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使用单次回波重绕 EPI 和联合多回波重建进行动态场映射和失真校正。

Dynamic field mapping and distortion correction using single-shot blip-rewound EPI and joint multi-echo reconstruction.

机构信息

Wellcome Centre for Integrative Neuroimaging, FMRIB, Nuffield Department of Clinical Neurosciences, University of Oxford, Oxford, UK.

出版信息

Magn Reson Med. 2024 Jul;92(1):82-97. doi: 10.1002/mrm.30038. Epub 2024 Feb 2.

Abstract

PURPOSE

To develop a method for dynamic mapping and distortion correction.

METHODS

A blip-rewound EPI trajectory was developed to acquire multiple 2D EPI images in a single readout with an interleaved order, which allows a short TE difference. A joint multi-echo reconstruction was utilized to exploit the shared information between EPI images. The reconstructed images from each readout are combined to produce a final magnitude image. A map is calculated from the phase of these images for distortion correction. The efficacy of the proposed method is assessed with phantom and in vivo experiments. The performance of the proposed method in the presence of subject motion is also investigated.

RESULTS

Compared to conventional multi-echo EPI, the proposed method allows dynamic mapping at matched resolution with a much shorter TR. Phantom and in vivo results show that the proposed method can provide a comparable magnitude image as conventional single-shot EPI. The maps calculated from the proposed method are consistent with conventional multi-echo EPI in the phantom experiment. For in vivo experiments, the proposed method provides a more accurate estimation of than conventional multi-echo EPI, which is prone to phase wrapping problems due to the long TE difference. In-vivo scan with subject motion shows the proposed dynamic field mapping method can improve the temporal stability of EPI time series compared to gradient echo (GRE) based static field mapping.

CONCLUSION

The proposed method allows accurate dynamic mapping for robust distortion correction without compromising spatial or temporal resolution.

摘要

目的

开发一种动态映射和失真校正方法。

方法

开发了一种回扫闪烁 EPI 轨迹,以便以交错的顺序在单个读出中获取多个 2D EPI 图像,从而实现较短的 TE 差异。利用联合多回波重建来利用 EPI 图像之间的共享信息。从每个读出重建的图像组合在一起以生成最终的幅度图像。从这些图像的相位计算失真校正图。使用体模和体内实验评估所提出方法的功效。还研究了在存在主体运动的情况下,所提出方法的性能。

结果

与传统的多回波 EPI 相比,所提出的方法允许在匹配分辨率下以更短的 TR 进行动态映射。体模和体内结果表明,所提出的方法可以提供与传统单 shot EPI 相当的幅度图像。所提出的方法在体模实验中计算的失真校正图与传统的多回波 EPI 一致。对于体内实验,所提出的方法比传统的多回波 EPI 更准确地估计,由于较长的 TE 差异,传统的多回波 EPI 容易出现相位缠绕问题。在具有主体运动的体内扫描中,与基于梯度回波(GRE)的静态场映射相比,所提出的动态场映射方法可以提高 EPI 时间序列的时间稳定性。

结论

所提出的方法允许进行准确的动态映射,以进行稳健的失真校正,而不会影响空间或时间分辨率。

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