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A switching hybrid control method for automatic blood glucose regulation in diabetic Goettingen minipigs

机译:糖尿病哥廷根小型猪的自动血糖调节切换混合控制方法

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A new hybrid control method for blood glucose concentration is developed which switches between two operation modes. The effects of meal-induced disturbances on blood glucose concentrations are expected to be more serious than the time-varying behaviour of glucose metabolism during nocturnal phases. Thus, the control method determines insulin impulses (boli) as a manipulated variable during the day and calculates continuous insulin infusion (basal rates) at night. To test the controller-based insulin therapy in vivo, animal trials with diabetic Goettingen minipigs are used as a proxy for human studies. The controller parameters are selected by in silico studies based on mathematical minipig models, and the resulting individualised controllers are experimentally verified. For this, two control performance requirements must be taken into account: blood glucose concentrations below the critical threshold of 50 mg/dl have to be avoided, and blood glucose peaks caused by ingestion of minipig diet have to be quickly counteracted. Results from these animal experiments show that the closed-loop system satisfies both control requirements and improves insulin therapy compared with a standard therapeutic protocol.
机译:开发了一种新的血糖浓度混合控制方法,该方法可在两种操作模式之间切换。进餐引起的紊乱对血糖浓度的影响预期比夜间阶段葡萄糖代谢的时变行为更为严重。因此,该控制方法将胰岛素冲量(玻利)确定为白天的受控变量,并在夜间计算连续的胰岛素输注量(基本费率)。为了在体内测试基于控制器的胰岛素疗法,将糖尿病性哥廷根小型猪的动物试验用作人体研究的替代药物。控制器参数是基于数学小型猪模型通过计算机研究选择的,并通过实验验证了所得的个性化控制器。为此,必须考虑两个控制性能要求:必须避免血糖浓度低于50 mg / dl的临界阈值,并且必须迅速抵消因摄入小猪饮食而引起的血糖峰值。这些动物实验的结果表明,与标准治疗方案相比,闭环系统既满足控制要求,又改善了胰岛素治疗。

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