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超低场(64毫特斯拉)运动校正脑磁共振成像。

Motion-corrected brain MRI at ultralow field (64 mT).

作者信息

Brackenier Yannick, Teixeira Rui Pedro, Cordero-Grande Lucilio, Ljungberg Emil, Bourke Niall J, Arichi Tomoki, Deoni Sean, Williams Steve C R, Hajnal Joseph V

机构信息

Biomedical Engineering Department, School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.

Research Department of Early Life Imaging, School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.

出版信息

Magn Reson Med. 2025 Aug;94(2):825-834. doi: 10.1002/mrm.30506. Epub 2025 Mar 28.

Abstract

PURPOSE

The study investigates the feasibility of applying a retrospective motion-correction technique to ultralow-field (ULF) MRI data to improve reconstructed image quality when there is patient motion, which is likely to be a critical challenge in portable, point-of-care imaging.

THEORY & METHODS: The study tests alignedSENSE, an iterative motion correction and reconstruction method with SENSE, for ULF MRI, with additional corrections to estimate and correct within-scan phase variations. The method was applied to in vivo brain volumetric data acquired from five healthy volunteers using a 64 mT portable MRI scanner. The volunteers underwent different motion types and levels, with corrections evaluated using both visual and quantitative metrics.

RESULTS

Motion correction, particularly when within-scan phase variations are also accounted for, showed clear improvements in image quality. Without making any assumptions about the origin of these phase variations, incorporating them into the signal model and jointly estimating with the image/motion parameters increases the data consistency. This improves the image quality and motion parameters across various levels of induced motion. Quantitative analysis confirmed that the combined motion and phase corrections outperformed conventional parallel imaging reconstruction, although extreme motion cases still pose challenges.

CONCLUSION

The study demonstrates that alignedSENSE motion-correction techniques can be effectively applied to ULF MRI systems. The results suggest that these techniques can substantially enhance image quality without increasing scan time, which could make ULF MRI more clinically viable for point-of-care deployment.

摘要

目的

本研究探讨在存在患者运动的情况下,将回顾性运动校正技术应用于超低场(ULF)MRI数据以提高重建图像质量的可行性,这在便携式床旁成像中可能是一个关键挑战。

理论与方法

本研究测试了alignedSENSE,这是一种用于ULF MRI的迭代运动校正和重建方法,结合了SENSE技术,并进行了额外校正以估计和校正扫描内相位变化。该方法应用于使用64 mT便携式MRI扫描仪从五名健康志愿者获取的体内脑容积数据。志愿者经历了不同类型和程度的运动,并使用视觉和定量指标评估校正效果。

结果

运动校正,特别是在考虑扫描内相位变化时,图像质量有明显改善。在不对这些相位变化的来源做任何假设的情况下,将它们纳入信号模型并与图像/运动参数联合估计可提高数据一致性。这改善了不同程度诱导运动下的图像质量和运动参数。定量分析证实,尽管极端运动情况仍构成挑战,但运动和相位联合校正优于传统并行成像重建。

结论

本研究表明alignedSENSE运动校正技术可有效应用于ULF MRI系统。结果表明,这些技术可在不增加扫描时间的情况下大幅提高图像质量,这可能使ULF MRI在床旁部署中更具临床可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9786/12137760/47712975cb77/MRM-94-825-g003.jpg

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