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首页> 外文期刊>PLoS One >Modelling glucose dynamics during moderate exercise in individuals with type 1 diabetes
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Modelling glucose dynamics during moderate exercise in individuals with type 1 diabetes

机译:用1型糖尿病中适度运动的血糖动力学

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The artificial pancreas is a closed-loop insulin delivery system that automatically regulates glucose levels in individuals with type 1 diabetes. In-silico testing using simulation environments accelerates the development of better artificial pancreas systems. Simulation environments need an accurate model that captures glucose dynamics during exercise to simulate real-life scenarios. We proposed six variations of the Bergman Minimal Model to capture the physiological effects of moderate exercise on glucose dynamics in individuals with type 1 diabetes. We estimated the parameters of each model with clinical data using a Bayesian approach and Markov chain Monte Carlo methods. The data consisted of measurements of plasma glucose, plasma insulin, and oxygen consumption collected from a study of 17 adults with type 1 diabetes undergoing aerobic exercise sessions. We compared the models based on the physiological plausibility of their parameters estimates and the deviance information criterion. The best model features (i) an increase in glucose effectiveness proportional to exercise intensity, and (ii) an increase in insulin action proportional to exercise intensity and duration. We validated the selected model by reproducing results from two previous clinical studies. The selected model accurately simulates the physiological effects of moderate exercise on glucose dynamics in individuals with type 1 diabetes. This work offers an important tool to develop strategies for exercise management with the artificial pancreas.
机译:人工胰腺是一种闭环胰岛素递送系统,可自动调节1型糖尿病的个体中的葡萄糖水平。使用仿真环境的硅测试加速了更好的人工胰腺系统的开发。仿真环境需要一个准确的模型,可在锻炼期间捕获血糖动态以模拟现实生活场景。我们提出了培育人最小模型的六种变化,以捕获中度运动对1型糖尿病患者的葡萄糖动力学的生理作用。我们估计了使用贝叶斯方法和马尔可夫链蒙特卡罗方法的临床数据的每个模型的参数。这些数据包括从17名成人的研究中收集的血浆葡萄糖,血浆胰岛素和氧气消耗组成的数据包括1型糖尿病患者进行有氧运动会。我们基于其参数估算的生理合理性和偏差信息标准进行比较模型。最佳模型特征(i)葡萄糖有效性与运动强度成比例,(ii)胰岛素作用的增加与运动强度和持续时间成比例。我们通过从先前的两个临床研究中再现结果来验证所选模型。所选模型准确地模拟了1型糖尿病患者葡萄糖动力学对中等运动的生理效果。这项工作提供了一个重要的工具,可以使用人工胰腺制定运动管理策略。

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