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A nearly-automated approach for left ventricular segmentation using feature asymmetry from real-time 3D echocardiography

机译:使用实时3D超声心动图的特征不对称性实现左心室分割的近乎自动化的方法

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Quantification of left ventricular (LV) function from real-time 3D echocardiography has already been proved to be more accurate compared to LV function derived from 2D echocardiographic imaging. However, tools available in clinical practice depend on cardiologist's experience in selecting the correct views for volume computation, tracing endocardial contours or selecting some feature points. The aim of this study was to develop a new LV segmentation algorithm driven by feature asymmetry (FA) information. The proposed approach was based on a 3D modified Malladi-Sethian level-set model, driven by FA as an edge indicator, followed by a curvature flow and isosurface extraction. It was tested and validated on 3D echo data made available for the challenge on endocardial 3D ultrasound segmentation, organized during MICCAI 2014, in 9 patients, by correlation and Bland-Altman analysis for end-diastolic and end-systolic volumes and ejection fraction. LV surfaces were compared by means of absolute and Hausdorff distance and Dice coefficient. Clinical indexes derived from the detected surfaces were in good agreement with the reference ones. These promising results were supported by the results obtained by comparing LV surfaces. This study provides the basis for a fast and accurate quantification of cardiac function from real-time 3D echocardiography.
机译:实时3D超声心动图对左心室(LV)功能的量化已被证明比2D超声心动图成像所产生的LV功能更准确。但是,临床实践中可用的工具取决于心脏病专家在选择正确的视图进行体积计算,追踪心内膜轮廓或选择某些特征点方面的经验。这项研究的目的是开发一种新的由特征不对称(FA)信息驱动的LV分割算法。所提出的方法基于3D修改的Malladi-Sethian水平集模型,由FA作为边缘指示器驱动,然后进行曲率流和等值面提取。通过相关性和Bland-Altman分析对舒张末期和收缩末期容积以及射血分数进行相关性和Bland-Altman分析,在3D回声数据上进行了测试和验证,该数据可用于MICCAI 2014期间组织的心内膜3D超声分割挑战。通过绝对距离和Hausdorff距离以及Dice系数比较LV表面。从检测到的表面得出的临床指标与参考值吻合良好。通过比较LV表面获得的结果支持了这些有希望的结果。这项研究为从实时3D超声心动图快速准确地量化心脏功能提供了基础。

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