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面向人工胰腺的患者内变异的控制导向模型。

Control-Oriented Model With Intra-Patient Variations for an Artificial Pancreas.

出版信息

IEEE J Biomed Health Inform. 2020 Sep;24(9):2681-2689. doi: 10.1109/JBHI.2020.2969389. Epub 2020 Jan 27.

Abstract

In this work, a low-order model designed for glucose regulation in Type 1 Diabetes Mellitus (T1DM) is obtained from the UVA/Padova metabolic simulator. It captures not only the nonlinear behavior of the glucose-insulin system, but also intra-patient variations related to daily insulin sensitivity ( S) changes. To overcome the large inter-subject variability, the model can also be personalized based on a priori patient information. The structure is amenable for linear parameter varying (LPV) controller design, and represents the dynamics from the subcutaneous insulin input to the subcutaneous glucose output. The efficacy of this model is evaluated in comparison with a previous control-oriented model which in turn is an improvement of previous models. Both models are compared in terms of their open- and closed-loop differences with respect to the UVA/Padova model. The proposed model outperforms previous T1DM control-oriented models, which could potentially lead to more robust and reliable controllers for glycemia regulation.

摘要

在这项工作中,从 UVA/Padova 代谢模拟器中获得了用于 1 型糖尿病 (T1DM) 葡萄糖调节的低阶模型。它不仅捕捉了葡萄糖-胰岛素系统的非线性行为,还捕捉了与每日胰岛素敏感性 (S) 变化相关的个体内变化。为了克服大的个体间可变性,该模型还可以基于先验患者信息进行个性化设置。该结构适用于线性参数变化 (LPV) 控制器设计,并表示从皮下胰岛素输入到皮下葡萄糖输出的动态。通过与之前的面向控制的模型进行比较,评估了该模型的效果,而该模型又是对之前模型的改进。这两个模型在与 UVA/Padova 模型的开环和闭环差异方面进行了比较。所提出的模型优于之前的 T1DM 面向控制的模型,这可能会导致血糖调节的更稳健和可靠的控制器。

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