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Adaptation of catch-up saccades during the initiation of smooth pursuit eye movements

机译:在开始平稳追踪眼球运动期间适应追赶扫视

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Reduction of retinal speed and alignment of the line of sight are believed to be the respective primary functions of smooth pursuit and saccadic eye movements. As the eye muscles strength can change in the short-term, continuous adjustments of motor signals are required to achieve constant accuracy. While adaptation of saccade amplitude to systematic position errors has been extensively studied, we know less about the adaptive response to position errors during smooth pursuit initiation, when target motion has to be taken into account to program saccades, and when position errors at the saccade endpoint could also be corrected by increasing pursuit velocity. To study short-term adaptation (250 adaptation trials) of tracking eye movements, we introduced a position error during the first catch-up saccade made during the initiation of smooth pursuit—in a ramp-step-ramp paradigm. The target position was either shifted in the direction of the horizontally moving target (forward step), against it (backward step) or orthogonally to it (vertical step). Results indicate adaptation of catch-up saccade amplitude to back and forward steps. With vertical steps, saccades became oblique, by an inflexion of the early or late saccade trajectory. With a similar time course, post-saccadic pursuit velocity was increased in the step direction, adding further evidence that under some conditions pursuit and saccades can act synergistically to reduce position errors.
机译:视网膜速度的降低和视线的对准被认为是平稳追赶和眼跳运动的各自主要功能。由于眼部肌肉的力量会在短期内发生变化,因此需要对运动信号进行连续调整以达到恒定的精度。尽管已经广泛研究了扫视幅度对系统位置误差的适应性,但我们对平滑跟踪启动过程中,编程扫视必须考虑目标运动以及扫视端点处的位置误差时对位置误差的自适应响应知之甚少也可以通过提高追踪速度来纠正。为了研究跟踪眼睛运动的短期适应性(250适应性试验),我们在平滑追随开始时的第一个追赶扫视过程中引入了位置误差,这是一种渐变-渐变-渐变的范例。目标位置在水平移动目标的方向上(向前移动),相对于目标位置(向后移动)或垂直于目标位置(垂直移动)移动。结果表明追赶扫视幅度适应后退和前进步伐。在垂直阶梯的作用下,扫视的轨迹变得倾斜,因为扫视的轨迹是早期或晚期。在类似的时间过程中,步后方向的步调后追赶速度有所提高,这进一步证明了在某些条件下追赶和扫视可以协同作用以减少位置误差。

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