A stochastic mean field model for an excitatory and inhibitory synaptic drive cortical neuronal network.

CDC(2014)

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摘要
With the advances in biochemistry, molecular biology, and neurochemistry there has been impressive progress in understanding the molecular properties of anesthetic agents. However, there has been little focus on how the molecular properties of anesthetic agents lead to the observed macroscopic property that defines the anesthetic state, that is, lack of responsiveness to noxious stimuli. In this paper, we develop a mean field synaptic drive firing rate cortical neuronal model and demonstrate how the induction of general anesthesia can be explained using multistability; the property whereby the solutions of a dynamical system exhibit multiple attracting equilibria under asymptotically slowly changing inputs or system parameters. In particular, we demonstrate multistability in the mean when the system initial conditions or the system coefficients of the neuronal connectivity matrix are random variables. Uncertainty in the system coefficients is captured by representing system uncertain parameters by a multiplicative white noise model wherein stochastic integration is interpreted in the sense of Itô. Modeling a priori system parameter uncertainty using a multiplicative white noise model is motivated by means of the maximum entropy principle of Jaynes and statistical analysis.
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excitatory and inhibitory neurons,anesthetic state,jaynes maximum entropy principle,stochastic processes,dynamical system,stochastic mean field model,anesthetic agents,spiking neuron models,general anesthesia,maximum entropy pinciple,uncertainty modeling,neurophysiology,random variables,multiplicative white noise model,statistical analysis,wiener process,multistability,system uncertain parameters,neurochemistry,biochemistry,stochastic integration,molecular biophysics,mean field synaptic firing rate cortical neuronal model,molecular biology,noxious stimuli,maximum entropy methods,multiplicative white noise,excitatory synaptic drive cortical neuronal network,parameter uncertainty,mean field synaptic drive firing rate cortical neuronal model,jaynes,white noise,stochastic multistability,asymptotically slowly changing input,inhibitory synaptic drive cortical neuronal network,excitatory cortical neuronal network,neuronal connectivity matrix,stability,molecular properties,macroscopic property,system coefficients,neural nets,mean field model,brownian motion,system coefficient uncertainty,drugs
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