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Larger visual stimuli are perceived to last longer from time to time: The internal clock is not affected by nontemporal visual stimulus size

机译:较大的视觉刺激有时会持续更长的时间:内部时钟不受非暂时性视觉刺激大小的影响

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摘要

Performance on interval timing is often explained by the assumption of an internal clock based on neural counting. According to this account, a neural pacemaker generates pulses, and the number of pulses relating to a physical time interval is recorded by a counter. Thus, the number of accumulated pulses is the internal representation of this interval. Several studies demonstrated that large visual stimuli are perceived to last longer than smaller ones presented for the same duration. The present study was designed to investigate whether nontemporal visual stimulus size directly affects the internal clock. For this purpose, a temporal reproduction task was applied. Sixty participants were randomly assigned to one of two experimental conditions with stimulus size being experimentally varied within either the target or the reproduction interval. A direct effect of nontemporal stimulus size on the pacemaker-counter system should become evident irrespective of whether stimulus size was experimentally varied within the target or the reproduction interval. An effect of nontemporal stimulus size on reproduced duration only occurred when stimulus size was varied during the target interval. This finding clearly argues against the notion that nontemporal visual stimulus size directly affects the internal clock. Furthermore, our findings ruled out a decisional bias as a possible cause of the observed differential effect of stimulus size on reproduced duration. Rather the effect of stimulus size appeared to originate from the memory stage of temporal information processing at which the timing signal from the pacemaker-counter component is encoded in reference memory.
机译:间隔定时的性能通常通过基于神经计数的内部时钟假设来解释。据此,神经起搏器产生脉冲,并且与物理时间间隔有关的脉冲数由计数器记录。因此,累积脉冲数是该间隔的内部表示。多项研究表明,在相同的持续时间内,较大的视觉刺激要比较小的视觉刺激持续更长的时间。本研究旨在调查非暂时性视觉刺激大小是否直接影响内部时钟。为此,应用了暂时再现任务。 60名参与者被随机分配到两个实验条件之一,刺激大小在目标或繁殖间隔内实验性变化。无论刺激大小在目标范围内还是在繁殖间隔内通过实验方式变化,非暂时性刺激大小对起搏器-计数器系统的直接影响都应变得明显。仅在目标间隔内改变刺激大小时,才会出现非暂时性刺激大小对复制持续时间的影响。这一发现显然与非时间性视觉刺激大小直接影响内部时钟这一观点背道而驰。此外,我们的发现排除了决定性的偏见,可能是观察到的刺激大小对生殖持续时间差异影响的可能原因。相反,刺激大小的影响似乎源自时间信息处理的存储阶段,在该阶段中,来自起搏器计数器组件的定时信号被编码在参考存储器中。

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