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使用子空间约束重建的加速3D-GRASE采集的髓鞘水成像。

Myelin water imaging from accelerated 3D-GRASE acquisitions using subspace constrained reconstruction.

作者信息

Byanju Riwaj, Klein Stefan, Cristobal-Huerta Alexandra, Hernandez-Tamames Juan A, Poot Dirk H J

机构信息

Department of Radiology and Nuclear Medicine, Erasmus MC, Rotterdam, The Netherlands.

出版信息

MAGMA. 2025 Jul 18. doi: 10.1007/s10334-025-01276-w.

Abstract

PURPOSE

Quantitative MRI markers, such as myelin water fraction (MWF) and geometric mean (IET2) (the intra-/extra-cellular water compartment), can be biomarkers for various brain disorders. However, these markers require acquiring multi-echo spin-echo images which requires long scan times. Undersampled 3D-GRAdient Echo and Spin Echo (3D-GRASE) scans with parallel imaging have been used for faster scans. Still, further acceleration is desirable. Reconstruction techniques that utilize redundancy along the echoes could be employed to achieve artifact-free maps at higher acceleration. This work examines the possibility of using one such technique, subspace constrained reconstruction (SCR), for further accelerating the 3D-GRASE scan.

METHODS

We propose two techniques to undersample the 3D-GRASE acquisition and exploit the redundancy across echoes. We retrospectively undersample fully sampled data from phantom and in-vivo acquisition to test these techniques. We compared our results for mapping MWF and IET2 to a reference multi-spin-echo technique. Additionally, we compare the proposed, state-of-the-art, and reference techniques with prospectively undersampled in-vivo acquisitions.

RESULTS

The RMSD of the MWF in retrospectively undersampled data was worse for the proposed techniques than the state-of-the-art. However, for IET2, RMSD was similar or slightly improved. In prospectively undersampled scans, undersampling artifacts deteriorated MWF maps, but not IET2 maps, which were within 10 ms of the reference map.

CONCLUSION

Our findings suggest that exploiting redundancy across echoes does not result in additional acceleration beyond the current state-of-the-art for MWF mapping, while it is possible to accelerate beyond state-of-the-art for IET2 mapping.

摘要

目的

定量磁共振成像(MRI)标记物,如髓磷脂水分数(MWF)和几何平均数(IET2)(细胞内/外水腔室),可作为各种脑部疾病的生物标志物。然而,这些标记物需要采集多回波自旋回波图像,这需要较长的扫描时间。具有并行成像的欠采样三维梯度回波和自旋回波(3D-GRASE)扫描已用于更快的扫描。尽管如此,仍需要进一步加速。利用回波间冗余的重建技术可用于在更高加速率下获得无伪影的图谱。这项工作研究了使用一种这样的技术——子空间约束重建(SCR)来进一步加速3D-GRASE扫描的可能性。

方法

我们提出了两种技术来对3D-GRASE采集进行欠采样,并利用回波间的冗余。我们对来自体模和体内采集的全采样数据进行回顾性欠采样,以测试这些技术。我们将映射MWF和IET2的结果与参考多自旋回波技术进行比较。此外,我们将所提出的技术、最先进的技术和参考技术与前瞻性欠采样的体内采集进行比较。

结果

在所提出的技术中,回顾性欠采样数据中MWF的均方根偏差(RMSD)比最先进的技术更差。然而,对于IET2,RMSD相似或略有改善。在前瞻性欠采样扫描中,欠采样伪影使MWF图谱恶化,但未使IET2图谱恶化,IET2图谱与参考图谱相差在10毫秒以内。

结论

我们的研究结果表明,利用回波间的冗余在MWF映射方面不会带来超出当前最先进技术的额外加速,而在IET2映射方面有可能加速超过最先进技术。

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