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首页> 外文期刊>Journal of Neurophysiology >Asynchrony between position and motion signals in the saccadic system.
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Asynchrony between position and motion signals in the saccadic system.

机译:声频系统中位置和运动信号之间的异步。

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摘要

The influence of position and motion signals on saccades was studied in two dimensions (2D) using a double step-ramp paradigm. We showed the presence of a predictive component in 2D catch-up saccade programming that is based on motion signals and influences both saccade amplitude and orientation. Interestingly, a significant proportion of catch-up saccades was characterized by a large curvature or a sudden change of direction in midflight for large values of retinal slip. For these saccades, a quantitative analysis showed that their trajectory could be explained by an asynchrony between position and motion signals in saccade programming. When the saccade trajectory was not straight, position error was always available first and influenced the initial orientation of the saccade, whereas retinal slip determined the final orientation. This new paradigm could be used in electrophysiological experiments, where it should prove to be very useful to study position and motion pathways separately in catch-up saccades.
机译:位置和运动信号对扫视的影响是在二维(2D)中使用双步斜坡范例研究的。我们显示了2D追赶扫视编程中存在一个预测分量,该预测分量基于运动信号并影响扫视幅度和方向。有趣的是,对于大范围的视网膜滑移,很大一部分赶上扫视的特征是在飞行中曲率较大或方向突然改变。对于这些扫视运动,定量分析表明,其运动轨迹可以通过扫视运动编程中位置信号和运动信号之间的异步来解释。当扫视轨迹不平直时,总是会首先出现位置误差,并且会影响扫视的初始方向,而视网膜滑移决定了最终方向。这种新的范例可以用于电生理实验,在单独研究追赶扫视中的位置和运动路径时,应该被证明是非常有用的。

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