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An efficient, bolus-stage based method for motion correction in perfusion weighted MRI

机译:一种有效的基于推注阶段的灌注加权MRI运动校正方法

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This paper addresses the data corruption that occurs due to patient motion during a scan which is particularly a problem in perfusion weighted MRI due to long scan times. Motion correction is typically the rate-limiting step in processing as each volume has to be registered to a reference volume. This is compounded by the dynamically varying contrast in the volume series due to passage of an injected contrast agent. We propose an efficient two stage motion correction method, consisting of motion detection and a 2-pass registration method for aligning the motion-corrupted volumes. A 2D block-wise phase correlation in central slices is used for the first stage. Alignment employs a strategy which is sensitive to the status of the bolus in the volume and is based on gamma-variate function fitting for intensity correction to handle dynamic contrast in DSC-MRI. Evaluation of the approach shows that it is fast and accurate.
机译:本文解决了由于扫描过程中患者运动而导致的数据损坏,由于扫描时间长,这在灌注加权MRI中尤为严重。运动校正通常是处理中的速率限制步骤,因为必须将每个体积都记录到参考体积中。由于注射的造影剂的通过,体积系列中动态变化的对比度使情况更加复杂。我们提出了一种有效的两阶段运动校正方法,该方法包括运动检测和用于对齐运动受损体积的2遍配准方法。第一阶段使用中央切片中的二维逐块相位相关性。对准采用对体积中的推注状态敏感的策略,并基于伽玛变量函数拟合进行强度校正,以处理DSC-MRI中的动态对比度。对方法的评估表明它是快速而准确的。

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