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迈向脑缺血性中风的系统概念:蒙特卡罗驱动模型。

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

机构信息

D.I. Mendeleev University of Chemical Technology, Moscow, Russia.

N.I. Pirogov Russian National Research Medical University, Moscow, Russia.

出版信息

CNS Neurol Disord Drug Targets. 2024;23(10):1275-1284. doi: 10.2174/1871527322666230719111903.

Abstract

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.

摘要

背景

本工作提出了典型空间异质生物系统动态过程的新数学模型,并建立和解决了脑神经血管单元系统在缺血性中风条件下的动力学建模数学问题。文献中仅有少数中风的数学模型被描述。该模型正在被研究,并提出了相应数学问题的数值和软件实现。

方法

这是首次尝试使用蒙特卡罗计算方法对脑缺血性中风的分子和细胞发病机制中的最关键参数进行计算机模拟。在这项工作中,提出了一种新的缺血性中风发展的数学模型,其形式为基于作为元素的神经血管单元(NVU)的离散模型。

结果

通过用经验选择的系数分配对程序进行测试,获得了关于模型中风传播的格子状态演化的数据,该模型的格子是用于脑组织区域的细胞自动机。由此产生的特定病理改变生物系统的新理论模型可以作为神经病学、一般病理学和细胞生物学进一步研究的有前途的工具。

结论

首次构建了一个数学模型,该模型允许我们考虑神经血管单元作为单个形态功能结构,来表示脑缺血性中风中受影响区域的空间动力学发展。

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