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黄金角的有理逼近:径向 MRI 的加速重建。

Rational approximation of golden angles: Accelerated reconstructions for radial MRI.

机构信息

Institute of Biomedical Imaging, Graz University of Technology, Graz, Austria.

Center for Biomedical Imaging, Department of Radiology, NYU School of Medicine, New York, New York, USA.

出版信息

Magn Reson Med. 2025 Jan;93(1):51-66. doi: 10.1002/mrm.30247. Epub 2024 Sep 9.

DOI:10.1002/mrm.30247
PMID:39250418
Abstract

PURPOSE

To develop a generic radial sampling scheme that combines the advantages of golden ratio sampling with simplicity of equidistant angular patterns. The irrational angle between consecutive spokes in golden ratio-based sampling schemes enables a flexible retrospective choice of temporal resolution, while preserving good coverage of k-space for each individual bin. Nevertheless, irrational increments prohibit precomputation of the point-spread function (PSF), can lead to numerical problems, and require more complex processing steps. To avoid these problems, a new sampling scheme based on a rational approximation of golden angles (RAGA) is developed.

METHODS

The theoretical properties of RAGA sampling are mathematically derived. Sidelobe-to-peak ratios (SPR) are numerically computed and compared to the corresponding golden ratio sampling schemes. The sampling scheme is implemented in the BART toolbox and in a radial gradient-echo sequence. Feasibility is shown for quantitative imaging in a phantom and a cardiac scan of a healthy volunteer.

RESULTS

RAGA sampling can accurately approximate golden ratio sampling and has almost identical PSF and SPR. In contrast to golden ratio sampling, each frame can be reconstructed with the same equidistant trajectory using different sampling masks, and the angle of each acquired spoke can be encoded as a small index, which simplifies processing of the acquired data.

CONCLUSION

RAGA sampling provides the advantages of golden ratio sampling while simplifying data processing, rendering it a valuable tool for dynamic and quantitative MRI.

摘要

目的

开发一种通用的径向采样方案,结合黄金分割采样的优点和等距角模式的简单性。黄金分割采样方案中连续辐条之间的无理角度使时间分辨率具有灵活的回顾性选择能力,同时保持了每个单独体素中 k 空间的良好覆盖。然而,无理增量禁止点扩散函数(PSF)的预计算,可能导致数值问题,并需要更复杂的处理步骤。为了避免这些问题,开发了一种基于黄金角有理逼近(RAGA)的新采样方案。

方法

从数学上推导出 RAGA 采样的理论性质。数值计算旁瓣峰值比(SPR)并与相应的黄金分割采样方案进行比较。该采样方案在 BART 工具箱和径向梯度回波序列中实现。在体模和健康志愿者的心脏扫描中进行了定量成像的可行性研究。

结果

RAGA 采样可以准确地逼近黄金分割采样,并且具有几乎相同的 PSF 和 SPR。与黄金分割采样相比,每个帧都可以使用不同的采样掩模以相同的等距轨迹重建,并且可以将每个采集辐条的角度编码为一个小索引,从而简化了采集数据的处理。

结论

RAGA 采样提供了黄金分割采样的优点,同时简化了数据处理,使其成为动态和定量 MRI 的有价值工具。

相似文献

1
Rational approximation of golden angles: Accelerated reconstructions for radial MRI.黄金角的有理逼近:径向 MRI 的加速重建。
Magn Reson Med. 2025 Jan;93(1):51-66. doi: 10.1002/mrm.30247. Epub 2024 Sep 9.
2
Rational Approximation of Golden Angles: Accelerated Reconstructions for Radial MRI.黄金角的有理逼近:用于径向磁共振成像的加速重建
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Technical Note: Swing golden angle - A navigator-interleaved golden angle trajectory with eddy current suppression - Application in free-running cardiac MRI.技术说明:摆动黄金角——一种带涡流抑制的导航器交错黄金角轨迹——在自由运行心脏 MRI 中的应用。
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Anisotropic field-of-view support for golden angle radial imaging.用于黄金角径向成像的各向异性视野支持
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本文引用的文献

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Quantitative MRI by nonlinear inversion of the Bloch equations.基于布洛赫方程的非线性反演的定量 MRI。
Magn Reson Med. 2023 Aug;90(2):520-538. doi: 10.1002/mrm.29664. Epub 2023 Apr 24.
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Golden-Angle Radial MRI: Basics, Advances, and Applications.黄金角度放射状 MRI:基础、进展与应用。
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A standard system phantom for magnetic resonance imaging.一种用于磁共振成像的标准系统体模。
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Cardiac and Respiratory Self-Gating in Radial MRI Using an Adapted Singular Spectrum Analysis (SSA-FARY).径向 MRI 中使用自适应奇异谱分析(SSA-FARY)的心和呼吸自门控。
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Simple auto-calibrated gradient delay estimation from few spokes using Radial Intersections (RING).基于 Radial Intersections (RING) 技术从少量 spokes中实现简单的自动校准梯度延迟估计。
Magn Reson Med. 2019 Mar;81(3):1898-1906. doi: 10.1002/mrm.27506. Epub 2018 Nov 4.
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Magnetic resonance multitasking for motion-resolved quantitative cardiovascular imaging.用于运动分辨定量心血管成像的磁共振多任务技术
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Optimization and validation of accelerated golden-angle radial sparse MRI reconstruction with self-calibrating GRAPPA operator gridding.加速的黄金角度径向稀疏 MRI 重建的优化与验证,采用自校准 GRAPPA 算子网格化。
Magn Reson Med. 2018 Jul;80(1):286-293. doi: 10.1002/mrm.27030. Epub 2017 Nov 28.
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Rapid compressed sensing reconstruction of 3D non-Cartesian MRI.三维非笛卡尔 MRI 的快速压缩感知重建。
Magn Reson Med. 2018 May;79(5):2685-2692. doi: 10.1002/mrm.26928. Epub 2017 Sep 23.
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Model-based T mapping with sparsity constraints using single-shot inversion-recovery radial FLASH.基于模型的 T 映射,使用单次反转恢复径向 FLASH 进行稀疏约束。
Magn Reson Med. 2018 Feb;79(2):730-740. doi: 10.1002/mrm.26726. Epub 2017 Jun 11.
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Golden ratio sparse MRI using tiny golden angles.使用微小黄金角的黄金比例稀疏MRI。
Magn Reson Med. 2016 Jun;75(6):2372-8. doi: 10.1002/mrm.25831. Epub 2015 Jul 7.