Department of Electrical and Computer Engineering, Texas A&M University, College Station, Texas, USA.
Magn Reson Med. 2017 Dec;78(6):2265-2274. doi: 10.1002/mrm.26636. Epub 2017 Feb 15.
To accelerate iterative reconstructions of compressed sensing (CS) MRI from 3D multichannel data using graphics processing units (GPUs).
The sparsity of MRI signals and parallel array receivers can reduce the data acquisition requirements. However, iterative CS reconstructions from data acquired using an array system may take a significantly long time, especially for a large number of parallel channels. This paper presents an efficient method for CS-MRI reconstruction from 3D multichannel data using GPUs. In this method, CS reconstructions were simultaneously processed in a channel-by-channel fashion on the GPU, in which the computations of multiple-channel 3D-CS reconstructions are highly parallelized. The final image was then produced by a sum-of-squares method on the central processing unit. Implementation details including algorithm, data/memory management, and parallelization schemes are reported in the paper.
Both simulated data and in vivo MRI array data were tested. The results showed that the proposed method can significantly improve the image reconstruction efficiency, typically shortening the runtime by a factor of 30.
Using low-cost GPUs and an efficient algorithm allowed the 3D multislice compressive-sensing reconstruction to be performed in less than 1 s. The rapid reconstructions are expected to help bring high-dimensional, multichannel parallel CS MRI closer to clinical applications. Magn Reson Med 78:2265-2274, 2017. © 2017 International Society for Magnetic Resonance in Medicine.
利用图形处理单元(GPU)加速从 3D 多通道数据进行压缩感知(CS)MRI 的迭代重建。
MRI 信号的稀疏性和并行阵列接收器可降低数据采集要求。然而,使用阵列系统采集的数据进行迭代 CS 重建可能需要很长时间,尤其是对于大量并行通道而言。本文提出了一种在 GPU 上使用的高效的从 3D 多通道数据进行 CS-MRI 重建的方法。在该方法中,CS 重建在 GPU 上以通道为单位同时进行,其中多通道 3D-CS 重建的计算高度并行化。最终图像通过中央处理器上的和的方法产生。本文报告了实现细节,包括算法、数据/内存管理和并行化方案。
同时测试了模拟数据和体内 MRI 阵列数据。结果表明,该方法可以显著提高图像重建效率,通常将运行时间缩短 30 倍。
使用低成本的 GPU 和高效算法,可在不到 1 秒的时间内完成 3D 多切片压缩感知重建。快速重建有望使高维、多通道并行 CS-MRI 更接近临床应用。磁共振医学杂志 78:2265-2274,2017。©2017 国际磁共振学会。