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Modelling of BIS-Index Dynamics for Total Intravenous Anesthesia Simulation in Matlab-Simulink ?

机译:Matlab-Simulink中用于全静脉麻醉模拟的BIS指标动力学建模

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The anesthesiologic technique, where substances are injected intravenously, is known as total intravenous anesthesia (TIVA). The anesthesiologist’s task is to carefully assess the depth of anesthesia (DoA) and adjusts the injection of intravenous anesthetic agents accordingly. In the paper, we present a framework for studying DoA dynamics within the Matlab-Simulink environment. DoA can be indirectly measured by bispectral index (BIS index), which is calculated from appropriate electroencephalographic (EEG) signals, and is assumed to be influenced primarily by inflow of propofol. The 3-compartmental model is presented and the 4th (virtual) compartment dealing with the effect-site model is introduced. Next, the pharmacodynamic model structure is presented and the BIS-index effect output is formulated. The relevant parameters based on patient’s age, weight, height and gender are established. The model is verified by comparing the simulation results to the data obtained during an actual target-controlled anesthetic application of intravenously administered propofol (total duration approx. 70 minutes).The data were recorded by an Orchestra Base Primea infusion workstation and a Lidco monitor. The data parser and the model developed in the Matlab-Simulink environment provide a basis for further refining the dynamic model and for development and validation of closed-loop control approaches for DoA. The presented model allows conducting simulations and tests of various scenarios of propofol administration within the Matlab-Simulink environment with the goal of a deeper insight into the mechanisms of DoA dynamics. This will lead to better administration methods that will benefit the patient, relieve the workload and allow the anesthesiologist to focus on the critical aspects of the procedure.
机译:静脉内注射物质的麻醉技术称为全静脉麻醉(TIVA)。麻醉师的任务是仔细评估麻醉深度(DoA),并相应地调整静脉麻醉剂的注射量。在本文中,我们提出了一个在Matlab-Simulink环境中研究DoA动力学的框架。 DoA可以通过双光谱指数(BIS指数)间接测量,该指数由适当的脑电图(EEG)信号计算得出,并假定主要受异丙酚流入的影响。介绍了三室模型,并介绍了处理效果部位模型的第四(虚拟)室。接下来,给出了药效学模型结构,并制定了BIS指数效应输出。建立了基于患者年龄,体重,身高和性别的相关参数。通过将模拟结果与静脉注射异丙酚的目标靶点麻醉剂实际应用(总时长约70分钟)期间获得的数据进行比较来验证模型,该数据由Orchestra Base Primea输液工作站和Lidco监护仪记录。在Matlab-Simulink环境中开发的数据解析器和模型为进一步完善动态模型以及为DoA开发和验证闭环控制方法提供了基础。提出的模型允许在Matlab-Simulink环境中对异丙酚给药的各种情况进行模拟和测试,目的是更深入地了解DoA动力学机制。这将导致更好的给药方法,使患者受益,减轻工作量,并使麻醉师专注于手术的关键方面。

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