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Slow-fast control of eye movements: an instance of Zeeman's model for an action

机译:慢速控制眼球运动:Zeeman的一个动作模型的实例

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摘要

The rapid eye movements (saccades) used to transfer gaze between targets are examples of an action. The behaviour of saccades matches that of the slow-fast model of actions originally proposed by Zeeman. Here, we extend Zeeman's model by incorporating an accumulator that represents the increase in certainty of the presence of a target, together with an integrator that converts a velocity command to a position command. The saccadic behaviour of several foveate species, including human, rhesus monkey and mouse, is replicated by the augmented model. Predictions of the linear stability of the saccadic system close to equilibrium are made, and it is shown that these could be tested by applying state-space reconstruction techniques to neurophysiological recordings. Moreover, each model equation describes behaviour that can be matched to specific classes of neurons found throughout the oculomotor system, and the implication of the model is that build-up, burst and omnipause neurons are found throughout the oculomotor pathway because they constitute the simplest circuit that can produce the motor commands required to specify the trajectories of motor actions.
机译:用于在目标之间传递凝视的快速眼动(扫视)是动作的示例。扫视的行为匹配Zeeman最初提出的慢速行动模型的行为。这里,我们通过结合累加器来扩展Zeeman的模型,该累加器表示目标的存在增加,与将Velocity命令转换为位置命令的积分器。通过增强模型复制了几种FOVEATE物种的扫视行为,包括人,恒河猴和小鼠。进行了靠近均衡的扫视系统的线性稳定性的预测,并且示出了这些可以通过将状态空间重建技术应用于神经生理记录来测试。此外,每个模型方程描述了可以与整个血管系统中发现的特定神经元的特定神经元的行为,并且模型的含义是在整个血管途径途径中发现了积累,突发和全部脉冲神经元,因为它们构成了最简单的电路这可以产生指定电机动作轨迹所需的电机命令。

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