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Neural correlates of implied motion

机译:隐含运动的神经相关

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Current views of the visual system assume that the primate brain analyses form and motion along largely independent pathways; they provide no insight into why form is sometimes interpreted as motion. In a series of psychophysical and electrophysiological experiments in humans and macaques, here we show that some form information is processed in the prototypical motion areas of the superior temporal sulcus (STS). First, we show that STS cells respond to dynamic Glass patterns, which contain no coherent motion but suggest a path of motion. Second, we show that when motion signals conflict with form signals suggesting a different path of motion, both humans and monkeys perceive motion in a compromised direction. This compromise also has a correlate in the responses of STS cells, which alter their direction preferences in the presence of conflicting implied motion information. We conclude that cells in the prototypical motion areas in the dorsal visual cortex process form that implies motion. Estimating motion by combining motion cues with form cues may be a strategy to deal with the complexities of motion perception in our natural environment.
机译:当前对视觉系统的看法认为,灵长类动物的大脑在很大程度上独立的路径上分析形式和运动。他们无法理解为什么有时将形式解释为运动。在人类和猕猴的一系列心理生理和电生理实验中,我们显示在上颞沟(STS)的原型运动区域中处理了一些形式信息。首先,我们表明STS细胞对动态Glass模式有反应,该模式不包含相干运动,但建议运动路径。第二,我们表明,当运动信号与暗示不同运动路径的形式信号发生冲突时,人和猴子都将感觉到运动方向受到损害。这种折衷还与STS单元的响应相关,在存在隐含的暗示运动信息的情况下,STS单元会更改其方向偏好。我们得出结论,在背侧视觉皮层过程中原型运动区域中的细胞形成运动。通过将运动线索与形式线索相结合来估计运动可能是一种应对自然环境中运动感知复杂性的策略。

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