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首页> 外文期刊>Journal of Mathematical Biology >Models of central pattern generators for quadruped locomotion - I. Primary gaits
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Models of central pattern generators for quadruped locomotion - I. Primary gaits

机译:用于四足运动的中央模式发生器的模型-I.主要步态

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摘要

In this paper we continue the analysis of a network of symmetrically coupled cells modeling central pattern generators for quadruped locomotion proposed by Golubitsky. Stewart, Buono, and Collins. By a cell we mean a system of ordinary differential equations and by a coupled cell system we mean a network of identical cells with coupling terms. We have three main results in this paper. First, we show that the proposed network is the simplest one modeling the common quadruped gaits of walk, trot. and pace. In doing so we prove a general theorem classifying spatio-temporal symmetries of periodic solutions: to equivariant systems of differential equations. We also specialize this theorem to coupled cell systems. Second, this paper focuses on primary gaits: that is. gaits that are modeled by output signals from the central pattern generator where each cell emits the same waveform along with tract phase shifts between cells. Our previous work showed that the network is capable of producing six primary gaits. Here, we show that under mild assumptions on the cells and the coupling of the network, primary gaits can be produced from Hopf bifurcation by varying only coupling strengths of the network. Third, we discuss the stability of primary gaits and exhibit these solutions by performing numerical simulations using the dimensionless Morris-Lecar equations for the cell dynamics. . [References: 36]
机译:在本文中,我们继续分析由Golubitsky提出的用于四足运动的中心耦合模式生成器的对称耦合单元网络。斯图尔特,布诺和柯林斯。单元是指常微分方程组,耦合单元是指具有耦合项的相同单元的网络。本文有三个主要结果。首先,我们表明,所提出的网络是对步行,小跑的常见四足步态进行建模的最简单的网络。和步伐。这样做,我们证明了一个一般定理,该定理将周期解的时空对称性分类为:微分方程的等变系统。我们还将这个定理专门用于耦合单元系统。其次,本文着重于主要步态:即。步态由中央模式发生器的输出信号建模,每个单元发出相同的波形以及单元之间的相移。我们以前的工作表明,该网络能够产生六个主要步态。在这里,我们表明,在对单元格和网络耦合的温和假设下,可以通过仅改变网络的耦合强度从Hopf分叉产生主要步态。第三,我们讨论了主步态的稳定性,并通过使用无量纲的Morris-Lecar方程进行细胞动力学数值模拟,展示了这些解决方案。 。 [参考:36]

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