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Multistability, bifurcations, and biological neural networks: A synaptic drive firing model for cerebral cortex transition in the induction of general anesthesia

机译:多重稳定性,分叉和生物神经网络:诱导全麻诱导大脑皮层过渡的突触驱动模型

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This paper focuses on multistability theory for discontinuous dynamical systems having a set of multiple isolated equilibria and/or a continuum of equilibria. Multistability is the property whereby the solutions of a dynamical system can alternate between two or more mutually exclusive Lyapunov stable and convergent equilibrium states under asymptotically slowly changing inputs or system parameters. In this paper, we extend the definition and theory of multistability to discontinuous autonomous dynamical systems. In particular, nontangency Lyapunov-based tests for multistability of discontinuous systems with Filippov and Carathéodory solutions are established. The results are then applied to excitatory and inhibitory biological neuronal networks to explain the underlying mechanism of action for anesthesia and consciousness from a multistable dynamical system perspective, thereby providing a theoretical foundation for general anesthesia using the network properties of the brain.
机译:本文关注于具有一组多个孤立的平衡和/或一个连续的平衡的不连续动力系统的多重稳定性理论。多重稳定性是动态系统的解可以在渐近缓慢变化的输入或系统参数下在两个或多个相互排斥的Lyapunov稳定和收敛平衡状态之间交替的属性。在本文中,我们将多重稳定性的定义和理论扩展到不连续的自治动力系统。尤其是,建立了基于非雅可夫基于Lyapunov的非连续系统具有Filippov和Carathéodory解决方案的多重稳定性的测试。然后将结果应用于兴奋性和抑制性生物神经网络,从多稳态动力学系统的角度解释麻醉和意识的潜在作用机理,从而为利用大脑的网络特性进行全身麻醉提供理论基础。

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