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采用混合传感方法的并行磁共振成像加速技术

Parallel magnetic resonance imaging acceleration with a hybrid sensing approach.

作者信息

Tran Anh Quang, Nguyen Tien-Anh, Doan Phuc Thinh, Tran Duc-Nghia, Tran Duc-Tan

机构信息

Department of Biomedical Engineering, Le Quy Don Technical University, Hanoi City, Vietnam.

Department of Physics, Le Quy Don Technical University, Hanoi City, Vietnam.

出版信息

Math Biosci Eng. 2021 Mar 8;18(3):2288-2302. doi: 10.3934/mbe.2021116.

Abstract

In magnetic resonance imaging (MRI), the scan time for acquiring an image is relatively long, resulting in patient uncomfortable and error artifacts. Fortunately, the compressed sensing (CS) and parallel magnetic resonance imaging (pMRI) can reduce the scan time of the MRI without significantly compromising the quality of the images. It has been found that the combination of pMRI and CS can better improve the image reconstruction, which will accelerate the speed of MRI acquisition because the number of measurements is much smaller than that by pMRI. In this paper, we propose combining a combined CS method and pMRI for better accelerating the MRI acquisition. In the combined CS method, the under-sampled data of the K-space is performed by taking both regular sampling and traditional random under-sampling approaches. MRI image reconstruction is then performed by using nonlinear conjugate gradient optimization. The performance of the proposed method is simulated and evaluated using the reconstruction error measure, the universal image quality Q-index, and the peak signal-to-noise ratio (PSNR). The numerical simulations confirmed that, the average error, the Q index, and the PSNR ratio of the appointed scheme are remarkably improved up to 59, 63, and 39% respectively as compared to the traditional scheme. For the first time, instead of using highly computational approaches, a simple and efficient combination of CS and pMRI is proposed for the better MRI reconstruction. These findings are very meaningful for reducing the imaging time of MRI systems.

摘要

在磁共振成像(MRI)中,获取一幅图像的扫描时间相对较长,这会导致患者不适以及产生伪影。幸运的是,压缩感知(CS)和平行磁共振成像(pMRI)能够在不显著降低图像质量的情况下减少MRI的扫描时间。研究发现,pMRI与CS相结合能够更好地改善图像重建,这将加快MRI采集速度,因为测量次数比单独使用pMRI时少得多。在本文中,我们提出将一种组合CS方法与pMRI相结合,以更好地加快MRI采集速度。在组合CS方法中,通过采用常规采样和传统随机欠采样方法对K空间的欠采样数据进行处理。然后使用非线性共轭梯度优化进行MRI图像重建。使用重建误差度量、通用图像质量Q指数和峰值信噪比(PSNR)对所提方法的性能进行了模拟和评估。数值模拟证实,与传统方案相比,指定方案的平均误差、Q指数和PSNR分别显著提高了59%、63%和39%。首次提出了一种简单高效的CS与pMRI的组合,而非使用高计算量的方法,用于更好地进行MRI重建。这些发现对于减少MRI系统的成像时间非常有意义。

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