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Fast Quasi-Conformal Regional Flattening of the Left Atrium

机译:左心房的快速准共形区域平坦化

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Two-dimensional representation of 3D anatomical structures is a simple and intuitive way for analysing patient information across populations and image modalities. While cardiac ventricles, especially the left ventricle, have an established standard representation (bull's eye plot), the 2D depiction of the left atrium (LA) remains challenging due to its sub-structural complexity including the pulmonary veins (PV) and the left atrial appendage (LAA). Quasi-conformal flattening techniques, successfully applied to cardiac ventricles, require additional constraints in the case of the LA to place the PV and LAA in the same geometrical 2D location for different cases. Some registration-based methods have been proposed but surface registration is time-consuming and prone to errors when the geometries are very different. We propose a novel atrial flattening methodology where a 2D standardised map of the LA is obtained quickly and without errors related to registration. The LA is divided into five regions which are then mapped to their analogue two-dimensional regions. 67 human left atria from magnetic resonance images (MRI) were studied to derive a population-based template representing the averaged relative locations of the PVs and LAA. The clinical application of our methodology is illustrated on different use cases including the integration of MRI and electroanatomical data.
机译:3D解剖结构的二维表示是一种简单而直观的方式,用于分析跨越人群和图像方式的患者信息。虽然心脏脑室,特别是左心室具有既定的标准表示(公牛的眼图),但由于其副间结构复杂性,左心房(LA)的2D描绘仍然是挑战,因为其副结构复杂性包括肺静脉(PV)和左心房附件(LAA)。成功应用于心室的准共形扁平化技术,在LA的情况下需要额外的约束,以将PV和LAA放置在相同的几何2D位置以进行不同情况。已经提出了一些基于注册的方法,但在几何形状非常不同时,表面注册是耗时和易于错误。我们提出了一种新颖的心房扁平化方法,其中La的2D标准化图是快速获得的,没有与配准相关的错误。将La分成五个区域,然后将其映射到其模拟二维区域。研究了来自磁共振图像(MRI)的人左教室(MRI),以导出基于群体的模板,代表PVS和LAA的平均相对位置。我们的方法的临床应用在不同用例中示出了包括整合MRI和电灭节数据的情况。

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