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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >A Model of Synaptic Vesicle-Pool Depletion and Replenishment Can Account for the Interspike Interval Distributions and Nonrenewal Properties of Spontaneous Spike Trains of Auditory-Nerve Fibers
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A Model of Synaptic Vesicle-Pool Depletion and Replenishment Can Account for the Interspike Interval Distributions and Nonrenewal Properties of Spontaneous Spike Trains of Auditory-Nerve Fibers

机译:突触囊泡消耗和补给的模型可以解释听觉神经纤维自发尖峰序列的尖峰间隔时间间隔和非更新特性。

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In mammalian auditory systems, the spiking characteristics of each primary afferent (type I auditory-nerve fiber; ANF) are mainly determined by a single ribbon synapse in a single receptor cell (inner hair cell; IHC). ANF spike trains therefore provide a window into the operation of these synapses and cells. It was demonstrated previously (Heil et al., 2007) that the distribution of interspike intervals (ISIs) of cat ANFs during spontaneous activity can be modeled as resulting from refractoriness operating on a non-Poisson stochastic point process of excitation (transmitter release events from the IHC). Here, we investigate nonrenewal properties of these cat-ANF spontaneous spike trains, manifest as negative serial ISI correlations and reduced spike-count variability over short timescales. A previously discussed excitatory process, the constrained failure of events from a homogeneous Poisson point process, can account for these properties, but does not offer a parsimonious explanation for certain trends in the data. We then investigate a three-parameter model of vesicle-pool depletion and replenishment and find that it accounts for all experimental observations, including the ISI distributions, with only the release probability varying between spike trains. The maximum number of units (single vesicles or groups of simultaneously released vesicles) in the readily releasable pool and their replenishment time constant can be assumed to be constant (similar to 4 and 13.5 ms, respectively). We suggest that the organization of the IHC ribbon synapses not only enables sustained release of neurotransmitter but also imposes temporal regularity on the release process, particularly when operating at high rates.
机译:在哺乳动物的听觉系统中,每个主要传入神经(I型听觉神经纤维; ANF)的突增特征主要由单个受体细胞(内部毛细胞; IHC)中的单个带状突触决定。因此,ANF尖峰序列为了解这些突触和细胞的运作提供了一个窗口。先前已经证明(Heil等人,2007),可以将猫ANF的自发活动间期间隔(ISI)的分布建模为由在非泊松随机点激发过程中产生的耐火性(来自IHC)。在这里,我们调查了这些cat-ANF自发尖峰序列的非更新特性,表现为负序列ISI相关性,并在短时间内减少了尖峰计数的变异性。先前讨论的兴奋过程,即均质Poisson点过程导致事件的受限失败,可以解释这些属性,但不能为数据的某些趋势提供简化的解释。然后,我们研究了囊泡消耗和补给的三参数模型,发现该模型考虑了所有实验观察结果,包括ISI分布,只有峰值序列之间的释放概率不同。易释放池中的最大单位数目(单个囊泡或一组同时释放的囊泡)及其补给时间常数可以假定为常数(分别类似于4和13.5 ms)。我们建议,IHC功能区突触的组织不仅使神经递质得以持续释放,而且还对释放过程施加了时间规律性,特别是在高速率操作时。

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