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Detection of collision events on curved trajectories: Optical information from invariant rate-of-bearing change

机译:检测弯曲轨迹上的碰撞事件:来自不变承载率变化的光学信息

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Previous research (Andersen & Kim, 2001) has shown that a linear trajectory collision event (i.e., a collision between a moving object and an observer) is specified by objects that expand and maintain a constant bearing (the object location remains constant in the visual field). In the present study, we examined the optical information for detecting a collision event when the trajectory was of constant curvature. Under these conditions, a collision event is specified by expansion of an object and a constant rate-of-bearing change. Three experiments were conducted in which trajectory curvature and display duration were varied while time to contact, speed, and initial image position of the collision objects were maintained. The results indicated that collision detection performance decreased with an increase in trajectory curvature and decreased with a decrease in display duration, especially for highly curved trajectories. In Experiment 3, we found that the presentation of a constant rate-of-bearing change in noncollision stimuli resulted in an increase in the false alarm rate. These results demonstrate that observers can detect collision events on curved trajectories and that observers utilize bearing change information.
机译:先前的研究(Andersen和Kim,2001年)表明,线性轨迹碰撞事件(即,运动物体与观察者之间的碰撞)由扩展并保持恒定方位的物体指定(物体位置在视觉上保持恒定)。领域)。在本研究中,我们研究了当轨迹为恒定曲率时用于检测碰撞事件的光学信息。在这些条件下,碰撞事件是通过物体的膨胀和恒定的承载率变化来指定的。进行了三个实验,其中改变了轨迹曲率和显示持续时间,同时保持了碰撞对象的接触时间,速度和初始图像位置。结果表明,碰撞检测性能随着轨迹曲率的增加而降低,并且随着显示时间的减少而降低,特别是对于高度弯曲的轨迹。在实验3中,我们发现非碰撞刺激中恒定的轴承变化率的呈现导致虚警率的增加。这些结果表明观察者可以检测到弯曲轨迹上的碰撞事件,并且观察者可以利用方位变化信息。

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