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The artificial pancreas: current status and future prospects in the management of diabetes

机译:人造胰腺:糖尿病治疗的现状和未来前景

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摘要

Recent advances in insulins, insulin pumps, continuous glucose-monitoring systems, and control algorithms have resulted in an acceleration of progress in the development of artificial pancreas devices. This review discusses progress in the development of external systems that are based on subcutaneous drug delivery and subcutaneous continuous glucose monitoring. There are two major system-level approaches to achieving closed-loop control of blood glucose in diabetic individuals. The unihormonal approach uses insulin to reduce blood glucose and relies on complex safety mitigation algorithms to reduce the risk of hypoglycemia. The bihormonal approach uses both insulin to lower blood glucose and glucagon to raise blood glucose, and also relies on complex algorithms to provide for safety of the user. There are several major strategies for the design of control algorithms and supervision control for application to the artificial pancreas: proportional-integral-derivative, model predictive control, fuzzy logic, and safety supervision designs. Advances in artificial pancreas research in the first decade of this century were based on the ongoing computer revolution and miniaturization of electronic technology. The advent of modern smartphones has created the ability to utilize smartphone technology as the engineering centerpiece of an artificial pancreas. With these advances, an artificial or bionic pancreas is within reach.
机译:胰岛素,胰岛素泵,连续葡萄糖监测系统和控制算法的最新进展已加快了人工胰腺装置的开发进度。这篇综述讨论了基于皮下药物输送和皮下连续葡萄糖监测的外部系统开发的进展。在糖尿病个体中,有两种主要的系统级方法可以实现血糖的闭环控制。单激素方法使用胰岛素来降低血糖,并依靠复杂的安全缓解算法来降低低血糖的风险。双激素方法既使用胰岛素来降低血糖,又使用胰高血糖素来升高血糖,并且还依靠复杂的算法来为用户提供安全。控制算法的设计和应用于人造胰腺的监督控制有几种主要策略:比例积分微分,模型预测控制,模糊逻辑和安全监督设计。在本世纪的前十年中,人工胰腺研究的进展是基于不断进行的计算机革命和电子技术的小型化。现代智能手机的出现创造了利用智能手机技术作为人造胰腺工程核心的能力。随着这些进步,人造胰腺或仿生胰腺将近在咫尺。

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