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Directional analysis of cardiac motion field based on the Discrete Helmholtz Hodge Decomposition

机译:基于离散亥姆霍兹霍奇分解的心脏运动场方向分析

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The analysis of LV rotational motion could provide insights into myocardial dysfunction and predict the outcome of interventions, and this analysis could be performed more simply in separate rotational and radial components. In this study we present an automatic method for decomposing the cardiac motion field into radial and rotational components using the Discrete Helmholtz Hodge Decomposition (DHHD). The DHHD was applied to the following 3D motion fields (i) Synthetic complex motion fields, created by applying curl and gradient operators to Gaussian potentials, to determine numerical accuracy; (ii) Synthetic motion field from the 4D Extended Cardiac-Torso (XCAT) phantom (v2.0), to validate the use of the DHHD in decomposing cardiac motion fields. Decomposition error was found to decrease with increasing smoothness of the fields, while keeping motion field components small at the boundary of the motion field domain. The DHHD was seen to separate radial and rotational cardiac motion, allowing possible simplification ofmotion analysis.
机译:左心室旋转运动的分析可以提供对心肌功能障碍的见解并预测干预的结果,并且可以在单独的旋转和径向分量中更简单地执行该分析。在这项研究中,我们提出了一种使用离散亥姆霍兹霍奇分解(DHHD)将心脏运动场分解为径向和旋转分量的自动方法。 DHHD被应用于以下3D运动场:(i)通过将卷曲和梯度算子应用于高斯势而创建的合成复运动场,以确定数值精度; (ii)来自4D扩展心脏-躯干(XCAT)体模(v2.0)的合成运动场,以验证DHHD在分解心脏运动场中的使用。发现分解误差随着场的平滑度的增加而减小,同时保持运动场分量在运动场域的边界处较小。 DHHD可以将心脏的径向运动和旋转运动分开,从而可以简化运动分析。

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