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共同注意对航向感知和三维物体运动感知的不同影响。

Differential effects of shared attention on perception of heading and 3-D object motion.

作者信息

Royden C S, Hildreth E C

机构信息

Department of Computer Science, Wellesley College, MA 02481, USA.

出版信息

Percept Psychophys. 1999 Jan;61(1):120-33. doi: 10.3758/bf03211953.

Abstract

When a person moves in a straight line through a stationary environment, the images of object surfaces move in a radial pattern away from a single point. This point, known as the focus of expansion (FOE), corresponds to the person's direction of motion. People judge their heading from image motion quite well in this situation. They perform most accurately when they can see the region around the FOE, which contains the most useful information for this task. Furthermore, a large moving object in the scene has no effect on observer heading judgments unless it obscures the FOE. Therefore, observers may obtain the most accurate heading judgments by focusing their attention on the region around the FOE. However, in many situations (e.g., driving), the observer must pay attention to other moving objects in the scene (e.g., cars and pedestrians) to avoid collisions. These objects may be located far from the FOE in the visual field. We tested whether people can accurately judge their heading and the three-dimensional (3-D) motion of objects while paying attention to one or the other task. The results show that differential allocation of attention affects people's ability to judge 3-D object motion much more than it affects their ability to judge heading. This suggests that heading judgments are computed globally, whereas judgments about object motion may require more focused attention.

摘要

当一个人在静止的环境中沿直线移动时,物体表面的图像会以径向模式从一个单点向外移动。这个点,即所谓的扩展焦点(FOE),与该人的运动方向相对应。在这种情况下,人们能根据图像运动很好地判断自己的前进方向。当他们能够看到FOE周围的区域时,判断最为准确,因为该区域包含了完成这项任务最有用的信息。此外,场景中一个大的移动物体对观察者的前进方向判断没有影响,除非它遮挡了FOE。因此,观察者通过将注意力集中在FOE周围的区域,可能会获得最准确的前进方向判断。然而,在许多情况下(例如开车时),观察者必须注意场景中的其他移动物体(例如汽车和行人)以避免碰撞。这些物体在视野中可能离FOE很远。我们测试了人们在关注其中一项任务时,是否能够准确判断自己的前进方向以及物体的三维(3-D)运动。结果表明,注意力的不同分配对人们判断三维物体运动能力的影响,远大于对其判断前进方向能力的影响。这表明前进方向的判断是全局计算的,而关于物体运动的判断可能需要更集中的注意力。

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