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Connecting the Dots: Object Connectedness Deceives Perception but Not Movement Planning

机译:连接点:物体的连通性是感知力,而不是运动计划

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摘要

The perceptual system parses complex scenes into discrete objects. Parsing is also required for planning visually guided movements when more than one potential target is present. To examine whether visual perception and motor planning use the same or different parsing strategies, we used the connectedness illusion, in which observers typically report seeing fewer targets if pairs of targets are connected by short lines. We found that despite this illusion, when observers are asked to make speeded reaches toward targets in such displays, their reaches are unaffected by the presence of the connecting lines. Instead, their movement plans, as revealed by their movement trajectories, are influenced by the number of potential targets irrespective of whether connecting lines are present or not. This suggests that scene parsing for perception depends on mechanisms that are distinct from those that allow observers to plan rapid and efficient target-directed movements in situations with multiple potential targets.
机译:感知系统将复杂的场景解析为离散的对象。当存在多个潜在目标时,还需要解析以计划视觉引导的运动。为了检查视觉感知和运动计划是使用相同还是不同的解析策略,我们使用了连通性错觉,其中观察者通常报告说,如果目标对通过短线连接,则看到的目标更少。我们发现,尽管有这种幻想,但当观察者被要求在此类显示器中快速到达目标时,他们的到达不受连接线的影响。相反,它们的运动计划(如其运动轨迹所示)受潜在目标数量的影响,而与是否存在连接线无关。这表明用于感知的场景解析取决于与使观察者在具有多个潜在目标的情况下计划快速有效的目标定向运动不同的机制。

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