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大鼠的时间共享:一种带有间隙和干扰物的峰间隔程序。

Time sharing in rats: A peak-interval procedure with gaps and distracters.

作者信息

Buhusi Catalin V, Meck Warren H

机构信息

Duke University, Department Psychological and Brain Sciences, Durham, NC 27708, USA.

出版信息

Behav Processes. 2006 Feb 28;71(2-3):107-15. doi: 10.1016/j.beproc.2005.11.017. Epub 2006 Jan 18.

Abstract

Four hypotheses (switch, instructional-ambiguity, memory decay, and time sharing) were evaluated in a reversed peak-interval procedure with gaps by presenting distracter stimuli during the uninterrupted timed signal. The switch, instructional-ambiguity, and memory-decay hypotheses predict that subjects should time through the distracter and delay responding during gaps. The time-sharing hypothesis assumes that the internal clock shares attentional and working-memory resources with other processes, so that both gaps and distracters delay timing by causing working memory to decay. We found that response functions were displaced both by gaps and by distracters. Computer simulations show that when combined, the memory-decay and time-sharing hypotheses can mechanistically address present data, suggesting that these two hypotheses may reflect different levels of analysis of the same phenomenon.

摘要

通过在不间断的定时信号期间呈现干扰刺激,在带有间隙的反向峰值间隔程序中评估了四个假设(切换、指令模糊性、记忆衰退和时间共享)。切换、指令模糊性和记忆衰退假设预测,受试者应该在干扰期间计时,并在间隙期间延迟反应。时间共享假设认为,内部时钟与其他过程共享注意力和工作记忆资源,因此间隙和干扰都会通过导致工作记忆衰退来延迟计时。我们发现,反应函数既被间隙也被干扰所偏移。计算机模拟表明,当结合起来时,记忆衰退和时间共享假设可以从机制上解释当前的数据,这表明这两个假设可能反映了对同一现象的不同分析层面。

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