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Design of the Glucose Rate Increase Detector

机译:葡萄糖速率增加检测器的设计

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摘要

The Glucose Rate Increase Detector (GRID), a module of the Health Monitoring System (HMS), has been designed to operate in parallel to the glucose controller to detect meal events and safely trigger a meal bolus. The GRID algorithm was tuned on clinical data with 40-70 g CHO meals and tested on simulation data with 50-100 g CHO meals. Active closed- and open-loop protocols were executed in silico with various treatments, including automatic boluses based on a 75 g CHO meal and boluses based on simulated user input of meal size. An optional function was used to reduce the recommended bolus using recent insulin and glucose history. For closed-loop control of a 3-meal scenario (50, 75, and 100 g CHO), the GRID improved median time in the 80-180 mg/dL range by 17% and in the >180 range by 14% over unannounced meals, using an automatic bolus for a 75 g CHO meal at detection. Under open-loop control of a 75 g CHO meal, the GRID shifted the median glucose peak down by 73 mg/dL and earlier by 120 min and reduced the time >180 mg/dL by 57% over a missed-meal bolus scenario, using a full meal bolus at detection. The GRID improved closed-loop control in the presence of large meals, without increasing late postprandial hypoglycemia. Users of basal-bolus therapy could also benefit from GRID as a safety alert for missed meal corrections.
机译:葡萄糖速率增加检测器(GRID)是健康监控系统(HMS)的一个模块,旨在与葡萄糖控制器并行运行,以检测进餐事件并安全地触发进餐。 GRID算法针对40-70 g CHO膳食的临床数据进行了调整,并针对50-100 g CHO膳食的模拟数据进行了测试。主动闭环和开环协议在计算机上执行了各种处理,包括基于75克CHO餐的自动推注和基于模拟的用户进餐量的推注。使用可选的功能可使用最近的胰岛素和葡萄糖史减少推荐的推注。对于三餐方案(50、75和100 g CHO)的闭环控制,与未宣布的情况相比,GRID将80-180 mg / dL范围的中位时间缩短了17%,将> 180范围的中位时间提高了14%餐时,在检测时使用自动推注75 g CHO餐。在75 g CHO餐的开环控制下,在漏餐的情况下,GRID将中位葡萄糖峰值降低了73 mg / dL,更早地降低了120分钟,并将> 180 mg / dL的时间降低了57%,在检测时使用全餐大剂量。 GRID在大餐的情况下改善了闭环控制,而没有增加餐后低血糖。基础推注疗法的使用者还可以从GRID中受益,因为它可以作为漏诊校正的安全警报。

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