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Limited capacity of working memory in unihemispheric random walks implies conceivable slow dispersal

机译:在无河主的随机行走中的工作记忆能力有限意味着可以想到缓慢分散

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摘要

Phenomenologically inspired by dolphins' unihemispheric sleep, we introduce a minimal model for random walks with physiological memory. The physiological memory consists of long-term memory which includes unconscious implicit memory and conscious explicit memory, and working memory which serves as a multi-component system for integrating, manipulating and managing short-term storage. The model assumes that the sleeping state allows retrievals of episodic objects merely from the episodic buffer where these memory objects are invoked corresponding to the ambient objects and are thus object-oriented, together with intermittent but increasing use of implicit memory in which decisions are unconsciously picked up from historical time series. The process of memory decay and forgetting is constructed in the episodic buffer. The walker's risk attitude, as a product of physiological heuristics according to the performance of objected-oriented decisions, is imposed on implicit memory. The analytical results of unihemispheric random walks with the mixture of object-oriented and time-oriented memory, as well as the long-time behavior which tends to the use of implicit memory, are provided, indicating the common sense that a conservative risk attitude is inclinable to slow movement.
机译:受海豚单半球睡眠的现象学启发,我们介绍了一个具有生理记忆的随机行走的最小模型。生理记忆包括长期记忆(包括无意识内隐记忆和有意识外显记忆)和工作记忆(作为整合、操纵和管理短期记忆的多成分系统)。该模型假设睡眠状态仅允许从情景缓冲区中检索情景对象,在该缓冲区中,这些记忆对象被调用,与环境对象相对应,因此是面向对象的,同时间歇性但越来越多地使用内隐记忆,其中的决策是无意识地从历史时间序列中提取的。记忆衰退和遗忘的过程是在情节缓冲区中构建的。步行者的风险态度是根据面向对象决策的表现进行的生理启发的产物,它被施加在内隐记忆上。本文给出了单半球随机游动的分析结果,包括面向对象和面向时间的记忆的混合,以及倾向于使用内隐记忆的长期行为,表明保守的风险态度倾向于减缓运动。

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