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An Educational Training Simulator for Advanced Perfusion Techniques Using a High-Fidelity Virtual Patient Model

机译:使用高保真虚拟患者模型进行高级灌注技术的教育培训模拟器

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The operation of cardiopulmonary bypass procedure requires an advanced skill in both physiological and mechanical knowledge. We developed a virtual patient simulator system using a numerical cardiovascular regulation model to manage perfusion crisis. This article evaluates the ability of the new simulator to prevent perfusion crisis. It combined short-term baroreflex regulation of venous capacity, vascular resistance, heart rate, time-varying elastance of the heart, and plasma-refilling with a simple lumped parameter model of the cardiovascular system. The combination of parameters related to baroreflex regulation was calculated using clinical hemodynamic data. We examined the effect of differences in autonomous-nerve control parameter settings on changes in blood volume and hemodynamic parameters and determined the influence of the model on operation of the control arterial line flow and blood volume during the initiation and weaning from cardiopulmonary bypass. Typical blood pressure (BP) changes (hypertension, stable, and hypotension) were reproducible using a combination of four control parameters that can be estimated from changes in patient physiology, BP, and blood volume. This simulation model is a useful educational tool to learn the recognition and management skills of extracorporeal circulation. Identification method for control parameter can be applied for diagnosis of heart failure.
机译:心肺旁路手术的操作需要具有生理和机械知识的高级技能。我们开发了使用数字心血管调节模型来管理灌注危机的虚拟患者模拟器系统。本文评估了新模拟器防止灌注危机的能力。它结合了对静脉容量,血管阻力,心率,随时间变化的心脏弹性和血浆充盈的短期压力反射调节,以及心血管系统的简单集总参数模型。使用临床血液动力学数据计算与压力反射调节相关的参数组合。我们检查了自主神经控制参数设置的差异对血容量和血液动力学参数变化的影响,并确定了该模型对心肺旁路启动和断奶期间控制动脉血流量和血容量的影响。使用四个控制参数的组合可以再现典型的血压(BP)变化(高血压,稳定和低血压),这些参数可以根据患者生理,血压和血容量的变化进行估算。该模拟模型是学习体外循环的识别和管理技能的有用的教育工具。控制参数的识别方法可用于心力衰竭的诊断。

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