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Robust Motion Correction in the Frequency Domain of Cardiac MR Stress Perfusion Sequences

机译:心脏MR应力灌注序列频域中的鲁棒运动校正

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First-pass cardiac MR perfusion (CMRP) imaging allows identification of hypo-perfused areas in the myocardium and therefore helps in early detection of coronary artery disease (CAD). However, its efficacy is often limited by respiratory motion artifacts, especially in stress-induced sequences. These distortions lead to unreliable estimates of perfusion linked parameters, such as the myocardial perfusion reserve index (MPRI). We propose a novel, robust motion correction method that suppresses motion artifacts in the frequency domain. The method is validated using rest and stress perfusion datasets of 10 patients and is compared to a state-of-the-art independent component analysis based method. Contrary to the latter, the proposed method reduces the remaining motion to less than the pixel size and allows the reliable computation of the MPRI. The strong agreement between perfusion parameters based on expert contours and after applying the proposed method enables the near-automated quantitative analyses of stress MR perfusion sequences in a clinical setting.
机译:首过心脏MR灌注(CMRP)成像可识别心肌中的低灌注区域,因此有助于早期发现冠状动脉疾病(CAD)。但是,其功效通常受到呼吸运动伪影的限制,尤其是在压力诱导的序列中。这些扭曲导致对灌注相关参数(例如心肌灌注储备指数(MPRI))的估计不可靠。我们提出了一种新颖的,鲁棒的运动校正方法,该方法可以在频域中抑制运动伪像。该方法已使用10位患者的静息和压力灌注数据集进行了验证,并与基于最新独立成分分析的方法进行了比较。与后者相反,所提出的方法将剩余运动减少到小于像素大小,并允许可靠地计算MPRI。基于专家轮廓的灌注参数之间的强烈一致性以及应用所提出的方法后,可以在临床环境中对压力MR灌注序列进行近乎自动化的定量分析。

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