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Automatic nonrigid motion correction for quantitative first-pass cardiac MR perfusion imaging

机译:用于定量的第一通心MR灌注成像的自动非脂肪运动校正

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First-pass dynamic contrast-enhanced cardiac magnetic resonance imaging is an increasingly important diagnostic tool for coronary artery disease. It is typically performed with breath holding and electrocardiogram gating to minimize motion, but movement caused by residual respiration, cardiac arrhythmia, or missed gating triggers during image acquisition will induce nonrigid deformations of the myocardium that can hamper interpretation and perfusion quantification. We propose an automatic nonrigid image registration framework to correct motion in a series of cardiac magnetic resonance perfusion images. Our method employs reference frame detection combined with robust flow field estimation using a large displacement optical flow formulation coupled with post-hoc image warping and flow field distortion correction. This framework is multi-threadable and can be applied to standard myocardial series, arterial input function series, and proton density weighted images to facilitate perfusion quantification.
机译:第一通动态对比增强心脏磁共振成像是冠状动脉疾病越来越重要的诊断工具。它通常与憋气和心电图选通以最小化运动进行的,但在图像采集期间所造成的残余呼吸,心律失常,或错过门控触发器运动将引起可阻碍解释和灌注量化心肌的非刚性变形。我们提出了一种自动非刚性图像配准架构,正确的运动在一系列心脏磁共振灌注图像。我们的方法采用使用加上事后图像变形大的位移光流制剂参考帧检测与鲁棒流场推定组合和流场失真校正。该框架是多线程化和可应用于标准心肌系列,动脉输入函数系列,和质子密度加权图像,以促进灌注定量。

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