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Expectancy in humans in multisecond peak-interval timing with gaps

机译:人类在几秒钟的峰值间隔时间间隔中的期望值

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摘要

In two experiments, the peak-interval procedure was used with humans to test effects related to gaps in multisecond timing. In Experiment 1, peak times of response distributions were shorter when the gap occurred later during the encoding of the criterion time to be reproduced, suggesting that gap expectancy shortened perceived durations. Peak times were also positively related to objective target durations. Spreads of response distributions were generally related to estimated durations. In Experiment 2, peak times were shortest when gaps were expected but did not occur, confirming that the shortening effect of gap expectancy is independent of the gap occurrence. High positive start-stop correlations and moderate positive peak-time-spread correlations showed strong memory variability, whereas low and negative start-spread correlations suggest small response-threshold variability. Correlations seemed not to be influenced by expectancy. Overall, the peak-interval procedure with gaps provided relevant information on similarities and differences in timing in humans and other animals.
机译:在两个实验中,峰值间隔程序与人类一起使用,以测试与多秒计时中的间隙相关的影响。在实验1中,当在待再现的标准时间的编码期间稍后出现间隙时,响应分布的峰值时间更短,这表明间隙期望缩短了感知持续时间。高峰时间也与客观目标持续时间成正相关。响应分布的传播通常与估计的持续时间有关。在实验2中,当预期出现间隙但未发生间隙时,峰值时间最短,这证实了间隙预期的缩短效果与间隙的发生无关。高的正-起始-停止相关性和适度的正-峰-时间-扩散相关性表现出很强的记忆变异性,而低和负的起始-扩散相关性表明较小的响应阈值变异性。相关似乎不受预期影响。总体而言,带有间隔的峰-间隔程序提供了有关人类和其他动物的时间相似性和差异性的相关信息。

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