The number of granular cells in a cerebellar neuronal network model engaged during robot control increases with the complexity of the motor task
Ruben-Dario Pinzon-Morales, Yutaka Hirata
- 发表年份
- 2014
- 引用次数
- 3
- 访问权限
- 开放获取
摘要
The granular cells (Gr) in the cerebellum have been proposed to perform adaptive spatio-temporal coding [1] to relay rich information to the Purkinje cell, and thus they are critical for the proper operation of the cerebellum [2]. Elimination of all Gr cells induced behavioral symptoms such as ataxia and hypotonia [3]. Partially silencing Gr cells showed that the overall motor performance was minimally affected whereas demanding tasks or memory consolidation processes were compromised [4]. Here we use a physio-anatomically inspired cerebellar neuronal network (CNN) to study the role of the Gr cells during control of an unstable two-wheel balancing robot [5].
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