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Noise effects on robust synchronization of a small pacemaker neuronal ensemble via nonlinear controller: electronic circuit design

机译:噪声对非线性起搏器小型起搏器神经元整体鲁棒同步的影响:电子电路设计

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摘要

In this paper, we report on the synchronization of a pacemaker neuronal ensemble constituted of an AB neuron electrically coupled to two PD neurons. By the virtue of this electrical coupling, they can fire synchronous bursts of action potential. An external master neuron is used to induce to the whole system the desired dynamics, via a nonlinear controller. Such controller is obtained by a combination of sliding mode and feedback control. The proposed controller is able to offset uncertainties in the synchronized systems. We show how noise affects the synchronization of the pacemaker neuronal ensemble, and briefly discuss its potential benefits in our synchronization scheme. An extended Hindmarsh–Rose neuronal model is used to represent a single cell dynamic of the network. Numerical simulations and Pspice implementation of the synchronization scheme are presented. We found that, the proposed controller reduces the stochastic resonance of the network when its gain increases.
机译:在本文中,我们报告了由电耦合到两个PD神经元的AB神经元组成的起搏器神经元整体的同步情况。通过这种电耦合,它们可以触发动作电位的同步脉冲。外部主神经元用于通过非线性控制器向整个系统诱导所需的动力学。这种控制器是通过滑模和反馈控制的组合获得的。所提出的控制器能够抵消同步系统中的不确定性。我们将展示噪声如何影响起搏器神经元集成的同步,并简要讨论其在我们的同步方案中的潜在优势。扩展的Hindmarsh-Rose神经元模型用于表示网络的单个细胞动态。给出了同步方案的数值模拟和Pspice实现。我们发现,提出的控制器在其增益增加时会降低网络的随机共振。

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