A modiolar-pillar gradient in auditory-nerve dendritic length: A novel post-synaptic contribution to dynamic range?

IF 2.5 2区 医学 Q1 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY
Serhii Kostrikov , Jens Hjortkjaer , Torsten Dau , Gabriel Corfas , Leslie D. Liberman , M. Charles Liberman
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Abstract

Auditory-nerve fibers (ANFs) from a given cochlear region can vary in threshold sensitivity by up to 60 dB, corresponding to a 1000-fold difference in stimulus level, although each fiber innervates a single inner hair cell (IHC) via a single synapse. ANFs with high-thresholds also have low spontaneous rates (SRs) and synapse on the side of the IHC closer to the modiolus, whereas the low-threshold, high-SR fibers synapse on the side closer to the pillar cells. Prior biophysical work has identified modiolar-pillar differences in both pre- and post-synaptic properties, but a comprehensive explanation for the wide range of sensitivities remains elusive. Here, in guinea pigs, we used immunostaining for several neuronal markers, including Caspr, a key protein in nodes of Ranvier, to reveal a novel modiolar-pillar gradient in the location of the first ANF heminodes, presumed to be the site of the spike generator, just outside the sensory epithelium. Along the cochlea, from apex to base, the unmyelinated terminal dendrites of modiolar ANFs were 2–4 times longer than those of pillar ANFs. This modiolar-pillar gradient in dendritic length, coupled with the 2–4 fold smaller caliber of modiolar dendrites seen in prior single-fiber labeling studies, suggests there could be a large difference in the number of length constants between the synapse and the spike initiation zone for low- vs high-SR fibers. The resultant differences in attenuation of post-synaptic potentials propagating along these unmyelinated dendrites could be a key contributor to the observed range of threshold sensitivities among ANFs.
听觉神经树突长度的模柱-柱梯度:突触后对动态范围的新贡献?
来自耳蜗特定区域的听神经纤维(ANFs)的阈值灵敏度差异可达60 dB,对应于刺激水平的1000倍差异,尽管每条纤维通过单个突触支配单个内毛细胞(IHC)。具有高阈值的anf也具有低自发率(SRs),并且突触位于靠近小梁的IHC一侧,而低阈值的高sr纤维突触位于靠近柱细胞的一侧。先前的生物物理工作已经确定了突触前和突触后特性的模柱差异,但对广泛的敏感性的全面解释仍然难以捉摸。在这里,在豚鼠中,我们使用了几种神经元标记物的免疫染色,包括Ranvier淋巴结中的关键蛋白Caspr,以揭示在第一ANF heminodes位置的一种新的modiolar-pillar梯度,假定是spike产生的位置,就在感觉上皮外。沿耳蜗方向,从耳尖到耳底,无髓鞘的毛母细胞终末树突比柱状毛母细胞长2 ~ 4倍。这种树突长度上的模摩尔-柱梯度,再加上在先前的单纤维标记研究中看到的模摩尔树突直径小2-4倍,表明在低sr纤维和高sr纤维中,突触和spike起始区之间的长度常数数量可能存在很大差异。由此产生的突触后电位沿这些无髓鞘树突传播的衰减差异可能是观察到的anf阈值敏感性范围的关键因素。
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来源期刊
Hearing Research
Hearing Research 医学-耳鼻喉科学
CiteScore
5.30
自引率
14.30%
发文量
163
审稿时长
75 days
期刊介绍: The aim of the journal is to provide a forum for papers concerned with basic peripheral and central auditory mechanisms. Emphasis is on experimental and clinical studies, but theoretical and methodological papers will also be considered. The journal publishes original research papers, review and mini- review articles, rapid communications, method/protocol and perspective articles. Papers submitted should deal with auditory anatomy, physiology, psychophysics, imaging, modeling and behavioural studies in animals and humans, as well as hearing aids and cochlear implants. Papers dealing with the vestibular system are also considered for publication. Papers on comparative aspects of hearing and on effects of drugs and environmental contaminants on hearing function will also be considered. Clinical papers will be accepted when they contribute to the understanding of normal and pathological hearing functions.
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