Towards a Systemic Concept of the Brain Ishemia Stroke: Monte Carlo Driven in silico Model

Background: The work proposes a new mathematical model of dynamic processes of a typical spatially heterogeneous biological system, and sets and solves a mathematical problem of modeling the dynamics of the system of neurovascular units of the brain in conditions of ischemic stroke. There is a description of only a small number of mathematical models of stroke in the literature. This model is being studied and a numerical and software implementation of the corresponding mathematical problem is proposed. Methods: This work is the first attempt ever aiming to employ a Monte Carlo computational approach for In Silico simulation of the most critical parameters in molecular and cellular pathogenesis of the brain ischemic stroke. In this work, a new mathematical model of the development of ischemic stroke is proposed in the form of a discrete model based on neurovascular units (NVU) as elements. Results: As a result of testing the program with the assignment of empirically selected coefficients, data were obtained on the evolution of the states of the lattice of the cellular automaton of the model for the spread of stroke in a region of the brain tissue. A resulting new theoretical model of the particular pathologically altered biosystem might be taken as a promising tool for further studies in neurology; general pathology and cell biology. Conclusion: For the first time, a mathematical model has been constructed that allows us to represent the spatial dynamics of the development of the affected area in ischemic stroke of the brain, taking into account neurovascular units as single morphofunctional structures. © 2024 Bentham Science Publishers.

Authors
Fursov V.V. , Ananiev A.V. , Kuznetsov D.A.
Publisher
Bentham Science Publishers
Issue number
10
Language
English
Pages
1275-1284
State
Published
Volume
23
Year
2024
Organizations
  • 1 D.I. Mendeleev University of Chemical Technology, Moscow, Russian Federation
  • 2 N.I. Pirogov Russian National Research Medical University, Moscow, Russian Federation
  • 3 N.N. Semenov Federal Research Center for Chemical Physics, Moscow, Russian Federation
  • 4 Peoples' Friendship University of Russia, Moscow, Russian Federation
Keywords
Biosystem theoretical models; cellular automata; in silico; ischemic stroke; Monte Carlo method; neurovascular unit
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