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闪光对移动点的吸引。

Attraction of flashes to moving dots.

作者信息

Yilmaz Ozgur, Tripathy Srimant P, Patel Saumil S, Ogmen Haluk

机构信息

University of Houston, Department of Electrical and Computer Engineering, Houston, TX 77204-4005, USA.

出版信息

Vision Res. 2007 Sep;47(20):2603-15. doi: 10.1016/j.visres.2007.06.017. Epub 2007 Aug 13.

Abstract

Motion is known to distort visual space, producing illusory mislocalizations for flashed objects. Previously, it has been shown that when a stationary bar is flashed in the proximity of a moving stimulus, the position of the flashed bar appears to be shifted in the direction of nearby motion. A model consisting of predictive projections from the sub-system that processes motion information onto the sub-system that processes position information can explain this illusory position shift of a stationary flashed bar in the direction of motion. Based on this model of motion-position interactions, we predict that the perceived position of a flashed stimulus should also be attracted towards a nearby moving stimulus. In the first experiment, observers judged the perceived vertical position of a flash with respect to two horizontally moving dots of unequal contrast. The results of this experiment were in agreement with our prediction of attraction towards the high contrast dot. We obtained similar findings when the moving dots were replaced by drifting gratings of unequal contrast. In control experiments, we found that neither attention nor eye movements can account for this illusion. We propose that the visual system uses predictive influences from the motion processing sub-system on the position processing sub-system to overcome the temporal limitations of the position processing system.

摘要

众所周知,运动可扭曲视觉空间,对闪现物体产生虚幻的位置错定。此前已有研究表明,当在移动刺激物附近闪现一个静止的条状物时,闪现条状物的位置似乎会朝着附近运动的方向偏移。一个由处理运动信息的子系统向处理位置信息的子系统进行预测投射构成的模型,可以解释静止闪现条状物在运动方向上的这种虚幻位置偏移。基于这种运动 - 位置相互作用模型,我们预测,闪现刺激物的感知位置也应被吸引至附近的移动刺激物。在第一个实验中,观察者判断一次闪光相对于两个对比度不同的水平移动点的感知垂直位置。该实验结果与我们对朝着高对比度点的吸引力的预测一致。当移动点被对比度不同的漂移光栅取代时,我们也得到了类似的结果。在对照实验中,我们发现注意力和眼球运动都无法解释这种错觉。我们提出,视觉系统利用运动处理子系统对位置处理子系统的预测性影响,以克服位置处理系统的时间限制。

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