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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Motion correction in periodically-rotated overlapping parallel lines with enhanced reconstruction (PROPELLER) and turboprop MRI.
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Motion correction in periodically-rotated overlapping parallel lines with enhanced reconstruction (PROPELLER) and turboprop MRI.

机译:通过增强的重建(PROPELLER)和涡轮螺旋桨MRI进行周期性旋转的重叠平行线中的运动校正。

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摘要

Periodically-rotated overlapping parallel lines with enhanced reconstruction (PROPELLER) and Turboprop MRI are characterized by greatly reduced sensitivity to motion, compared to their predecessors, fast spin-echo (FSE) and gradient and spin-echo (GRASE), respectively. This is due to the inherent self-navigation and motion correction of PROPELLER-based techniques. However, it is unknown how various acquisition parameters that determine k-space sampling affect the accuracy of motion correction in PROPELLER and Turboprop MRI. The goal of this work was to evaluate the accuracy of motion correction in both techniques, to identify an optimal rotation correction approach, and determine acquisition strategies for optimal motion correction. It was demonstrated that blades with multiple lines allow more accurate estimation of motion than blades with fewer lines. Also, it was shown that Turboprop MRI is less sensitive to motion than PROPELLER. Furthermore, it was demonstrated that the number of blades does not significantly affect motion correction. Finally, clinically appropriate acquisition strategies that optimize motion correction are discussed for PROPELLER and Turboprop MRI.
机译:具有周期性增强的重建(PROPELLER)和Turboprop MRI的周期性旋转重叠平行线的特征是,与之前的快速自旋回波(FSE)和梯度自旋回波(GRASE)相比,其运动灵敏度大大降低。这是由于基于PROPELLER的技术固有的自导航和运动校正。但是,尚不清楚确定k空间采样的各种采集参数如何影响PROPELLER和Turboprop MRI中运动校正的准确性。这项工作的目的是评估两种技术中运动校正的准确性,确定最佳的旋转校正方法,并确定最佳运动校正的采集策略。事实证明,与多行刀片相比,多行刀片可以更准确地估计运动。另外,还显示出Turboprop MRI对运动的敏感性低于PROPELLER。此外,已证明叶片的数量不会显着影响运动校正。最后,针对PROPELLER和Turboprop MRI讨论了优化运动校正的临床上适当的采集策略。

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