Simula Research Laboratory, Kristian Augusts gate 23, 0164 Oslo, Norway; Department of Informatics, University of Oslo, Gaustadalléen 23B, 0373 Oslo, Norway.
Simula Research Laboratory, Kristian Augusts gate 23, 0164 Oslo, Norway.
Med Image Anal. 2024 Apr;93:103091. doi: 10.1016/j.media.2024.103091. Epub 2024 Jan 19.
Universal coordinate systems have been proposed to facilitate anatomic registration between three-dimensional images, data and models of the ventricles of the heart. However, current universal ventricular coordinate systems do not account for the outflow tracts and valve annuli where the anatomy is complex. Here we propose an extension to the 'Cobiveco' biventricular coordinate system that also accounts for the intervalvular bridges of the base and provides a tool for anatomically consistent registration between widely varying biventricular shapes. CobivecoX uses a novel algorithm to separate intervalvular bridges and assign new coordinates, including an inflow-outflow coordinate, to describe local positions in these regions uniquely and consistently. Anatomic consistency of registration was validated using curated three-dimensional biventricular shape models derived from cardiac MRI measurements in normal hearts and hearts from patients with congenital heart diseases. This new method allows the advantages of universal cardiac coordinates to be used for three-dimensional ventricular imaging data and models that include the left and right ventricular outflow tracts and valve annuli.
已经提出了通用坐标系,以促进心脏心室的三维图像、数据和模型之间的解剖配准。然而,目前的通用心室坐标系并没有考虑到解剖结构复杂的流出道和瓣膜环。在这里,我们提出了对“Cobiveco”双心室坐标系的扩展,该坐标系还考虑了基底的隔瓣桥,并为广泛变化的双心室形状之间的解剖一致配准提供了一种工具。CobivecoX 使用一种新的算法来分离隔瓣桥并分配新的坐标,包括流入-流出坐标,以唯一且一致地描述这些区域的局部位置。使用从正常心脏和先天性心脏病患者的心脏 MRI 测量中得出的经过精心整理的三维双心室形状模型来验证配准的解剖一致性。这种新方法允许将通用心脏坐标的优点用于包括左心室和右心室流出道和瓣膜环的三维心室成像数据和模型。