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Cine and Multicontrast Late Enhanced MRI Registration for 3D Heart Model Construction

机译:电影和多对比度晚期增强MRI配准用于3D心脏模型构建

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Cardiac MR imaging using multicontrast late enhancement (MCLE) acquisition provides a way to identify myocardium infarct scar and arrhythmia foci in the peri-infarct. In image-guided RF ablations of ventricular arrhythmia and computational modeling of cardiac function, construction of a 3D heart model is required but this is hampered by the challenges in myocardium segmentation and slice misalignment in MCLE images. Here we developed an approach for cine and MCLE registration, and MCLE scar-cine myocardium label fusion to build high-fidelity 3D heart models. MCLE-cine image alignment was initialized using a block-matching-based rigid registration approach followed by a deformable registration refinement step. The deformable registration approach employed a self similarity context descriptor for image similarity measurements, optical flow as a transformation model and convex optimization to derive the optimal solution. We applied the developed approach to a preclinical dataset of 10 pigs with myocardium infarction and evaluated the registration accuracy by comparing cine and MCLE myocardium masks using Dice-similarity-coefficient (DSC) and average symmetric surface distance (ASSD). For 10 pigs, we achieved a mean DSC of 80.4 ± 7.8% and ASSD of 1.28 ± 0.47 mm for myocardium with a mean runtime of 1.5 min for each dataset. These results suggest that the developed approach provide the registration accuracy and computational efficiency that may be suitable for clinical applications of cardiac MRI that involve a cine and MCLE MRI registration component.
机译:使用多对比度晚期增强(MCLE)采集的心脏MR成像提供了一种识别梗塞周围心肌梗塞疤痕和心律失常灶的方法。在心室心律失常的图像引导RF消融和心功能的计算模型中,需要构建3D心脏模型,但这受到MCLE图像中心肌分割和切片未对准的挑战的困扰。在这里,我们开发了一种用于电影和MCLE注册的方法,以及MCLE疤痕电影心肌标签融合方法,以构建高保真3D心脏模型。使用基于块匹配的刚性配准方法初始化MCLE电影图像对齐,然后进行可变形配准细化步骤。可变形配准方法采用自相似上下文描述符进行图像相似性测量,使用光流作为转换模型并采用凸优化来得出最优解。我们将开发的方法应用于10例患有心肌梗塞的猪的临床前数据集,并通过使用Dice相似系数(DSC)和平均对称表面距离(ASSD)比较电影和MCLE心肌面罩来评估注册准确性。对于10头猪,我们的心肌平均DSC为80.4±7.8%,而ASSD为1.28±0.47 mm,每个数据集的平均运行时间为1.5分钟。这些结果表明,开发的方法提供的配准精度和计算效率可能适用于涉及电影和MCLE MRI配准组件的心脏MRI的临床应用。

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