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Suppressive mechanisms in visual motion processing: from perception to intelligence

机译:视觉运动处理中的抑制机制:从知觉到智力

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摘要

Perception operates on an immense amount of incoming information that greatly exceeds the brain's processing capacity. Because of this fundamental limitation, the ability to suppress irrelevant information is a key determinant of perceptual efficiency. Here, I will review a series of studies investigating suppressive mechanisms in visual motion processing, namely perceptual suppression of large, background-like motions. These spatial suppression mechanisms are adaptive, operating only when sensory inputs are sufficiently robust to guarantee visibility. Converging correlational and causal evidence links these behavioral results with inhibitory center-surround mechanisms, namely those in cortical area MT. Spatial suppression is abnormally weak in several special populations, including the elderly and those with schizophrenia—a deficit that is evidenced by better-than-normal direction discriminations of large moving stimuli. Theoretical work shows that this abnormal weakening of spatial suppression should result in motion segregation deficits, but direct behavioral support of this hypothesis is lacking. Finally, I will argue that the ability to suppress information is a fundamental neural process that applies not only to perception but also to cognition in general. Supporting this argument, I will discuss recent research that shows individual differences in spatial suppression of motion signals strongly predict individual variations in IQ scores.
机译:感知对大量传入信息进行操作,这些信息大大超过了大脑的处理能力。由于此基本限制,抑制无关信息的能力是感知效率的关键决定因素。在这里,我将回顾一系列研究视觉运动处理中的抑制机制的研究,即对大型,类似背景的运动的感知抑制。这些空间抑制机制是自适应的,仅在感觉输入足够鲁棒以保证可见性时才起作用。相关和因果证据的融合将这些行为结果与抑制性中心环绕机制联系在一起,即在皮层区MT中。在一些特殊人群中,包括老年人和精神分裂症患者,其空间抑制能力异常弱。这一缺陷可以通过对大型运动刺激的正常方向鉴别来证明。理论工作表明,这种空间抑制的异常减弱应导致运动分离缺陷,但缺乏对该假设的直接行为支持。最后,我将论证说,抑制信息的能力是一个基本的神经过程,不仅适用于感知,而且通常适用于认知。支持该论点,我将讨论最近的研究,该研究表明运动信号的空间抑制中的个体差异强烈预测了IQ得分的个体差异。

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