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Automating Glucose Control in Type 1 Diabetes : Plenary Talk

机译:1型糖尿病中的自动化葡萄糖控制:全体会议

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Type 1 diabetes (T1D) is a chronic metabolic disease characterised by an autoimmune destruction of the beta cells in the pancreas, responsible of insulin secretion which promotes glucose transport into the cells. The resulting absolute insulin deficiency results in high blood glucose levels (hyperglycaemia). Therefore, people with T1D require exogenous delivery of insulin in order to survive. Sustained elevated glucose levels can lead to long-term complications (retinopathy, nephropathy, heart disease), which place a heavy burden to the healthcare system. Due to the complexity of glucoseinsulin metabolism, achieving good glucose control is often a very difficult task. The development of continuous glucose monitoring (CGM) have opened the door to the development of automatic insulin delivery systems, the so-called artificial pancreas (AP). In the past 10 years there has been an intensive research effort from different players in the artificial pancreas development, which has translated into a first system reaching the market in 2017, although patient intervention for meal control is still needed (this is referred as 'hybrid artificial pancreas'). This has been thanks to important contributions from modelling and control engineering, in combination with technological and pharmacological achievements.
机译:1型糖尿病(T1D)是一种慢性代谢疾病,其特征在于胰腺中β细胞的自身免疫性破坏,负责胰岛素分泌,该分泌促进葡萄糖输送到细胞中。由此产生的绝对胰岛素缺乏导致高血糖水平(高血糖症)。因此,T1D的人需要外源性胰岛素递送以存活。持续升高的葡萄糖水平可导致长期并发症(视网膜病变,肾病,心脏病),这对医疗保健系统造成了沉重的负担。由于葡萄糖素新代谢的复杂性,实现了良好的葡萄糖控制通常是一项非常艰巨的任务。连续葡萄糖监测(CGM)的发展已经向大门开发了自动胰岛素递送系统,所谓的人工胰腺(AP)。在过去的10年里,人工胰腺开发中的不同球员都有一项集中研究努力,这已经转化为2017年达到市场的第一个系统,尽管仍然需要患者的膳食控制(这称为“混合”人工胰腺')。这一点归功于建模与控制工程的重要贡献,以及技术和药理学成果。

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