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Mathematical Modelling of an Ischemic Stroke: An Integrative Approach

机译:缺血性卒中的数学建模:一种综合方法

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摘要

Understanding the mechanisms and the time and spatial evolution of penumbra following an ischemic stroke is crucially important for developing therapeutics aimed at preventing this area from evolving towards infarction. To help in integrating the available data, we decided to build a formal model. We first collected and categorised the major available evidence from animal models and human observations and summarized this knowledge in a flow-chart with the potential key components of an evolving stroke. Components were grouped in ten sub-models that could be modelled and tested independently: the sub-models of tissue reactions, ionic movements, oedema development, glutamate excitotoxicity, spreading depression, NO synthesis, inflammation, necrosis, apoptosis, and reperfusion. Then, we figured out markers, identified mediators and chose the level of complexity to model these sub-models. We first applied this integrative approach to build a model based on cytotoxic oedema development following a stroke. Although this model includes only three sub-models and would need to integrate more mechanisms in each of these sub-models, the characteristics and the time and spatial evolution of penumbra obtained by simulation are qualitatively and, to some extent, quantitatively consistent with those observed using medical imaging after a permanent occlusion or after an occlusion followed by a reperfusion.
机译:了解缺血性中风后半影的机制以及时间和空间演变对于开发旨在防止该区域发展为梗塞的治疗方法至关重要。为了帮助整合可用数据,我们决定构建一个正式模型。我们首先收集了来自动物模型和人类观察的主要可用证据并将其分类,并在流程图中总结了此知识,并包含了中风演变的潜在关键组成部分。将组件分为十个可以独立建模和测试的子模型:组织反应,离子运动,水肿发展,谷氨酸兴奋性毒性,扩散性抑郁症,NO合成,炎症,坏死,细胞凋亡和再灌注子模型。然后,我们找出标记,确定介体,并选择复杂程度来对这些子模型进行建模。我们首先应用这种综合方法来建立基于中风后细胞毒性水肿发展的模型。尽管此模型仅包括三个子模型,并且需要在每个子模型中集成更多的机制,但是通过仿真获得的半影的特征以及时间和空间演变在质量上和一定程度上与观察到的一致。在永久性闭塞或闭塞后再灌注后使用医学成像。

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  • 来源
    《Acta Biotheoretica》 |2004年第4期|255-272|共18页
  • 作者单位

    Service de Pharmacologie Clinique EA 643Faculté de Médecine Laënnec Université Claude Bernard;

    Unité de Mathématiques Pures et Appliquées Ecole Normale Supérieure;

    Unité de Mathématiques Pures et Appliquées Ecole Normale Supérieure;

    Service de Pharmacologie Clinique EA 643Faculté de Médecine Laënnec Université Claude Bernard;

    Service de Neurologie du Centre Hospitalier Universitaire de Grenoble et Unité mixte INSERM-Université Joseph Fourier U594“Neuroimagerie fonctionnelle et métabolique”;

    Service de Neurologie du Centre Hospitalier Universitaire de Grenoble et Unité mixte INSERM-Université Joseph Fourier U594“Neuroimagerie fonctionnelle et métabolique”;

    Unité INSERM U331 “Hémostase et Thombose” Faculté de Médecine Laënnec Université Claude Bernard;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Modelling; methodology; ischemic stroke; imaging markers; cytotoxic oedema; penumbra;

    机译:建模;方法;缺血性中风;影像学标志物;细胞毒性水肿;半影;

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