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首页> 外文期刊>Diabetes care >Feasibility of outpatient fully integrated closed-loop control: first studies of wearable artificial pancreas.
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Feasibility of outpatient fully integrated closed-loop control: first studies of wearable artificial pancreas.

机译:门诊完全集成闭环控制的可行性:可穿戴人工胰腺的首次研究。

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摘要

To evaluate the feasibility of a wearable artificial pancreas system, the Diabetes Assistant (DiAs), which uses a smart phone as a closed-loop control platform.Twenty patients with type 1 diabetes were enrolled at the Universities of Padova, Montpellier, and Virginia and at Sansum Diabetes Research Institute. Each trial continued for 42 h. The United States studies were conducted entirely in outpatient setting (e.g., hotel or guest house); studies in Italy and France were hybrid hospital-hotel admissions. A continuous glucose monitoring/pump system (Dexcom Seven Plus/Omnipod) was placed on the subject and was connected to DiAs. The patient operated the system via the DiAs user interface in open-loop mode (first 14 h of study), switching to closed-loop for the remaining 28 h. Study personnel monitored remotely via 3G or WiFi connection to DiAs and were available on site for assistance.The total duration of proper system communication functioning was 807.5 h (274 h in open-loop and 533.5 h in closed-loop), which represented 97.7% of the total possible time from admission to discharge. This exceeded the predetermined primary end point of 80% system functionality.This study demonstrated that a contemporary smart phone is capable of running outpatient closed-loop control and introduced a prototype system (DiAs) for further investigation. Following this proof of concept, future steps should include equipping insulin pumps and sensors with wireless capabilities, as well as studies focusing on control efficacy and patient-oriented clinical outcomes.
机译:为了评估可穿戴人工胰腺系统的可行性,使用智能手机作为闭环控制平台的Diabetes Assistant(DiAs)在帕多瓦,蒙彼利埃,弗吉尼亚大学招收了20位1型糖尿病患者。在Sansum糖尿病研究所。每个试验持续42小时。美国的研究完全在门诊(例如,旅馆或宾馆)进行;在意大利和法国进行的研究是混合医院与酒店的招生。将连续葡萄糖监测/泵系统(Dexcom Seven Plus / Omnipod)放置在受试者身上,并连接到DiAs。患者通过DiAs用户界面以开环模式(研究的前14小时)操作系统,在其余28小时内切换到闭环。研究人员通过3G或与DiAs的WiFi连接进行远程监控,可以在现场获得帮助。系统正常通信的总持续时间为807.5小时(开环为274小时,闭环为533.5小时),占97.7%。从入院到出院的全部可能时间。这超出了80%系统功能的预定主要终点。这项研究表明,现代智能手机能够运行门诊病人的闭环控制,并引入了原型系统(DiAs)进行进一步研究。根据这一概念验证,未来的步骤应包括为胰岛素泵和传感器配备无线功能,以及侧重于控制功效和以患者为中心的临床结果的研究。

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