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A technique for visualising three-dimensional left atrial cardiac activation data in two dimensions with minimal distance distortion

机译:一种可视化二维三维左心房心脏激活数据且距离失真最小的技术

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Electro-anatomic mapping and medical imaging systems, used during clinical procedures for treatment of atrial arrhythmias, frequently record and display measurements on an anatomical surface of the left atrium. As such, obtaining a complete picture of activation necessitates simultaneous views from multiple angles. In addition, post-processing of three-dimensional surface data is challenging, since algorithms are typically applicable to planar or volumetric data. We applied a surface flattening methodology to medical imaging data and electro-anatomic mapping data to generate a two-dimensional representation that best preserves distances, since the calculation of many clinically relevant metrics, including conduction velocity and rotor trajectory identification require an accurate representation of distance. Distance distortions were small and improved upon exclusion of the pulmonary veins. The technique is demonstrated using maps of local activation time, based on clinical data, and plotting rotor-core trajectories, using simulated data.
机译:在临床程序中用于治疗房性心律不齐的电解剖标测和医学成像系统经常记录并在左心房的解剖表面上显示测量结果。这样,要获得完整的激活图,就必须同时从多个角度进行观察。另外,由于算法通常适用于平面或体积数据,因此三维表面数据的后处理具有挑战性。我们将表面平坦化方法应用于医学成像数据和电解剖学映射数据,以生成最能保留距离的二维表示,因为许多临床相关指标(包括传导速度和转子轨迹识别)的计算都需要准确表示距离。距离畸变很小,在排除肺静脉后可以改善。使用基于临床数据的局部激活时间图,并使用模拟数据绘制转子铁心轨迹,从而展示了该技术。

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