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Perceived duration of brief visual events is mediated by timing mechanisms at the global stages of visual processing

机译:感知的简要视觉事件的持续时间是通过视觉处理的全局阶段的定时机制来介导的

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There is a growing body of evidence pointing to the existence of modality-specific timing mechanisms for encoding sub-second durations. For example, the duration compression effect describes how prior adaptation to a dynamic visual stimulus results in participants underestimating the duration of a sub-second test stimulus when it is presented at the adapted location. There is substantial evidence for the existence of both cortical and pre-cortical visual timing mechanisms; however, little is known about where in the processing hierarchy the cortical mechanisms are likely to be located. We carried out a series of experiments to determine whether or not timing mechanisms are to be found at the global processing level. We had participants adapt to random dot patterns that varied in their motion coherence, thus allowing us to probe the visual system at the level of motion integration. Our first experiment revealed a positive linear relationship between the motion coherence level of the adaptor stimulus and duration compression magnitude. However, increasing the motion coherence level in a stimulus also results in an increase in global speed. To test whether duration compression effects were driven by global speed or global motion, we repeated the experiment, but kept global speed fixed while varying motion coherence levels. The duration compression persisted, but the linear relationship with motion coherence was absent, suggesting that the effect was driven by adapting global speed mechanisms. Our results support previous claims that visual timing mechanisms persist at the level of global processing.
机译:存在越来越多的证据,指向用于编码子第二持续时间的模态特定时间机制。例如,持续时间压缩效果描述了如何先前适应动态视觉刺激的结果,参与者在在适应位置呈现时低估的子第二测试刺激的持续时间。皮质和皮质预防视觉定时机制存在实质性证据;然而,关于处理层次结构的位置很少,皮质机制可能位于处理层次。我们进行了一系列实验,以确定是否要在全球处理级别找到时间机制。我们的参与者适应于运动相干性的随机点图案,从而允许我们在运动集成的水平下探测视觉系统。我们的第一个实验揭示了适配器刺激和持续时间压缩幅度的运动相干水平之间的正线性关系。然而,增加刺激的运动相干水平也导致全球速度的增加。为了测试持续时间压缩效果是否受到全球速度或全球运动的驱动,我们重复了实验,但在不同运动相干水平时保持全球速度固定。持续时间压缩持续存在,但不存在与运动相干性的线性关系,表明通过调整全球速度机制驱动效果。我们的结果支持以前声明视觉时序机制在全球处理的水平持续存在。

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