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An adaptive scheme of controlling dosage and dosing interval in general anesthesia by model predictive control using anesthetic depth model

机译:通过使用麻醉深度模型的模型预测控制来控制全身麻醉的剂量和给药间隔的自适应方案

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In this paper, we proposed a dosage control system for total intravenous anesthesia (TIVA) in order to help anesthe- siologists and enable to manage multiple operations remotely by one anesthesiologist. In the general anesthesia, constraints of a drug dosage and the value of biological information indicating anesthetic depth must be taken into account. Also, introduction time of anesthesia and time to awake after surgery is required to be short with satisfying above restrictions. Furthermore, if surgery periods are extended, anesthetic effect should be maintained during surgery. From this point of view, we proposed an adaptive scheme of controlling the dosage and the dosing interval by model predictive control in order to satisfy such complicated requirements.
机译:在本文中,我们提出了一种用于全静脉麻醉(TIVA)的剂量控制系统,以帮助麻醉医师并允许一名麻醉医师远程管理多种手术。在全身麻醉中,必须考虑药物剂量的限制和指示麻醉深度的生物学信息的价值。此外,在满足上述限制的前提下,麻醉的导入时间和手术后的清醒时间必须较短。此外,如果延长手术时间,则在手术期间应保持麻醉效果。从这一观点出发,我们提出了一种通过模型预测控制来控制剂量和给药间隔的自适应方案,以满足这种复杂的要求。

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