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Do we have direct access to retinal image motion during smooth pursuit eye movements?

机译:在平滑追踪眼球运动期间,我们是否可以直接获得视网膜图像运动?

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One way the visual system estimates object motion during pursuit is to combine estimates of eye velocity and retinal motion. This questions whether observers need direct access to retinal motion during pursuit. We tested this idea by varying the correlation between retinal motion and objective motion in a two-interval speed discrimination task. Responses were classified according to three motion cues: retinal speed (based on measured eye movements), objective speed, and the relative motion between pursuit target and stimulus. In the first experiment, feedback was based on relative motion and this cue fit the response curves best. In the second experiment, simultaneous relative motion was removed but observers still used the sequential relative motion between pursuit target and dot pattern to make their judgements. In a final experiment, feedback was given explicitly on the retinal motion, using online measurements of eye movements. Nevertheless, sequential relative motion still provided the best account of the data. The results suggest that observers do not have direct access to retinal motion when making perceptual judgements about movement during pursuit.
机译:视觉系统在追踪过程中估计物体运动的一种方法是将眼速度和视网膜运动的估计结合起来。这质疑观察者在追赶过程中是否需要直接进入视网膜运动。我们通过在两个间隔的速度判别任务中改变视网膜运动与目标运动之间的相关性来测试该想法。根据三个运动线索对响应进行分类:视网膜速度(基于测得的眼睛运动),客观速度以及追求目标和刺激之间的相对运动。在第一个实验中,反馈是基于相对运动的,该提示最适合响应曲线。在第二个实验中,同时的相对运动被删除,但是观察者仍然使用追踪目标和点阵图形之间的顺序相对运动来做出判断。在最后的实验中,通过在线测量眼动,明确给出了视网膜运动的反馈。然而,顺序的相对运动仍然提供了最好的数据解释。结果表明,观察者在对追赶过程中的运动做出感知判断时无法直接获得视网膜运动。

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