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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Computational hemodynamics of abdominal aortic aneurysms: Three-dimensional ultrasound versus computed tomography
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Computational hemodynamics of abdominal aortic aneurysms: Three-dimensional ultrasound versus computed tomography

机译:腹主动脉瘤的计算血流动力学:三维超声与计算机断层扫描

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摘要

The current criterion for surgical intervention in abdominal aortic aneurysms, based upon a maximal aortic diameter, is considered conservative due to the high mortality rate in case of rupture. The research community is actively investigating the use of computational mechanics tools combined with patient-specific imaging to help identify more accurate criteria. Widespread uptake of a successful metric will however be limited by the need for computed tomography, which is at present the primary image extraction method on account of the location and complex shape of the aneurysms. The use of three-dimensional ultrasound as the scanning method is more attractive on account of increased availability, reduced cost and reduced risk to patients. The suitability of three-dimensional ultrasound is assessed for this purpose in the present work; computational fluid dynamics simulations were performed on geometries obtained from the same patient using both ultrasound and computed tomography. The influence of different smoothing algorithms is investigated in the geometry preparation stage and Taubin's low-pass filter was found to best preserve geometry features. Laminar, Newtonian, steady-state simulation analysis identified haemodynamic characteristics to be qualitatively similar in terms of wall shear stress, velocity and vorticity. The study demonstrates the potential for three-dimensional ultrasound to be integrated into a more accessible patient-specific modelling tool able to identify the need for surgical intervention of abdominal aortic aneurysms.
机译:基于最大主动脉直径的腹主动脉瘤手术干预的现行标准被认为是保守的,因为在破裂情况下死亡率很高。研究社区正在积极研究将计算力学工具与特定于患者的影像结合使用,以帮助确定更准确的标准。然而,对于成功的度量标准的广泛采用将受到对计算机断层摄影术的需求的限制,这是由于动脉瘤的位置和复杂形状,目前是主要的图像提取方法。由于增加的可用性,降低的成本和降低的患者风险,使用三维超声作为扫描方法更具吸引力。为此,本工作评估了三维超声的适用性。使用超声和计算机断层扫描对从同一患者获得的几何形状进行了计算流体动力学模拟。在几何图形准备阶段研究了各种平滑算法的影响,并发现Taubin的低通滤波器可以最好地保留几何图形特征。层流,牛顿的稳态模拟分析确定了在壁剪应力,速度和涡度方面的血流动力学特性在质量上相似。这项研究证明了将三维超声整合到更易于访问的特定于患者的建模工具中的潜力,该工具能够确定需要手术干预腹主动脉瘤。

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