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提高具有恒定翻转角的涡轮自旋回波序列中训练内前瞻性运动校正的策略。

Strategies to improve intratrain prospective motion correction for turbo spin-echo sequences with constant flip angles.

机构信息

Department of Radiology, Medical Physics, Medical Center University of Freiburg, Faculty of Medicine, University of Freiburg, Freiburg, Germany.

High Field Magnetic Resonance Center, Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria.

出版信息

Magn Reson Med. 2021 Aug;86(2):852-865. doi: 10.1002/mrm.28763. Epub 2021 Mar 16.

Abstract

PURPOSE

To investigate the effects of prospective motion correction on turbo spin echo sequences and optimize motion correction approaches, mitigating signal dropout artifacts caused by the imperfections of motion tracking data.

METHODS

Signal dropout artifacts caused by undesired phase deviations introduced by tracking errors are analyzed theoretically. To reduce the adverse effect of such deviations, two approaches are proposed: (1) freezing the correction for example, for even-numbered or higher number of echoes and (2) shifting the correction event prior to the left crusher gradient preceding the refocusing pulse. A comprehensive analysis is presented, including both signal simulations and experimental verifications in phantoms and in vivo. Performance of the proposed approach is validated in two healthy volunteers imaged under two types of motion conditions simulating inadvertent fast motions associated with discomfort and continuous large motions.

RESULTS

The results show that the proposed optimization is able to efficiently correct for the motion artifacts and at the same time avoid signal dropout artifacts. Specifically, performing correction every 4 echo prior to the left crusher gradient was shown to improve image quality.

CONCLUSION

An optimization approach is proposed to exploit the potential of external tracking for intra-echo-train motion artifact correction for turbo spin echo sequences.

摘要

目的

研究前瞻性运动校正对涡轮自旋回波序列的影响,并优化运动校正方法,减轻由于运动跟踪数据的不完美而导致的信号丢失伪影。

方法

从理论上分析了由跟踪误差引起的未期望相位偏差引起的信号丢失伪影。为了减少这种偏差的不利影响,提出了两种方法:(1)冻结校正,例如偶数或更高数量的回波;(2)在聚焦脉冲之前的左破碎机梯度之前提前校正事件。进行了全面的分析,包括信号模拟以及在体模和体内的实验验证。在模拟与不适相关的意外快速运动和连续大运动的两种运动条件下对两名健康志愿者进行成像,验证了所提出方法的性能。

结果

结果表明,所提出的优化方法能够有效地校正运动伪影,同时避免信号丢失伪影。具体来说,在左破碎机梯度之前每 4 个回波进行校正可提高图像质量。

结论

提出了一种优化方法,以利用外部跟踪技术来校正涡轮自旋回波序列中回波内运动伪影。

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