Free-breathing time-resolved 4D MRI with improved T1-weighting contrast.

IF 2.7 4区 医学 Q2 BIOPHYSICS
NMR in Biomedicine Pub Date : 2024-12-01 Epub Date: 2024-08-26 DOI:10.1002/nbm.5247
Jingjia Chen, Ding Xia, Chenchan Huang, Krishna Shanbhogue, Hersh Chandarana, Li Feng
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引用次数: 0

Abstract

This work proposes MP-Grasp4D (magnetization-prepared golden-angle radial sparse parallel 4D) MRI, a free-breathing, inversion recovery (IR)-prepared, time-resolved 4D MRI technique with improved T1-weighted contrast. MP-Grasp4D MRI acquisition incorporates IR preparation into a radial gradient echo sequence. MP-Grasp4D employs a golden-angle navi-stack-of-stars sampling scheme, where imaging data of rotating radial stacks and navigator stacks (acquired at a consistent rotation angle) are alternately acquired. The navigator stacks are used to estimate a temporal basis for low-rank subspace-constrained reconstruction. This allows for the simultaneous capture of both IR-induced contrast changes and respiratory motion. One temporal frame of the imaging volume in MP-Grasp4D MRI is reconstructed from a single stack and an adjacent navigator stack on average, resulting in a nominal temporal resolution of 0.16 seconds per volume. Images corresponding to the optimal inversion time (TI) can be retrospectively selected for providing the best image contrast. Reader studies were conducted to assess the performance of MP-Grasp4D MRI in liver imaging across 30 subjects in comparison with standard Grasp4D MRI without IR preparation. MP-Grasp4D MRI received significantly higher scores (P < 0.05) than Grasp4D in all assessment categories. There was a moderate to almost perfect agreement (kappa coefficient from 0.42 to 0.9) between the two readers for image quality assessment. When the scan time is reduced, MP-Grasp4D MRI preserves image contrast and quality, demonstrating additional acceleration capability. MP-Grasp4D MRI improves T1-weighted contrast for free-breathing time-resolved 4D MRI and eliminates the need for explicit motion compensation. This method is expected to be valuable in different MRI applications such as MR-guided radiotherapy.

改进了 T1 加权对比度的自由呼吸时间分辨 4D MRI。
这项研究提出了 MP-Grasp4D(磁化准备黄金角径向稀疏平行 4D)磁共振成像技术,这是一种自由呼吸、反转恢复(IR)准备、时间分辨 4D 磁共振成像技术,具有更好的 T1 加权对比度。MP-Grasp4D MRI 采集将 IR 准备纳入径向梯度回波序列。MP-Grasp4D 采用黄金角星形导航堆栈采样方案,交替采集旋转径向堆栈和导航堆栈(以一致的旋转角度采集)的成像数据。导航堆栈用于估算低秩子空间约束重建的时间基础。这样就能同时捕捉到红外引起的对比度变化和呼吸运动。在 MP-Grasp4D MRI 中,成像容积的一个时帧平均由单个堆栈和相邻的导航堆栈重建,因此每个容积的标称时间分辨率为 0.16 秒。与最佳反转时间(TI)相对应的图像可以回溯选择,以提供最佳图像对比度。为了评估 MP-Grasp4D MRI 在肝脏成像中的性能,我们对 30 名受试者进行了读者研究,并与不进行 IR 准备的标准 Grasp4D MRI 进行了比较。MP-Grasp4D磁共振成像的得分明显更高(P
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来源期刊
NMR in Biomedicine
NMR in Biomedicine 医学-光谱学
CiteScore
6.00
自引率
10.30%
发文量
209
审稿时长
3-8 weeks
期刊介绍: NMR in Biomedicine is a journal devoted to the publication of original full-length papers, rapid communications and review articles describing the development of magnetic resonance spectroscopy or imaging methods or their use to investigate physiological, biochemical, biophysical or medical problems. Topics for submitted papers should be in one of the following general categories: (a) development of methods and instrumentation for MR of biological systems; (b) studies of normal or diseased organs, tissues or cells; (c) diagnosis or treatment of disease. Reports may cover work on patients or healthy human subjects, in vivo animal experiments, studies of isolated organs or cultured cells, analysis of tissue extracts, NMR theory, experimental techniques, or instrumentation.
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