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首页> 外文期刊>Mathematical Biosciences: An International Journal >Modeling the inflammatory response in the hypothalamus ensuing heat stroke: Iterative cycle of model calibration, identifiability analysis, experimental design and data collection
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Modeling the inflammatory response in the hypothalamus ensuing heat stroke: Iterative cycle of model calibration, identifiability analysis, experimental design and data collection

机译:建模中暑后下丘脑的炎症反应:模型校准,可识别性分析,实验设计和数据收集的迭代周期

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摘要

Heat Stroke (HS) is a life-threatening illness caused by prolonged exposure to heat that causes severe hyperthermia and nervous system abnormalities. The long term consequences of HS are poorly understood and deeper insight is required to find possible treatment strategies. Elevated pro- and anti-inflammatory cytokines during HS recovery suggest to play a major role in the immune response. In this study, we developed a mathematical model to understand the interactions and dynamics of cytokines in the hypothalamus, the main thermoregulatory center in the brain. Uncertainty and identifiability analysis of the calibrated model parameters revealed non-identifiable parameters due to the limited amount of data. To overcome the lack of identifiability of the parameters, an iterative cycle of optimal experimental design, data collection, re-calibration and model reduction was applied and further informative experiments were suggested. Additionally, a new method of approximating the prior distribution of the parameters for Bayesian optimal experimental design based on the profile likelihood is presented. (C) 2014 Elsevier Inc. All rights reserved.
机译:中暑(HS)是长期暴露于热中引起的致命疾病,会导致严重的体温过高和神经系统异常。 HS的长期后果知之甚少,需要更深入的了解才能找到可能的治疗策略。 HS恢复过程中促炎和抗炎细胞因子升高提示在免疫反应中起主要作用。在这项研究中,我们开发了一个数学模型来了解下丘脑中细胞因子的相互作用和动力学,下丘脑是大脑的主要温度调节中心。校准后的模型参数的不确定性和可识别性分析显示,由于数据量有限,无法识别参数。为了克服参数可识别性的不足,应用了最佳实验设计,数据收集,重新校准和模型简化的迭代循环,并提出了进一步的有益实验。另外,提出了一种新的基于轮廓似然估计贝叶斯最优实验设计参数的先验分布的方法。 (C)2014 Elsevier Inc.保留所有权利。

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