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Human auditory event-related potentials predict duration judgments.

机译:人类听觉事件相关的电位预测持续时间的判断。

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摘要

Internal clock models postulate a pulse accumulation process underlying timing activities, with more accumulated pulses resulting in longer perceived durations. We investigated whether this accumulation is reflected in the amplitude of event-related brain potentials (ERPs) elicited by auditory stimuli with durations of 400-600 ms. In a duration discrimination paradigm, we found more negative amplitudes to physically identical stimuli when they were judged as longer than the memorized standard duration (500 ms) as compared to being classified as shorter. This sustained negativity was already developing during the first 100 ms after stimulus onset. It could not be explained as a bias to respond with a particular hand (lateralized readiness potential), but rather reflects a processing difference between the tones to be judged as shorter or longer. Our results are in line with models of time processing which assume that higher numbers of accumulated pulses of a temporal processor result in an increase in perceived duration.
机译:内部时钟模型假定了计时活动背后的脉冲累积过程,累积的脉冲越多,感知的持续时间越长。我们调查了这种积累是否反映在持续时间为400-600毫秒的听觉刺激引起的事件相关脑电势(ERP)的幅度中。在持续时间判别范式中,我们发现当物理上相同的刺激被判断为比记忆的标准持续时间(500 ms)更长时,与归类为较短的相比,它们对负反馈的幅度更大。这种持续的消极作用已经在刺激发作后的最初100毫秒内形成。不能将其解释为偏向于用特定的手做出响应(倾向性准备就绪),而是反映了要判断为短音或长音的音调之间的处理差异。我们的结果与时间处理模型一致,该模型假定时间处理器的更多累积脉冲数会导致感知持续时间增加。

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