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Estimation of Aortic Valve Leaflets from 3D CT Images using Local Shape Dictionaries and Linear Coding

机译:使用局部形状字典和线性编码从3D CT图像估计主动脉瓣小叶

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摘要

Aortic valve (AV) disease is a significant cause of morbidity and mortality. The preferred treatment modality for severe AV disease is surgical resection and replacement of the native valve with either a mechanical or tissue prosthetic. In order to develop effective and long-lasting treatment methods, computational analyses, e.g., structural finite element (FE) and computational fluid dynamic simulations, are very effective for studying valve biomechanics. These computational analyses are based on mesh models of the aortic valve, which are usually constructed from 3D CT images though many hours of manual annotation, and therefore an automatic valve shape reconstruction method is desired. In this paper, we present a method for estimating the aortic valve shape from 3D cardiac CT images, which is represented by triangle meshes. We propose a pipeline for aortic valve shape estimation which includes novel algorithms for building local shape dictionaries and for building landmark detectors and curve detectors using local shape dictionaries. The method is evaluated on real patient image dataset using a leave-one-out approach and achieves an average accuracy of 0.69 mm. The work will facilitate automatic patient-specific computational modeling of the aortic valve.
机译:主动脉瓣(AV)疾病是发病率和死亡率的重要原因。重症AV疾病的首选治疗方式是手术切除,并用机械或组织假体代替天然瓣膜。为了开发有效且持久的处理方法,例如结构有限元(FE)和计算流体动力学模拟的计算分析对于研究瓣膜生物力学非常有效。这些计算分析基于主动脉瓣的网格模型,该网格模型通常是通过3D CT图像通过许多小时的人工标注而构建的,因此需要一种自动的瓣膜形状重建方法。在本文中,我们提出了一种从3D心脏CT图像估计主动脉瓣形状的方法,该方法以三角形网格表示。我们提出了一种用于主动脉瓣形状估计的管道,该管道包括用于构建局部形状词典以及用于使用局部形状词典构建地标检测器和曲线检测器的新颖算法。使用留一法在真实的患者图像数据集上对该方法进行了评估,该方法的平均精度为0.69 mm。这项工作将有助于自动针对患者的主动脉瓣自动计算模型。

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