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具有 Milnor 吸引子的正反循环振荡网络模型中的工作记忆动力学和自发活动。

Working memory dynamics and spontaneous activity in a flip-flop oscillations network model with a Milnor attractor.

机构信息

Lab. for Dynamics of Emergent Intelligence, RIKEN-BSI, Saitama, Japan.

出版信息

Cogn Neurodyn. 2009 Jun;3(2):141-51. doi: 10.1007/s11571-009-9078-0. Epub 2009 Feb 26.

Abstract

Many cognitive tasks require the ability to maintain and manipulate simultaneously several chunks of information. Numerous neurobiological observations have reported that this ability, known as the working memory, is associated with both a slow oscillation (leading to the up and down states) and the presence of the theta rhythm. Furthermore, during resting state, the spontaneous activity of the cortex exhibits exquisite spatiotemporal patterns sharing similar features with the ones observed during specific memory tasks. Here to enlighten neural implication of working memory under these complicated dynamics, we propose a phenomenological network model with biologically plausible neural dynamics and recurrent connections. Each unit embeds an internal oscillation at the theta rhythm which can be triggered during up-state of the membrane potential. As a result, the resting state of a single unit is no longer a classical fixed point attractor but rather the Milnor attractor, and multiple oscillations appear in the dynamics of a coupled system. In conclusion, the interplay between the up and down states and theta rhythm endows high potential in working memory operation associated with complexity in spontaneous activities.

摘要

许多认知任务都需要同时维持和操作几个信息块的能力。许多神经生物学观察报告称,这种被称为工作记忆的能力与慢波振荡(导致上下状态)和θ节律的存在有关。此外,在静息状态下,皮层的自发活动表现出与特定记忆任务中观察到的相似的精细时空模式。在这里,为了阐明工作记忆在这些复杂动力学下的神经意义,我们提出了一个具有生物上合理的神经动力学和递归连接的现象学网络模型。每个单元都嵌入在θ节律的内部振荡中,在膜电位的上状态期间可以触发该振荡。结果,单个单元的静息状态不再是经典的固定点吸引子,而是米尔诺吸引子,并且在耦合系统的动力学中出现多个振荡。总之,上下状态和θ节律之间的相互作用赋予了与自发活动复杂性相关的工作记忆操作的高潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8657/2678202/9882a67e9439/11571_2009_9078_Fig1_HTML.jpg

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