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Fully automated segmentation of left ventricle using dual dynamic programming in cardiac cine MR images

机译:在心脏电影MR图像中使用双重动态编程对左心室进行全自动分割

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Cardiovascular diseases are becoming a leading cause of death all over the world. The cardiac function could be evaluated by global and regional parameters of left ventricle (LV) of the heart. The purpose of this study is to develop and evaluate a fully automated scheme for segmentation of LV in short axis cardiac cine MR images. Our fully automated method consists of three major steps, i.e., LV localization, LV segmentation at end-diastolic phase, and LV segmentation propagation to the other phases. First, the maximum intensity projection image along the time phases of the midventricular slice, located at the center of the image, was calculated to locate the region of interest of LV. Based on the mean intensity of the roughly segmented blood pool in the midventricular slice at each phase, end-diastolic (ED) and end-systolic (ES) phases were determined. Second, the endocardial and epicardial boundaries of LV of each slice at ED phase were synchronously delineated by use of a dual dynamic programming technique. The external costs of the endocardial and epicardial boundaries were defined with the gradient values obtained from the original and enhanced images, respectively. Finally, with the advantages of the continuity of the boundaries of LV across adjacent phases, we propagated the LV segmentation from the ED phase to the other phases by use of dual dynamic programming technique. The preliminary results on 9 clinical cardiac cine MR cases show that the proposed method can obtain accurate segmentation of LV based on subjective evaluation.
机译:心血管疾病正在成为全世界的主要死亡原因。可以通过心脏左心室(LV)的整体和区域参数来评估心脏功能。这项研究的目的是开发和评估用于短轴心脏电影MR图像中的LV分割的全自动方案。我们的全自动方法包括三个主要步骤,即LV定位,舒张末期的LV分割和LV分割传播到其他阶段。首先,计算位于图像中心的沿心室中层切片的时间相的最大强度投影图像,以定位LV的关注区域。根据每个阶段的心室中片大致分割的血池的平均强度,确定舒张末期(ED)和收缩末期(ES)的阶段。其次,通过使用双重动态编程技术来同步描绘在ED期每个切片的LV的心内膜和心外膜的边界。心内膜和心外膜边界的外部成本分别由从原始图像和增强图像获得的梯度值定义。最后,利用跨相邻相的LV边界连续性的优势,我们使用双重动态规划技术将LV分割从ED相传播到其他相。对9例临床心脏MR病例的初步结果表明,该方法可以在主观评估的基础上获得准确的LV分割。

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