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用于评估自我运动期间物体运动的光流处理。

Optic flow processing for the assessment of object movement during ego movement.

机构信息

Wales Institute of Cognitive Neuroscience, School of Psychology, Cardiff University, Cardiff CF10 3AT, UK.

出版信息

Curr Biol. 2009 Sep 29;19(18):1555-60. doi: 10.1016/j.cub.2009.07.057. Epub 2009 Aug 20.

Abstract

The vast majority of research on optic flow (retinal motion arising because of observer movement) has focused on its use in heading recovery and guidance of locomotion. Here we demonstrate that optic flow processing has an important role in the detection and estimation of scene-relative object movement during self movement. To do this, the brain identifies and globally discounts (i.e., subtracts) optic flow patterns across the visual scene-a process called flow parsing. Remaining motion can then be attributed to other objects in the scene. In two experiments, stationary observers viewed radial expansion flow fields and a moving probe at various onscreen locations. Consistent with global discounting, perceived probe motion had a significant component toward the center of the display and the magnitude of this component increased with probe eccentricity. The contribution of local motion processing to this effect was small compared to that of global processing (experiment 1). Furthermore, global discounting was clearly implicated because these effects persisted even when all the flow in the hemifield containing the probe was removed (experiment 2). Global processing of optic flow information is shown to play a fundamental role in the recovery of object movement during ego movement.

摘要

绝大多数关于光流(由于观察者运动而产生的视网膜运动)的研究都集中在它在头部恢复和运动导向中的应用。在这里,我们证明了光流处理在自我运动过程中对场景相关物体运动的检测和估计中具有重要作用。为此,大脑会识别并全局折扣(即减去)整个视觉场景中的光流模式——这一过程称为流解析。剩下的运动则可以归因于场景中的其他物体。在两项实验中,静止的观察者观看了径向膨胀的流场和在屏幕上不同位置移动的探针。与全局折扣一致,感知到的探针运动有一个显著的朝向显示器中心的分量,并且这个分量随着探针的偏心距增大而增大。与全局处理相比,局部运动处理对此效应的贡献很小(实验 1)。此外,即使移除包含探针的半视野中的所有光流,这种效应仍然存在(实验 2),这表明全局折扣的影响明显。光流信息的全局处理被证明在自我运动中恢复物体运动中起着基本作用。

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