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Perception of acceleration in motion-in-depth with only monocular and both monocular and binocular information

机译:仅具有单眼以及单眼和双眼信息的深度运动加速度感知

摘要

Observers are often required to adjust actions with objects that change their speed. However, no evidence for a direct sense of acceleration has been found so far. Instead, observers seem to detect changes in velocity within a temporal window when confronted with motion in the frontal plane (2D motion). Furthermore, recent studies suggest that motion-in-depth is detected by tracking changes of position in depth. Therefore, in order to sense acceleration in depth a kind of second-order computation would have to be carried out by the visual system. In two experiments, we show that observers misperceive acceleration of head-on approaches at least within the ranges we used [600-800 ms] resulting in an overestimation of arrival time. Regardless of the viewing condition (only monocular or monocular and binocular), the response pattern conformed to a constant velocity strategy. However, when binocular information was available, overestimation was highly reduced.
机译:观察者通常需要使用改变其速度的对象来调整动作。但是,到目前为止,尚未发现直接加速感的证据。取而代之的是,观察者似乎面对前平面中的运动(2D运动)时,会检测到时间窗口内的速度变化。此外,最近的研究表明,通过跟踪深度位置的变化可以检测到深度运动。因此,为了感测深度加速度,视觉系统将必须执行一种二阶计算。在两个实验中,我们表明观察者至少在我们使用的[600-800 ms]范围内误认为了正面接近的加速度,从而导致高估了到达时间。不论观看条件如何(仅单眼或单眼和双眼),响应模式均符合恒速策略。但是,当可以获得双目信息时,高估就大大减少了。

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