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Cortical Mechanisms of Smooth Eye Movements Revealed by Dynamic Covariations of Neural and Behavioral Responses

机译:神经和行为反应的动态协变量揭示了平滑眼球运动的皮质机制

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摘要

SUMMARYNeural activity in the frontal eye fields controls smooth pursuit eye movements, but the relationship between single neuron responses, cortical population responses, and eye movements is not well understood. We describe an approach to dynamically link trial-to-trial fluctuations in neural responses to parallel variations in pursuit and demonstrate that individual neurons predict eye velocity fluctuations at particular moments during the course of behavior, while the population of neurons collectively tiles the entire duration of the movement. The analysis also reveals the strength of correlations in the eye movement predictions derived from pairs of simultaneously recorded neurons and suggests a simple model of cortical processing. These findings constrain the primate cortical code for movement, suggesting that either a few neurons are sufficient to drive pursuit at any given time or that many neurons operate collectively at each moment with remarkably little variation added to motor command signals downstream from the cortex.
机译:发明内容额眼中的神经活动控制着平滑的追逐眼球运动,但是对单个神经元反应,皮层人口反应和眼球运动之间的关系尚不十分了解。我们描述了一种将神经反应中的试验到试验波动与追求中的平行变化动态链接的方法,并证明了单个神经元会预测行为过程中特定时刻的眼速度波动,而神经元的总体上共同分散了整个持续时间。运动。该分析还揭示了从成对同时记录的神经元得出的眼动预测中相关性的强度,并提出了一个简单的皮层处理模型。这些发现限制了灵长类动物皮层运动的编码,表明要么在任何给定时间足以驱动少数神经元,要么在每个时刻许多神经元共同起作用,而皮层下游的运动命令信号却几乎没有变化。

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