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Automatic glucose control during meals and exercise in type 1 diabetes: Proof-of-concept in silico tests using a switched LPV approach

机译:在1型糖尿病膳食中自动葡萄糖控制和锻炼:使用交换式LPV方法在硅测试中的概念验证

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Keeping the blood glucose levels within the safe range during meals and exercise still represents a major hurdle not only for patients with type 1 diabetes (T1D), but also for Artificial Pancreas (AP) systems. One of the reasons a fully (autonomous) closed-loop solution has not been released onto the market yet is the slow action of current insulin analogs. To partially overcome this limitation, the authors have previously designed a switched control strategy equipped with an insulin-on-board (IOB) safety loop that mitigates meal-related glucose excursions without carbohydrate counting. In this paper, a similar strategy based on a Linear Parameter-Varying (LPV) control law has been adapted to safely handle also exercise challenges with minimum user intervention. In silico results using the UVA/Padova simulator evidence that the proposed closed-loop scheme is feasible under moderate-intense exercise bouts by effectively and safely reducing the risk of hypoglycemia.
机译:在膳食和运动期间保持血糖水平仍然是1型糖尿病患者(T1D)的主要障碍,而且还代表了人工胰腺(AP)系统的主要障碍。 完全(自主)闭环解决方案尚未释放到市场上的原因之一尚未释放到当前胰岛素类似物的缓慢作用。 为了部分地克服这种限制,提交人以前设计了一种配备有胰岛素 - 载体(IOB)安全环路的交换控制策略,这些安全环减轻了无碳水化合物计数的膳食相关葡萄糖偏移。 在本文中,基于线性参数 - 变化(LPV)控制法的类似策略已经适用于安全地处理挑战,最小的用户干预。 在Silico结果中,使用UVA / PADOVA模拟器的证据表明,通过有效和安全地降低低血糖的风险,所提出的闭环方案在中等激烈的运动伴侣下是可行的。

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