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Fast Tracking of Cardiac Motion Using 3D-HARP

机译:使用3D-HARP快速跟踪心脏运动

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摘要

MR tagging is considered as a valuable technique to evaluate regional myocardial function quantitatively and noninvasively, however the cumbersome and time-consuming post-processing procedures for cardiac motion tracking still hinder its application to routine clinical examination. We present a fast and semiautomatic method for tracking 3D cardiac motion from short-axis (SA) and long-axis (LA) tagged MRI images. The technique, called 3D-HARP (HARmonic Phase), is based on the HARP method and extends this method to track 3D motion. A material mesh model is built to represent a collection of material points inside the left ventricle (LV) wall. The phase time-invariance property of material points is used to track the mesh points. For a series of 9 timeframe MRI images, the total time required for initializing settings, building the mesh, and tracking 3D cardiac motion is approximately 10 minutes. Further analysis of Langrangian strain and twist angle demonstrates that during systole, the lateral LV wall shows a greater strain values than the septum and the SA slices from the base to the apex show a gradual change in twist pattern.
机译:MR标签被认为是定量和非侵入性评估局部心肌功能的有价值的技术,但是,用于心脏运动跟踪的繁琐且耗时的后处理程序仍然阻碍了其在常规临床检查中的应用。我们提出了一种从短轴(SA)和长轴(LA)标记的MRI图像跟踪3D心脏运动的快速和半自动方法。这项称为3D-HARP(谐波相位)的技术基于HARP方法,并将此方法扩展为跟踪3D运动。建立材料网格模型以表示左心室(LV)壁内的材料点的集合。材质点的相位时不变特性用于跟踪网格点。对于一系列9个时间范围的MRI图像,初始化设置,构建网格和跟踪3D心脏运动所需的总时间约为10分钟。对Langrangian应变和扭转角的进一步分析表明,在收缩期,LV外侧壁显示出比隔膜更大的应变值,并且从根部到根尖的SA切片显示出扭转模式的逐渐变化。

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