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首页> 外文期刊>Journal of Theoretical Biology >Modeling the glucose-insulin regulatory system and ultradian insulin secretory oscillations with two explicit time delays
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Modeling the glucose-insulin regulatory system and ultradian insulin secretory oscillations with two explicit time delays

机译:对具有两个显式时间延迟的葡萄糖-胰岛素调节系统和Ultradian胰岛素分泌振荡进行建模

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In the glucose-insulin regulatory system, ultradian insulin secretory oscillations are observed to have a period of 50-150 min. After pioneering work traced back to the 1960s, several mathematical models have been proposed during the last decade to model these ultradian oscillations as well as the metabolic system producing them. These currently existing models still lack some of the key physiological aspects of the glucose-insulin system. Applying the mass conservation law, we introduce two explicit time delays and propose a more robust alternative model for better understanding the glucose-insulin endocrine metabolic regulatory system and the ultradian insulin secretory oscillations for the cases of continuous enteral nutrition and constant glucose infusion. We compare the simulation profiles obtained from this two time delay model with those from the other existing models. As a result, we notice many unique features of this two delay model. Based on our intensive simulations, we suspect that one of the possibly many causes of ultradian insulin secretion oscillations is the time delay of the insulin secretion stimulated by the elevated glucose concentration. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在葡萄糖-胰岛素调节系统中,观察到超水平胰岛素分泌振荡的持续时间为50-150分钟。在追溯到1960年代的开创性工作之后,在过去的十年中提出了几种数学模型来对这些超店面振荡及其产生的代谢系统进行建模。这些当前存在的模型仍然缺少葡萄糖-胰岛素系统的一些关键生理方面。应用质量守恒定律,我们引入了两个明确的时间延迟,并提出了一个更健壮的替代模型,以便更好地了解连续肠内营养和恒定葡萄糖输注情况下的葡萄糖-胰岛素内分泌代谢调节系统和超水平胰岛素分泌振荡。我们比较了从这两个时间延迟模型获得的仿真曲线与从其他现有模型获得的仿真曲线。结果,我们注意到了这两个延迟模型的许多独特功能。根据我们的深入模拟,我们怀疑可能是引起超调性胰岛素分泌振荡的许多原因之一是葡萄糖浓度升高刺激胰岛素分泌的时间延迟。 (c)2006 Elsevier Ltd.保留所有权利。

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