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Impact of sensing and infusion site dependent dynamics on insulin bolus based meal compensation

机译:感应和输液位点依赖性动态对胰岛素推注的膳食补偿影响

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Meals are most challenging in the regulation of blood glucose levels (BGL) in diabetes mellitus type 1, whether it is automated, semi-automated or manually controlled. The common subcutaneous (SC) route for glucose sensing and insulin administration suffers from large latencies. This paper investigates the impact of glucose sensing and insulin absorption dynamics on the achievable glucose regulation when insulin boluses are triggered by a meal detection system. In silico patients from the academic version of the UVa/Padova simulator are studied. The sub-models of glucose sensing and insulin absorption are adjusted to allow simulations with different time delays and time constants. Meals are detected with published methods based on threshold-checking of continuous glucose monitoring data. Slow glucose sensing dynamics delay the meal detection. Delayed meal detection can be compensated to some extent by exact knowledge about the insulin absorption. The combination of slow glucose sensing and slow insulin administration reduces the effect of insulin boluses on the postprandial BGL. The classical SC approach is, therefore, at high risk of large BGL excursions despite meal detection.
机译:膳食在糖尿病型糖尿病型血糖水平(BGL)的调节中最具挑战性,无论是自动化的,半自动化还是手动控制的。用于葡萄糖感测和胰岛素给药的常见皮下(SC)途径遭受大延迟。本文研究了胰岛素荧光引发的血糖感测和胰岛素吸收动力学对可实现的葡萄糖调节的影响。在Silico患者中,研究了UVA / PADOVA模拟器的学术版本。调整葡萄糖感测和胰岛素吸收的子模型以允许使用不同的时间延迟和时间常数模拟。基于阈值检查的持续葡萄糖监测数据的阈值检查,用公开的方法检测到膳食。慢血糖传感动力学延迟膳食检测。通过关于胰岛素吸收的精确知识,可以在一定程度上补偿延迟的膳食检测。缓慢葡萄糖感测和缓慢胰岛素给药的组合降低了胰岛素推注对餐后BGL的影响。因此,虽然膳食检测,但经典的SC方法是高风险的大型BGL短途风险。

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