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Contrast Gain Shapes Visual Time

机译:对比增益影响视觉时间

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Traditionally time perception has been considered the product of a central, generic, cognitive mechanism. However, evidence is emerging for a distributive system with modality-specific sensory components (Morrone et al., 2005; Johnston et al., 2006). Here we show that fast contrast adaptation, which can be observed in the retina, induces a change in apparent duration. The perceived duration of a subsecond interval containing a 50% luminance contrast drifting pattern is compressed when it follows a high (90%) as compared to a low (10%) contrast interval. The duration effect cannot be attributed to changes in latency at onset relative to offset, can be dissociated from the effect of contrast context on apparent speed or apparent contrast per se and it occurs in a retinocentric frame of reference. The temporal compression is limited to high drift temporal frequencies (≥10 Hz) and is not observed for equiluminant chromatic stimuli. This pattern of results indicates a major role for the magnocellular pathway in the neural encoding and representation of visual time.
机译:传统上,时间知觉被认为是中央,通用的认知机制的产物。但是,有关具有特定于情态的感觉成分的分布式系统的证据正在出现(Morrone等,2005; Johnston等,2006)。在这里,我们显示可以在视网膜中观察到的快速对比度适应引起表观持续时间的变化。与低(10%)的对比度间隔相比,包含50%亮度对比度漂移模式的亚秒级间隔的感知持续时间在压缩后遵循高(90%)时会被压缩。持续时间效应不能归因于开始时相对于偏移的潜伏期变化,可以与对比度上下文对视在速度或视在对比度本身的影响分离,并且它发生在以视网膜为中心的参照系中。时间压缩仅限于高漂移时间频率(≥10Hz),并且对于均衡的色彩刺激没有观察到。这种结果模式表明大细胞通路在神经编码和视觉时间表示中起着重要作用。

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