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Mathematical Modeling and Analyses of Interspike-Intervals of Spontaneous Activity in Afferent Neurons of the Zebrafish Lateral Line

机译:斑马鱼侧线传入神经元自发活动的突突间隔的数学建模和分析

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摘要

Without stimuli, hair cells spontaneously release neurotransmitter leading to spontaneous generation of action potentials (spikes) in innervating afferent neurons. We analyzed spontaneous spike patterns recorded from the lateral line of zebrafish and found that distributions of interspike intervals (ISIs) either have an exponential shape or an “L” shape that is characterized by a sharp decay but wide tail. ISI data were fitted to renewal-process models that accounted for the neuron refractory periods and hair-cell synaptic release. Modeling the timing of synaptic release using a mixture of two exponential distributions yielded the best fit for our ISI data. Additionally, lateral line ISIs displayed positive serial correlation and appeared to exhibit switching between faster and slower modes of spike generation. This pattern contrasts with previous findings from the auditory system where ISIs tended to have negative serial correlation due to synaptic depletion. We propose that afferent neuron innervation with multiple and heterogenous hair-cells synapses, each influenced by changes in calcium domains, can serve as a mechanism for the random switching behavior. Overall, our analyses provide evidence of how physiological similarities and differences between synapses and innervation patterns in the auditory, vestibular, and lateral line systems can lead to variations in spontaneous activity.
机译:如果没有刺激,毛细胞会自发释放神经递质,导致神经支配传入神经元的动作电位(尖峰)自发产生。我们分析了从斑马鱼侧线记录的自发尖峰模式,发现尖峰间间隔(ISI)的分布具有指数形状或“ L”形,其特征是急剧衰减但尾巴较宽。将ISI数据拟合到解释神经元不应期和毛细胞突触释放的更新过程模型。使用两种指数分布的混合物对突触释放的时间进行建模,可以最适合我们的ISI数据。此外,侧线ISI表现出正的序列相关性,并且似乎表现出尖峰生成的快慢模式之间的切换。这种模式与听觉系统先前的发现形成对比,在听觉系统中,由于突触消耗,ISI倾向于具有负的序列相关性。我们建议传入神经元神经与多个和异构的毛细胞突触,每个受钙域的变化影响,可以作为一种随机转换行为的机制。总体而言,我们的分析提供了有关听觉,前庭和侧线系统中突触与神经支配方式之间的生理相似性和差异如何导致自发活动变化的证据。

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