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Monitoring Artificial Pancreas Trials Through Agent-based Technologies

机译:通过基于代理的技术监视人工胰腺试验

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摘要

The increase in the availability and reliability of network connections lets envision systems supporting a continuous remote monitoring of clinical parameters useful either for overseeing chronic diseases or for following clinical trials involving outpatients. We report here the results achieved by a telemedicine infrastructure that has been linked to an artificial pancreas platform and used during a trial of the AP@home project, funded by the European Union. The telemedicine infrastructure is based on a multiagent paradigm and is able to deliver to the clinic any information concerning the patient status and the operation of the artificial pancreas. A web application has also been developed, so that the clinic staff and the researchers involved in the design of the blood glucose control algorithms are able to follow the ongoing experiments. Albeit the duration of the experiments in the trial discussed in the article was limited to only 2 days, the system proved to be successful for monitoring patients, in particular overnight when the patients are sleeping. Based on that outcome we can conclude that the infrastructure is suitable for the purpose of accomplishing an intelligent monitoring of an artificial pancreas either during longer trials or whenever that system will be used as a routine treatment.
机译:网络连接的可用性和可靠性的提高,使远景系统支持对临床参数的连续远程监控,可用于监督慢性病或进行涉及门诊病人的临床试验。我们在这里报告通过远程医疗基础设施取得的成果,该基础设施已与人工胰腺平台链接,并在由欧盟资助的AP @ home项目试验中使用。远程医疗基础设施基于多主体范例,能够将与患者状况和人工胰腺操作有关的任何信息传递给诊所。还开发了一个Web应用程序,以便参与血糖控制算法设计的诊所工作人员和研究人员能够跟踪正在进行的实验。尽管本文讨论的试验中的实验持续时间仅限于2天,但该系统已被证明可以成功地监控患者,尤其是在患者入睡时过夜。根据该结果,我们可以得出结论,该基础结构适用于在较长时间的试验期间或将该系统用作常规治疗时实现对人造胰腺的智能监控的目的。

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