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用于脑部快速多参数磁共振指纹成像和定量磁化率映射的相敏深度重建方法。

Phase-sensitive deep reconstruction method for rapid multiparametric MR fingerprinting and quantitative susceptibility mapping in the brain.

机构信息

Department of Medical Physics, Memorial Sloan Kettering Cancer Center, New York 10065, NY, USA.

Department of Medical Physics, Memorial Sloan Kettering Cancer Center, New York 10065, NY, USA.

出版信息

Magn Reson Imaging. 2024 Jun;109:147-157. doi: 10.1016/j.mri.2024.03.023. Epub 2024 Mar 19.

Abstract

INTRODUCTION

This study explores the potential of Magnetic Resonance Fingerprinting (MRF) with a novel Phase-Sensitivity Deep Reconstruction Network (PS-DRONE) for simultaneous quantification of T1, T2, Proton Density, B1+, phase and quantitative susceptibility mapping (QSM).

METHODS

Data were acquired at 3 T in vitro and in vivo using an optimized EPI-based MRF sequence. Phantom experiments were conducted using a standardized phantom for T1 and T2 maps and a custom-made agar-based gadolinium phantom for B1 and QSM maps. In vivo experiments included five healthy volunteers and one patient diagnosed with brain metastasis. PSDRONE maps were compared to reference maps obtained through standard imaging sequences.

RESULTS

Total scan time was 2 min for 32 slices and a resolution of [1 mm, 1 mm, 4.5 mm]. The reconstruction of T1, T2, Proton Density, B1+ and phase maps were reconstructed within 1 s. In the phantoms, PS-DRONE analysis presented accurate and strongly correlated T1 and T2 maps (r = 0.99) compared to the reference maps. B1 maps from PS-DRONE showed slightly higher values, though still correlated (r = 0.6) with the reference. QSM values showed a small bias but were strongly correlated (r = 0.99) with reference data. In the in vivo analysis, PS-DRONE-derived T1 and T2 values for gray and white matter matched reference values in healthy volunteers. PS-DRONE B1 and QSM maps showed strong correlations with reference values.

CONCLUSION

The PS-DRONE network enables concurrent acquisition of T1, T2, PD, B1+, phase and QSM maps, within 2 min of acquisition time and 1 s of reconstruction time.

摘要

简介

本研究探索了一种新型相位敏感深度重建网络(PS-DRONE)在磁共振指纹成像(MRF)中同时定量 T1、T2、质子密度、B1+、相位和定量磁化率映射(QSM)的潜力。

方法

在 3T 体外和体内使用优化的基于 EPI 的 MRF 序列采集数据。使用标准化的 T1 和 T2 图谱 Phantom 实验以及定制的基于琼脂的钆 Phantom 进行 B1 和 QSM 图谱 Phantom 实验。体内实验包括五名健康志愿者和一名被诊断为脑转移的患者。PSDRONE 图谱与通过标准成像序列获得的参考图谱进行比较。

结果

32 层的总扫描时间为 2 分钟,分辨率为 [1mm、1mm、4.5mm]。T1、T2、质子密度、B1+和相位图的重建在 1 秒内完成。在 Phantom 中,与参考图谱相比,PS-DRONE 分析呈现出准确且高度相关的 T1 和 T2 图谱(r=0.99)。PS-DRONE 生成的 B1 图谱值略高,但仍与参考图谱相关(r=0.6)。QSM 值存在较小的偏差,但与参考数据具有很强的相关性(r=0.99)。在体内分析中,PS-DRONE 衍生的灰质和白质的 T1 和 T2 值与健康志愿者的参考值相匹配。PS-DRONE 的 B1 和 QSM 图谱与参考值具有很强的相关性。

结论

PS-DRONE 网络能够在 2 分钟的采集时间和 1 秒的重建时间内同时采集 T1、T2、PD、B1+、相位和 QSM 图谱。

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