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Interval timing under a behavioral microscope: Dissociating motivational and timing processes in fixed-interval performance

机译:行为显微镜下的间隔时序:在固定间隔性能下解离动机和定时过程

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摘要

The distribution of latencies and interresponse times (IRTs) of rats was compared between two fixed-interval (FI) schedules of food reinforcement (FI 30 s and FI 90 s), and between two levels of food deprivation. Computational modeling revealed that latencies and IRTs were well described by mixture probability distributions embodying two-state Markov chains. Analysis of these models revealed that only a subset of latencies is sensitive to the periodicity of reinforcement, and prefeeding only reduces the size of this subset. The distribution of IRTs suggests that behavior in FI schedules is organized in bouts that lengthen and ramp up in frequency with proximity to reinforcement. Prefeeding slowed down the lengthening of bouts and increased the time between bouts. When concatenated, latency and IRT models adequately reproduced sigmoidal FI response functions. These findings suggest that behavior in FI schedules fluctuates in and out of schedule control; an account of such fluctuation suggests that timing and motivation are dissociable components of FI performance. These mixture-distribution models also provide novel insights on the motivational, associative, and timing processes expressed in FI performance. These processes may be obscured, however, when performance in timing tasks is analyzed in terms of mean response rates.
机译:比较了大鼠的延迟和互相关时间(IRTS)的分布,比较了两种固定间隔(FI)的食物增强症(FI 30 S和FI 90s),以及两种水平的食物剥夺之间。计算建模显示,延迟和虹膜通过体现两个状态马尔可夫链的混合概率分布良好地描述。对这些模型的分析表明,只有延迟的子集对加强件的周期性敏感,并预先降低了该子集的大小。 IRTS的分布表明,在频率延长和升高的频率下,在频率上延长并加强的频率。预先减慢了对接的延长,并增加了回合之间的时间。当连接时,延迟和IRT模型充分再现Sigmoidal Fi响应函数。这些调查结果表明,五纲计划中的行为波动进出安排控制;这种波动的说明表明,时间和动机是FI性能的可解释组件。这些混合分配模型还提供了关于在表现中表达的动机,关联和定时过程的新颖见解。然而,当在平均响应速率方面分析定时任务中的性能时,这些过程可能会遮挡。

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