Dynamics of Spatio-Temporal Binding in Rats

IF 1.4
Aurore Malet-Karas, M. Noulhiane, V. Doyère
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引用次数: 3

Abstract

Time and space are commonly approached as two distinct dimensions, and rarely combined together in a single task, preventing a comparison of their interaction. In this project, using a version of a timing task with a spatial component, we investigate the learning of a spatio-temporal rule in animals. To do so, rats were placed in front of a five-hole nose-poke wall in a Peak Interval (PI) procedure to obtain a reward, with two spatio-temporal combination rules associated with different to-be-timed cues and lighting contexts. We report that, after successful learning of the discriminative task, a single Pavlovian session was sufficient for the animals to learn a new spatio-temporal association. This was seen as evidence for a beneficial transfer to the new spatio-temporal rule, as compared to control animals that did not experience the new spatio-temporal association during the Pavlovian session. The benefit was observed until nine days later. The results are discussed within the framework of adaptation to a change of a complex associative rule involving interval timing processes.
大鼠时空结合动力学
时间和空间通常被视为两个不同的维度,很少在一项任务中结合在一起,从而无法比较它们的相互作用。在这个项目中,我们使用了一个带有空间成分的计时任务版本,研究了动物对时空规则的学习。为了做到这一点,在峰值间隔(PI)程序中,将大鼠放在五孔探鼻墙前以获得奖励,其中两个时空组合规则与不同的定时线索和照明环境相关。我们报告说,在成功学习了辨别任务后,一次巴甫洛夫会话就足以让动物学习新的时空关联。与在巴甫洛夫会议期间没有经历新的时空关联的对照动物相比,这被视为向新的时空规则有益转移的证据。直到九天后才观察到这种益处。在适应涉及区间时序过程的复杂关联规则的变化的框架内讨论了结果。
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来源期刊
CiteScore
1.60
自引率
14.30%
发文量
23
期刊介绍: Timing & Time Perception aims to be the forum for all psychophysical, neuroimaging, pharmacological, computational, and theoretical advances on the topic of timing and time perception in humans and other animals. We envision a multidisciplinary approach to the topics covered, including the synergy of: Neuroscience and Philosophy for understanding the concept of time, Cognitive Science and Artificial Intelligence for adapting basic research to artificial agents, Psychiatry, Neurology, Behavioral and Computational Sciences for neuro-rehabilitation and modeling of the disordered brain, to name just a few. Given the ubiquity of interval timing, this journal will host all basic studies, including interdisciplinary and multidisciplinary works on timing and time perception and serve as a forum for discussion and extension of current knowledge on the topic.
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