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相位约束并行MRI方法的比较:相似之处与差异

Comparison of phase-constrained parallel MRI approaches: Analogies and differences.

作者信息

Blaimer Martin, Heim Marius, Neumann Daniel, Jakob Peter M, Kannengiesser Stephan, Breuer Felix A

机构信息

Research Center Magnetic-Resonance-Bavaria (MRB), Würzburg, Germany.

Department of Experimental Physics 5, University of Würzburg, Würzburg, Germany.

出版信息

Magn Reson Med. 2016 Mar;75(3):1086-99. doi: 10.1002/mrm.25685. Epub 2015 Apr 4.

Abstract

PURPOSE

Phase-constrained parallel MRI approaches have the potential for significantly improving the image quality of accelerated MRI scans. The purpose of this study was to investigate the properties of two different phase-constrained parallel MRI formulations, namely the standard phase-constrained approach and the virtual conjugate coil (VCC) concept utilizing conjugate k-space symmetry.

METHODS

Both formulations were combined with image-domain algorithms (SENSE) and a mathematical analysis was performed. Furthermore, the VCC concept was combined with k-space algorithms (GRAPPA and ESPIRiT) for image reconstruction. In vivo experiments were conducted to illustrate analogies and differences between the individual methods. Furthermore, a simple method of improving the signal-to-noise ratio by modifying the sampling scheme was implemented.

RESULTS

For SENSE, the VCC concept was mathematically equivalent to the standard phase-constrained formulation and therefore yielded identical results. In conjunction with k-space algorithms, the VCC concept provided more robust results when only a limited amount of calibration data were available. Additionally, VCC-GRAPPA reconstructed images provided spatial phase information with full resolution.

CONCLUSIONS

Although both phase-constrained parallel MRI formulations are very similar conceptually, there exist important differences between image-domain and k-space domain reconstructions regarding the calibration robustness and the availability of high-resolution phase information.

摘要

目的

相位约束并行MRI方法有显著提高加速MRI扫描图像质量的潜力。本研究的目的是探究两种不同的相位约束并行MRI公式的特性,即标准相位约束方法和利用共轭k空间对称性的虚拟共轭线圈(VCC)概念。

方法

将两种公式与图像域算法(SENSE)相结合并进行数学分析。此外,VCC概念与k空间算法(GRAPPA和ESPIRiT)相结合用于图像重建。进行了体内实验以阐明各方法之间的异同。此外,实施了一种通过修改采样方案来提高信噪比的简单方法。

结果

对于SENSE,VCC概念在数学上等同于标准相位约束公式,因此产生相同的结果。与k空间算法结合使用时,当只有有限数量的校准数据可用时,VCC概念能提供更稳健的结果。此外,VCC - GRAPPA重建图像提供了具有全分辨率的空间相位信息。

结论

尽管两种相位约束并行MRI公式在概念上非常相似,但在图像域和k空间域重建之间,在校准稳健性和高分辨率相位信息的可用性方面存在重要差异。

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