Literature DB >> 15520533

Mathematical modelling of an ischemic stroke: an integrative approach.

Marie-Aimée Dronne1, Jean-Pierre Boissel, Emmanuel Grenier, Hervé Gilquin, Michel Cucherat, Marc Hommel, Emmanuel Barbier, Giampiero Bricca.   

Abstract

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.

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Year:  2004        PMID: 15520533     DOI: 10.1023/B:ACBI.0000046597.53669.ff

Source DB:  PubMed          Journal:  Acta Biotheor        ISSN: 0001-5342            Impact factor:   1.774


  5 in total

Review 1.  Modeling molecular pathways of neuronal ischemia.

Authors:  Zachary H Taxin; Samuel A Neymotin; Ashutosh Mohan; Peter Lipton; William W Lytton
Journal:  Prog Mol Biol Transl Sci       Date:  2014       Impact factor: 3.622

2.  Modelling of the physiological response of the brain to ischaemic stroke.

Authors:  Piotr Orlowski; David O'Neill; Vicente Grau; Yiannis Ventikos; Stephen Payne
Journal:  Interface Focus       Date:  2013-04-06       Impact factor: 3.906

3.  A spatiotemporal theory for MRI T2 relaxation time and apparent diffusion coefficient in the brain during acute ischaemia: Application and validation in a rat acute stroke model.

Authors:  Michael J Knight; Bryony L McGarry; Harriet J Rogers; Kimmo T Jokivarsi; Olli H J Gröhn; Risto A Kauppinen
Journal:  J Cereb Blood Flow Metab       Date:  2015-10-14       Impact factor: 6.200

4.  Computer modeling of ischemic stroke.

Authors:  Alexandra H Seidenstein; Frank C Barone; William W Lytton
Journal:  Scholarpedia J       Date:  2015

5.  Medical image analysis methods in MR/CT-imaged acute-subacute ischemic stroke lesion: Segmentation, prediction and insights into dynamic evolution simulation models. A critical appraisal.

Authors:  Islem Rekik; Stéphanie Allassonnière; Trevor K Carpenter; Joanna M Wardlaw
Journal:  Neuroimage Clin       Date:  2012-10-17       Impact factor: 4.881

  5 in total

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