Weak Formulation and Spectral Approximation of a Fokker-Planck Equation for Neural Ensembles

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Abstract

In this paper, we focus on efficiently and flexibly simulating the Fokker-Planck equation associated with the nonlinear noisy leaky integrate-and-fire model, which reflects the dynamic behavior of neuron networks. We apply the Galerkin spectral method to discretize the spatial domain by constructing a variational formulation that satisfies complex boundary conditions. Moreover, the boundary conditions in the variational formulation include only zeroth-order terms, with first-order conditions being naturally incorporated. This allows the numerical scheme to be further extended to an excitatory-inhibitory population model with synaptic delays and refractory states. Additionally, we establish the consistency of the numerical scheme. Experimental results, including accuracy tests, blow-up events, and periodic oscillations, validate the properties of our proposed method.

Author Biographies

  • Ling Yan

    Beijing Computational Science Research Center, Beijing 100193, P.R. China

  • Pei Zhang

    Beijing Computational Science Research Center, Beijing 100193, P.R. China

  • Yanli Wang

    Beijing Computational Science Research Center, Beijing 100193, P.R. China

  • Zhennan Zhou

    Institute for Theoretical Sciences, Westlake University, Hangzhou 310030, P.R. China

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DOI

10.4208/csiam-ls.SO-2025-0013

How to Cite

Weak Formulation and Spectral Approximation of a Fokker-Planck Equation for Neural Ensembles. (2026). CSIAM Transactions on Life Sciences. https://doi.org/10.4208/csiam-ls.SO-2025-0013