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Context-Dependent Neural Modulations in the Perception of Duration

机译:持续时间感知中的上下文相关神经调制

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Recent neuroimaging studies have revealed that distinct brain networks are recruited in the perception of sub- and supra-second timescales, whereas psychophysical studies have suggested that there are common or continuous mechanisms for perceiving these two durations. The present study aimed to elucidate the neural implementation of such continuity by examining the neural correlates of peri-second timing. We measured neural activity during a duration reproduction task using functional magnetic resonance imaging. Our results replicate the findings of previous studies in showing that separate neural networks are recruited for sub-versus supra-second time perception: motor systems including the motor cortex and the supplementary motor area for sub-second perception, and the frontal, parietal, and auditory cortical areas for supra-second perception. We further found that the peri-second perception activated both the sub- and supra-second networks, and that the timing system that processed duration perception in previous trials was more involved in subsequent peri-second processing. These results indicate that the sub- and supra-second timing systems overlap at around 1 s, and cooperate to optimally encode duration based on the hysteresis of previous trials.
机译:最近的神经影像学研究表明,在亚秒级和超秒级时域的感知中募集了不同的大脑网络,而心理物理学研究表明,存在感知这两个时长的通用或连续机制。本研究旨在通过检查秒计时的神经相关性来阐明这种连续性的神经实现。我们使用功能磁共振成像技术在持续时间的再现任务中测量了神经活动。我们的研究结果重复了先前研究的结果,表明已募集了单独的神经网络用于次秒级以上的时间感知:运动系统包括运动皮层和辅助运动区域,用于次秒级感知,以及额叶,顶叶和听觉皮层区域用于超秒感知。我们进一步发现,秒感感知激活了亚秒级和超秒级网络,并且在之前的试验中处理持续时间感知的计时系统更多地参与了随后的秒级处理。这些结果表明,亚秒级和超秒级计时系统在1 s左右重叠,并且可以根据先前试验的滞后进行协作以对持续时间进行最佳编码。

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