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Examination of the Parameter Space of a Computational Model of Acute Ischaemic Stroke Using Rough Sets

机译:用粗糙集检验急性缺血性卒中计算模型的参数空间

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Complex diseases such as stroke and cancer involve a wide range of biological parameters with respect to the systems involved and disease progression. Computational models of such diseases have led to new insights into the mechanism of action which have resulted in the development of novel therapeutic intervention strategies. Such models are generally quite complex because they incorporate a wide range of relevant biological variables and parameters. In this paper, we examine a biologically realistic computational model of acute ischaemic stroke with respect to the variable and parameter space using rough sets. The aim of this investigation was to extract a set(s) of variables and relevant parameters that predict in a qualitative fashion the final extent of tissue damage caused by a "typical" ischameic stroke.
机译:就涉及的系统和疾病进展而言,中风和癌症等复杂疾病涉及广泛的生物学参数。此类疾病的计算模型导致了对作用机理的新见解,从而导致了新型治疗干预策略的发展。这样的模型通常非常复杂,因为它们包含了广泛的相关生物学变量和参数。在本文中,我们使用粗糙集检查了关于变量和参数空间的急性缺血性卒中的生物学现实计算模型。这项研究的目的是提取一组变量和相关参数,以定性的方式预测由“典型”缺血性卒中引起的组织损伤的最终程度。

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