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Estimation of the synaptic input firing rates and characterization of the stimulation effects in an auditory neuron

机译:估计突触输入发动率和听神经元的刺激作用的表征

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摘要

To understand information processing in neuronal circuits, it is important to infer how a sensory stimulus impacts on the synaptic input to a neuron. An increase in neuronal firing during the stimulation results from pure excitation or from a combination of excitation and inhibition. Here, we develop a method for estimating the rates of the excitatory and inhibitory synaptic inputs from a membrane voltage trace of a neuron. The method is based on a modified Ornstein-Uhlenbeck neuronal model, which aims to describe the stimulation effects on the synaptic input. The method is tested using a single-compartment neuron model with a realistic description of synaptic inputs, and it is applied to an intracellular voltage trace recorded from an auditory neuron in vivo. We find that the excitatory and inhibitory inputs increase during stimulation, suggesting that the acoustic stimuli are encoded by a combination of excitation and inhibition.
机译:为了理解神经元回路中的信息处理,重要的是推断感觉刺激如何影响神经元的突触输入。在刺激过程中神经元放电的增加是由于纯粹的兴奋或兴奋与抑制的结合。在这里,我们开发了一种方法,用于从神经元的膜电压曲线估算兴奋性和抑制性突触输入的速率。该方法基于改良的Ornstein-Uhlenbeck神经元模型,该模型旨在描述对突触输入的刺激作用。使用单室神经元模型对突触输入进行实际描述,对该方法进行了测试,并将该方法应用于体内从听觉神经元记录的细胞内电压轨迹。我们发现在刺激过程中,兴奋性和抑制性输入增加,这表明声刺激是由激发和抑制的组合编码的。

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