Analysis of free recall dynamics of an abstract working memory model

Conference Paper (2020)
Author(s)

Gianluca Villani (KTH Royal Institute of Technology)

M. Jafarian (KTH Royal Institute of Technology)

Anders Lansner (KTH Royal Institute of Technology)

K.H Johansson (KTH Royal Institute of Technology)

Affiliation
External organisation
DOI related publication
https://doi.org/10.23919/ACC45564.2020.9148025 Final published version
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Publication Year
2020
Language
English
Affiliation
External organisation
Article number
9148025
Pages (from-to)
2562-2567
Publisher
IEEE
ISBN (electronic)
9781538682661
Event
ACC 2020: American Control Conference 2020 (2020-07-01 - 2020-07-03), Denver, United States
Page Views
25

Abstract

This paper analyzes the free recall dynamics of a working memory model. Free recalling is the reactivation of a stored pattern in the memory in the absence of the pattern. Our free recall model is based on an abstract model of a modular neural network composed on N modules, hypercolumns, each of which is a bundle of minicolumns. This paper considers a network of N modules, each consisting of two minicolumns, over a complete graph topology. We analyze the free recall dynamics assuming a constant, and homogeneous coupling between the network modules. We obtain a sufficient condition for synchronization of network's minicolumns whose activities are positively correlated. Furthermore, for the synchronized network, the bifurcation analysis of one module is presented. This analysis gives a necessary condition for having a stable limit cycle as the attractor of each module. The latter implies recalling a stored pattern. Numerical results are provided to verify the theoretical analysis.