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将上下文相关的感觉动态转化为运动行为。

Transformation of context-dependent sensory dynamics into motor behavior.

机构信息

Grupo de Neurocomputación Biológica, Dpto. de Ingeniería Informática, Escuela Politécnica Superior, Universidad Autónoma de Madrid, Madrid, Spain.

出版信息

PLoS Comput Biol. 2013;9(2):e1002908. doi: 10.1371/journal.pcbi.1002908. Epub 2013 Feb 14.

Abstract

The intrinsic dynamics of sensory networks play an important role in the sensory-motor transformation. In this paper we use conductance based models and electrophysiological recordings to address the study of the dual role of a sensory network to organize two behavioral context-dependent motor programs in the mollusk Clione limacina. We show that: (i) a winner take-all dynamics in the gravimetric sensory network model drives the typical repetitive rhythm in the wing central pattern generator (CPG) during routine swimming; (ii) the winnerless competition dynamics of the same sensory network organizes the irregular pattern observed in the wing CPG during hunting behavior. Our model also shows that although the timing of the activity is irregular, the sequence of the switching among the sensory cells is preserved whenever the same set of neurons are activated in a given time window. These activation phase locks in the sensory signals are transformed into specific events in the motor activity. The activation phase locks can play an important role in motor coordination driven by the intrinsic dynamics of a multifunctional sensory organ.

摘要

感觉网络的内在动力学在感觉-运动转换中起着重要作用。在本文中,我们使用基于电导率的模型和电生理记录来研究软体动物 Clione limacina 中感觉网络的双重作用,以组织两种行为上下文相关的运动程序。我们表明:(i)重力感觉网络模型中的“胜者全拿”动力学驱动了常规游泳时翅膀中枢模式发生器(CPG)中的典型重复节律;(ii)相同感觉网络的无胜者竞争动力学组织了在狩猎行为中观察到的翅膀 CPG 中的不规则模式。我们的模型还表明,尽管活动的时间是不规则的,但只要在给定的时间窗口中激活相同的神经元集,在感觉细胞之间切换的顺序就会被保留。在运动活动中,这些感觉信号的激活相位锁定会转化为特定事件。激活相位锁定可以在由多功能感觉器官的内在动力学驱动的运动协调中发挥重要作用。

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