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Relation between plaque type, plaque thickness, blood shear stress, and plaque stress in coronary arteries assessed by X-ray Angiography and Intravascular Ultrasound

机译:X射线血管造影和血管内超声评估冠状动脉斑块类型,斑块厚度,血液切应力和斑块应力之间的关系

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Purpose: Atheromatic plaque progression is affected, among others phenomena, by biomechanical, biochemical, and physiological factors. In this paper, the authors introduce a novel framework able to provide both morphological (vessel radius, plaque thickness, and type) and biomechanical (wall shear stress and Von Mises stress) indices of coronary arteries. Methods: First, the approach reconstructs the three-dimensional morphology of the vessel from intravascular ultrasound (IVUS) and Angiographic sequences, requiring minimal user interaction. Then, a computational pipeline allows to automatically assess fluid-dynamic and mechanical indices. Ten coronary arteries are analyzed illustrating the capabilities of the tool and confirming previous technical and clinical observations. Results: The relations between the arterial indices obtained by IVUS measurement and simulations have been quantitatively analyzed along the whole surface of the artery, extending the analysis of the coronary arteries shown in previous state of the art studies. Additionally, for the first time in the literature, the framework allows the computation of the membrane stresses using a simplified mechanical model of the arterial wall. Conclusions: Circumferentially (within a given frame), statistical analysis shows an inverse relation between the wall shear stress and the plaque thickness. At the global level (comparing a frame within the entire vessel), it is observed that heavy plaque accumulations are in general calcified and are located in the areas of the vessel having high wall shear stress. Finally, in their experiments the inverse proportionality between fluid and structural stresses is observed.
机译:目的:在生物现象,生物化学和生理因素的影响下,无症状斑块的进展受到影响。在本文中,作者介绍了一种新颖的框架,该框架能够提供冠状动脉的形态学指标(血管半径,斑块厚度和类型)和生物力学指标(壁切应力和冯·米塞斯应力)。方法:首先,该方法从血管内超声(IVUS)和血管造影序列重建血管的三维形态,需要最少的用户交互。然后,计算管道可以自动评估流体动力学和机械指标。分析了十个冠状动脉,说明了该工具的功能并确认了先前的技术和临床观察结果。结果:通过IVUS测量获得的动脉指数与模拟结果之间的关系已沿动脉的整个表面进行了定量分析,从而扩展了先前技术研究中显示的冠状动脉分析。另外,在文献中,该框架首次允许使用简化的动脉壁力学模型来计算膜应力。结论:周长(在给定的框架内),统计分析显示壁切应力与斑块厚度之间呈反比关系。在整体水平上(与整个容器内的框架进行比较),可以观察到大的斑块堆积通常被钙化,并位于具有高壁切应力的容器区域。最后,在他们的实验中,观察到流体应力和结构应力之间成反比。

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