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An islet population model of the endocrine pancreas

机译:内分泌胰腺的胰岛种群模型

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An islet population model is proposed for pancreatic insulin secretion. Without detailing the chain of biochemical events giving rise to the delivery of insulin packets, the effect of the islets' bursting response to varying glucose concentration is described by a simple second order nonlinear model, of the same functional form for all islets, but with a random distribution of parameter values over the one million islets considered. The islet equations are coupled to a traditional model of the glucose/insulin dynamics to complete a description of the feed-back control of the glucose/insulin system. The model is thus based upon the completely random cooperation of a large number of independent controllers, all reacting to the same prevailing plasma glucose concentrations, but with distributed reaction characteristics. It is shown that the proposed model is able to replicate in silico different observed phenomena such as low frequency glycemia-insulinemia oscillations (ultradian oscillations, with a period between 50 and 150 min, amplified by constant glucose administration and entrained by an oscillating exogenous glucose infusion), as well as concordant induction of high-frequency insulin oscillations by a rapid periodic pulsatile glucose infusion. In order to reproduce by simulation all of the above observed phenomena, a single set of (hyper-)parameters has been used throughout, showing that it is indeed possible that a single model may explain the results of several published experimental protocols.
机译:提出了胰岛胰岛分泌模型。在没有详细说明导致胰岛素包递送的生化事件链的情况下,通过简单的二阶非线性模型(对于所有胰岛均具有相同的功能形式)来描述胰岛的爆裂响应对变化的葡萄糖浓度的影响。参数值在所考虑的一百万个胰岛上的随机分布。胰岛方程与葡萄糖/胰岛素动力学的传统模型耦合,以完成对葡萄糖/胰岛素系统的反馈控制的描述。因此,该模型基于大量独立控制器的完全随机合作,它们对相同的主要血浆葡萄糖浓度做出反应,但具有分布式反应特性。结果表明,所提出的模型能够在计算机上复制观察到的不同现象,例如低频血糖-胰岛素血症振荡(周期为50至150分钟的超音波振荡,通过持续给予葡萄糖进行放大,并通过振荡性外源性葡萄糖输注进行夹带) ),以及通过快速定期脉动性葡萄糖输注一致诱导高频胰岛素振荡。为了通过仿真重现所有上述观察到的现象,通篇使用了一组(超)参数,这表明单个模型确实可以解释几种已公开实验方案的结果。

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