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Maps and sensorimotor transformations for eye-head gaze shifts: Role of the midbrain superior colliculus

机译:地图和感觉运动转换的眼头注视转移:中脑上丘的作用。

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摘要

Single-unit recordings in head-restrained monkeys indicated that the population of saccade-related cells in the midbrain Superior Colliculus (SC) encodes the kinematics of desired straight saccade trajectories by the cumulative number of spikes. In addition, the nonlinear main sequence of saccades (their amplitude–peak velocity saturation) emerges from a spatial gradient of peak-firing rates of collicular neurons, rather than from neural saturation at brain-stem burst generators. We here extend this idea to eye-head gaze shifts and illustrate how the cumulative spike-count in head-unrestrained monkeys relates to the desired gaze trajectory and its kinematics. We argue that the output of the motor SC is an abstract desired gaze-motor signal, which drives in a feedforward way the instantaneous kinematics of ongoing gaze shifts, including the strong influence of initial eye position on gaze kinematics. We propose that the neural population acts as a vectorial gaze pulse-generator for eye-head saccades, which is sub-sequently decomposed into signals that drive both motor systems in appropriate craniocentric reference frames within a dynamic gaze-velocity feedback loop.
机译:头部受约束的猴子的单单位记录表明,中脑上腔囊(SC)中与扫视相关的细胞的数量通过峰值的累积数量来编码所需的直扫视轨迹的运动学。另外,扫视的非线性主序列(其振幅-峰值速度饱和)来自于胶状神经元的峰值发射速率的空间梯度,而不是源自脑干爆发发生器的神经饱和。在这里,我们将这个想法扩展到眼神的视线移动,并说明头部不受约束的猴子中的累积尖峰计数与所需的视线轨迹及其运动学之间的关系。我们认为,电动机SC的输出是抽象的期望凝视-电动机信号,它以前馈方式驱动正在进行的凝视移动的瞬时运动学,包括初始眼睛位置对凝视运动学的强烈影响。我们建议神经群体充当眼球扫视的矢量凝视脉冲发生器,随后将其分解为在动态凝视速度反馈回路内的适当颅中心参考系中驱动两个电机系统的信号。

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