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Reconstruction of Patient-Specific Left Atrial Geometry from CMR Imaging

机译:从CMR成像重建患者特定的左心房几何

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Clinical quantification of left atrial (LA) volumes is currently performed using either the biplane area-length method or the method of discs (Simpson‘s method) on 2-D cardiac images or 3D echocardiography. However, these methods tend to underestimate LA volumes as compared to cardiovascular magnetic resonance (CMR) imaging. In this paper, we propose a geometry-based reconstruction algorithm for computing the LA volume automatically for the entire cardiac cycle by combining information from both the short- and long-axis from CMR imaging. The inputs to our reconstruction algorithm are as follows: (i) a set of segmented short-axis contours and (ii) a set of segmented long-axis contours from the standard 2-chamber and 4-chamber views. Our approach consists of a series of iterative steps where the most basal short-axis contour is projected in the atrial direction and subsequently morph to the patient-specific LA shape using the long-axis contours as guide. These series of morphing generate a left heart comprising both the LV and LA geometries with a planar basal surface. To reconstruct the LA cap, this planar basal surface is morphed into a hemisphere representing the closed surface of the LA using the long-axis contours as guide, thereby allowing us to reconstruct the closed LA shape and to calculate its volume.
机译:目前,左心房(LA)容积的临床量化是使用双平面面积长度方法或在2D心脏图像或3D超声心动图上使用椎间盘的方法(辛普森方法)进行的。但是,与心血管磁共振(CMR)成像相比,这些方法往往低估了LA的体积。在本文中,我们提出了一种基于几何的重构算法,通过结合来自CMR成像的短轴和长轴的信息来自动计算整个心动周期的LA容积。我们的重建算法的输入如下:(i)一组分割的短轴轮廓,以及(ii)一组从标准2腔和4腔视图中分割的长轴轮廓。我们的方法包括一系列迭代步骤,其中最基本的短轴轮廓沿心房方向投影,然后以长轴轮廓为指导,变形为患者特定的LA形状。这些系列的变形生成左心,该左心包含具有平坦基面的LV和LA几何形状。为了重建LA帽,使用长轴轮廓作为指导,将此平面基表面变形为代表LA封闭表面的半球,从而使我们能够重建封闭LA形状并计算其体积。

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