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用于感知和追踪的视觉运动整合。

Visual motion integration for perception and pursuit.

作者信息

Stone L S, Beutter B R, Lorenceau J

机构信息

Human Factors Research and Technology Division, NASA Ames Research Center, Moffett Field, CA 94035-1000, USA.

出版信息

Perception. 2000;29(7):771-87. doi: 10.1068/p2979.

Abstract

To examine the relationship between visual motion processing for perception and pursuit, we measured the pursuit eye-movement and perceptual responses to the same complex-motion stimuli. We show that humans can both perceive and pursue the motion of line-figure objects, even when partial occlusion makes the resulting image motion vastly different from the underlying object motion. Our results show that both perception and pursuit can perform largely accurate motion integration, i.e. the selective combination of local motion signals across the visual field to derive global object motion. Furthermore, because we manipulated perceived motion while keeping image motion identical, the observed parallel changes in perception and pursuit show that the motion signals driving steady-state pursuit and perception are linked. These findings disprove current pursuit models whose control strategy is to minimize retinal image motion, and suggest a new framework for the interplay between visual cortex and cerebellum in visuomotor control.

摘要

为了研究视觉运动感知与追踪之间的关系,我们测量了对相同复杂运动刺激的追踪眼动和感知反应。我们发现,即使部分遮挡使得最终的图像运动与潜在物体运动有很大差异,人类仍能感知并追踪线条图形物体的运动。我们的结果表明,感知和追踪在很大程度上都能进行准确的运动整合,即跨视野选择性地组合局部运动信号以得出全局物体运动。此外,由于我们在保持图像运动不变的同时操纵了感知到的运动,因此观察到的感知和追踪中的平行变化表明,驱动稳态追踪和感知的运动信号是相关联的。这些发现反驳了当前以最小化视网膜图像运动为控制策略的追踪模型,并为视觉皮层与小脑在视觉运动控制中的相互作用提出了一个新框架。

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