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Free-breathing 3D cardiac MRI using iterative image-based respiratory motion correction

机译:使用基于图像的迭代呼吸运动校正的自由呼吸3D心脏MRI

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摘要

Respiratory motion compensation using diaphragmatic navigator gating with a 5 mm gating window is conventionally used for free-breathing cardiac MRI. Because of the narrow gating window, scan efficiency is low resulting in long scan times, especially for patients with irregular breathing patterns. In this work, a new retrospective motion compensation algorithm is presented to reduce the scan time for free-breathing cardiac MRI that increasing the gating window to 15 mm without compromising image quality. The proposed algorithm iteratively corrects for respiratory-induced cardiac motion by optimizing the sharpness of the heart. To evaluate this technique, two coronary MRI datasets with 1.3 mm(3) resolution were acquired from 11 healthy subjects (seven females, 25 ± 9 years); one using a navigator with a 5 mm gating window acquired in 12.0 ± 2.0 min and one with a 15 mm gating window acquired in 7.1 ± 1.0 min. The images acquired with a 15 mm gating window were corrected using the proposed algorithm and compared to the uncorrected images acquired with the 5 and 15 mm gating windows. The image quality score, sharpness, and length of the three major coronary arteries were equivalent between the corrected images and the images acquired with a 5 mm gating window (P-value > 0.05), while the scan time was reduced by a factor of 1.7.
机译:自由呼吸式心脏MRI通常使用具有5 mm选通窗的diaphragm肌导航选通进行呼吸运动补偿。由于门窗狭窄,扫描效率低,导致扫描时间长,特别是对于呼吸模式不规则的患者。在这项工作中,提出了一种新的追溯运动补偿算法,以减少自由呼吸的心脏MRI的扫描时间,从而将门控窗口增加到15 mm,而不会影响图像质量。所提出的算法通过优化心脏的清晰度来迭代校正呼吸诱发的心脏运动。为了评估该技术,从11位健康受试者(7位女性,25±9岁)中获得了分辨率为1.3 mm(3)的两个冠状动脉MRI数据集;一种使用导航仪,在12.0±2.0分钟内获得5毫米门控窗口,另一种使用7.1±1.0分钟内获得15毫米门控窗口。使用建议的算法对使用15毫米选通窗口采集的图像进行校正,并将其与使用5和15毫米选通窗口采集的未校正图像进行比较。校正后的图像和使用5 mm门控窗获得的图像之间的图像质量得分,清晰度和三个主要冠状动脉的长度相等(P值> 0.05),而扫描时间减少了1.7倍。

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