing, ablation of the CN, and DC current injection into the basal cochlear turn. We have measured the compound action potential (CAP), the spectrum of the average CAP waveform (SAW) evoked by brief tone-bursts, and the spectrum of the neural noise (SNN). We discuss how the changes we have observed can be understood in terms of changes in transmitter release from inner hair cells (that controls stochastic neural firing), or changes in the membrane potential of the primary afferent neurones (that controls the neural firing waveshape and the spectral content of the SAW and SNN). We note that changes in sound intensity produce a simple increase in the stochastic release of transmitter from inner hair cells, without much change in the waveform of the neural response, but manipulations of the auditory brainstem, cooling and current injection all appear to alter neural firing rate and the neural response waveform, producing a baseline shift in the CAP and changes in 1000 Hz peak and low frequency content of the SAW and SNN. We also discuss the use of the CAP, SAW and SNN as an indication of cochlear and auditory brainstem neural activity.

摘要

在本文中,我们总结了在豚鼠圆窗(RW)或耳蜗核(CN)短暂冷却、短暂缺氧、低频声学偏置、CN切除以及向耳蜗基底转注入直流电流期间,我们所观察到的圆窗电活动的变化。我们测量了复合动作电位(CAP)、由短音爆诱发的平均CAP波形的频谱(SAW)以及神经噪声的频谱(SNN)。我们讨论了如何根据从内毛细胞释放的递质变化(控制随机神经放电)或初级传入神经元膜电位的变化(控制神经放电波形以及SAW和SNN的频谱内容)来理解我们所观察到的变化。我们注意到,声音强度的变化会使内毛细胞递质的随机释放简单增加,而神经反应波形变化不大,但对听觉脑干的操作、冷却和电流注入似乎都会改变神经放电率和神经反应波形,导致CAP出现基线偏移以及SAW和SNN的1000Hz峰值和低频成分发生变化。我们还讨论了使用CAP、SAW和SNN作为耳蜗和听觉脑干神经活动指标的情况。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验