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On the use of continuous glucose monitoring systems to design optimal clinical tests for the identification of type 1 diabetes models

机译:关于使用连续葡萄糖监测系统设计用于鉴定1型糖尿病模型的最佳临床测试

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The identification of individual parameters of detailed physiological models of type 1 diabetes can be carried out by clinical tests designed optimally through model-based design of experiments (MBDoE) techniques. So far, MBDoE for diabetes models has been considered for discrete glucose measurement systems only. However, recent advances on sensor technology allowed for the development of continuous glucose monitoring systems (CGMSs), where glucose measurements can be collected with a frequency that is practically equivalent to continuous sampling. To specifically address the features of CGMSs, in this paper the optimal clinical test design problem is formulated and solved through a continuous, rather than discrete, approach. A simulated case study is used to assess the impact of CGMSs both in the optimal clinical test design problem and in the subsequent parameter estimation for the identification of a complex physiological model of glucose homeostasis. The results suggest that, although the optimal design of a clinical test is simpler if continuous glucose measurements are made available through a CGMS, the noise level and formulation may make continuous measurements less suitable for model identification than their discrete counterparts. ? 2012 Elsevier Ireland Ltd.
机译:可以通过通过基于模型的实验设计(MBDoE)技术进行最佳设计的临床试验来确定1型糖尿病详细生理模型的各个参数。迄今为止,用于糖尿病模型的MBDoE仅被用于离散葡萄糖测量系统。然而,传感器技术的最新进展允许开发连续葡萄糖监测系统(CGMS),在该系统中,可以以实际上等同于连续采样的频率收集葡萄糖测量值。为了专门解决CGMS的功能,本文通过连续而非离散的方法来制定和解决最佳临床测试设计问题。模拟案例研究用于评估CGMS在最佳临床测试设计问题和随后的参数估计中的作用,以鉴定复杂的葡萄糖稳态生理模型。结果表明,尽管如果通过CGMS进行连续葡萄糖测量,则临床试验的最佳设计会更简单,但噪声水平和配方可能会导致连续测量比离散测量更不适合模型识别。 ? 2012爱思唯尔爱尔兰有限公司

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