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Misinterpretation of the Functional Severity of Coronary Stenosis Due To Variability in Arterial Wall Compliance

机译:由于动脉壁顺应性的变化而导致的冠状动脉狭窄功能严重程度的误解

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Effect of arterial wall compliance on the invasive coronary diagnostic parameters for various severities of coronary stenoses was assessed. The Mooney-Rivlin model was used to define the non-linear properties of the arterial wall and the plaque regions. The non-Newtonian viscosity of blood was modeled using the Carreau model. A finite element method was employed to solve the pulsatile fluid (blood)-structure (arterial wall) interaction (FSI) equations. Variability in the diagnostic parameter values can occur near the cut-off value due to change in compliance of stenotic arteries between the range of 84% and 89% area stenosis. This may lead to misdiagnosis and might wrongly lead to postponement of coronary intervention.
机译:评估了动脉壁顺应性对各种严重程度的冠状动脉狭窄的侵入性冠状动脉诊断参数的影响。 Mooney-Rivlin模型用于定义动脉壁和斑块区域的非线性特性。使用Carreau模型对血液的非牛顿粘度进行建模。有限元方法被用来求解脉动流体(血液)-结构(动脉壁)相互作用(FSI)方程。由于狭窄动脉的顺应性在84%和89%面积狭窄范围之间变化,诊断参数值可能会在临界值附近发生变化。这可能导致误诊,并可能错误地导致推迟冠状动脉介入治疗。

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