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Catch-up saccades in head-unrestrained conditions reveal that saccade amplitude is corrected using an internal model of target movement

机译:在头部不受约束的情况下追赶扫视表明扫视幅度是使用目标运动的内部模型进行校正的

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摘要

This study analyzes how human participants combine saccadic and pursuit gaze movements when they track an oscillating target moving along a randomly oriented straight line with the head free to move. We found that to track the moving target appropriately, participants triggered more saccades with increasing target oscillation frequency to compensate for imperfect tracking gains. Our sinusoidal paradigm allowed us to show that saccade amplitude was better correlated with internal estimates of position and velocity error at saccade onset than with those parameters 100 ms before saccade onset as head-restrained studies have shown. An analysis of saccadic onset time revealed that most of the saccades were triggered when the target was accelerating. Finally, we found that most saccades were triggered when small position errors were combined with large velocity errors at saccade onset. This could explain why saccade amplitude was better correlated with velocity error than with position error. Therefore, our results indicate that the triggering mechanism of head-unrestrained catch-up saccades combines position and velocity error at saccade onset to program and correct saccade amplitude rather than using sensory information 100 ms before saccade onset.
机译:这项研究分析了人类参与者如何跟踪沿着随机定向的直线且头部自由移动的摆动目标时,他们如何结合扫视和追踪注视运动。我们发现,为了适当地跟踪运动目标,参与者会随着目标振荡频率的增加触发更多的扫视,以补偿不完美的跟踪增益。正弦曲线范式允许我们证明,扫视幅度与扫视开始时位置和速度误差的内部估计的相关性比扫视开始前100 ms的那些参数更好,如头部约束研究所示。对眼跳开始时间的分析显示,大多数扫视是在目标加速时触发的。最后,我们发现,在扫视起跳时,将较小的位置误差与较大的速度误差结合在一起时,将触发大多数扫视。这可以解释为什么扫视幅度与速度误差比与位置误差更好地相关。因此,我们的结果表明,头部不受约束的追赶扫视的触发机制结合了扫视开始时的位置和速度误差来编程和校正扫视幅度,而不是在扫视开始前100 ms使用感官信息。

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