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Neuronal Variability of MSTd Neurons Changes Differentially With Eye Movement and Visually Related Variables

机译:MSTd神经元的神经元变异性随眼球运动和视觉相关变量的不同而变化

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摘要

Neurons in macaque cortical area MSTd are driven by visual motion and eye movement related signals. This multimodal characteristic makes MSTd an ideal system for studying the dependence of neuronal activity on different variables. Here, we analyzed the temporal structure of spiking patterns during visual motion stimulation using 2 distinct behavioral paradigms: fixation (FIX) and optokinetic response. For the FIX condition, inter- and intra-trial variability of spiking activity decreased with increasing stimulus strength, complying with a recent neurophysiological study reporting stimulus-related decline of neuronal variability. In contrast, for the optokinetic condition variability increased together with increasing eye velocity while retinal image velocity remained low. Analysis of stimulus signal variability revealed a correlation between the normalized variance of image velocity and neuronal variability, but no correlation with normalized eye velocity variance. We further show that the observed difference in neuronal variability allows classifying spike trains according to the paradigm used, even when mean firing rates (FRs) were similar. The stimulus-dependence of neuronal variability may result from the local network structure and/or the variability characteristics of the input signals, but may also reflect additional timing-based mechanisms independent of the neuron's mean FR and related to the modality driving the neuron.
机译:猕猴皮层区MSTd中的神经元受与视觉运动和眼睛运动有关的信号驱动。这种多峰特性使MSTd成为研究神经元活动对不同变量的依赖性的理想系统。在这里,我们使用2种不同的行为范例:固定(FIX)和光动力学反应,分析了视觉运动刺激过程中尖峰模式的时间结构。对于FIX条件,刺耳活动的试验间和试验间变异性随刺激强度的增加而降低,符合最近的神经生理学研究,该研究报告了与刺激有关的神经元变异性下降。相反,对于视动条件,变异性随眼睛速度的增加而增加,而视网膜图像速度保持较低。刺激信号变异性的分析显示图像速度的标准化方差与神经元变异性之间存在相关性,而与眼睛速度的标准化方差无相关性。我们进一步表明,即使平均发声率(FR)相似,所观察到的神经元变异性差异也可以根据所使用的范例对穗状花序进行分类。神经元可变性的刺激依赖性可能是由于本地网络结构和/或输入信号的可变性特征引起的,但也可能反映了独立于神经元平均FR并与驱动神经元的方式有关的其他基于计时的机制。

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