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稀疏性正则化的 CAPR 重建:具有并行成像和非凸压缩感知的高加速 4D CE-MRA。

Sparse-CAPR: highly accelerated 4D CE-MRA with parallel imaging and nonconvex compressive sensing.

机构信息

Department of Physiology and Biomedical Engineering, Mayo Clinic, Rochester, Minnesota 55905, USA.

出版信息

Magn Reson Med. 2011 Oct;66(4):1019-32. doi: 10.1002/mrm.22892. Epub 2011 May 23.

Abstract

Cartesian Acquisition with Projection-Reconstruction-like sampling is a SENSE-type parallel 3DFT acquisition paradigm for 4D contrast-enhanced magnetic resonance angiography that has been demonstrated capable of providing high spatial and temporal resolution, diagnostic-quality images at very high acceleration rates. However, Cartesian Acquisition with Projection-Reconstruction-like sampling images are typically reconstructed online using Tikhonov regularization and partial Fourier methods, which are prone to exhibit noise amplification and undersampling artifacts when operating at very high acceleration rates. In this work, a sparsity-driven offline reconstruction framework for Cartesian Acquisition with Projection-Reconstruction-like sampling is developed and demonstrated to consistently provide improvements over the currently-employed reconstruction strategy against these ill-effects. Moreover, the proposed reconstruction strategy requires no changes to the existing Cartesian Acquisition with Projection-Reconstruction-like sampling acquisition protocol, and an efficient numerical optimization and hardware system are described that allow for a 256 × 160 × 80 volume contrast-enhanced magnetic resonance angiography volume to be reconstructed from an eight-channel data set in less than 2 min.

摘要

基于投影-重建样条的笛卡尔采集是一种 SENSE 型并行 3DFT 采集方法,用于 4D 对比增强磁共振血管造影,已被证明能够在非常高的加速率下提供高空间和时间分辨率、诊断质量的图像。然而,基于投影-重建样条的笛卡尔采集图像通常在线使用 Tikhonov 正则化和部分傅里叶方法重建,当在非常高的加速率下运行时,这些方法容易出现噪声放大和欠采样伪影。在这项工作中,开发并展示了一种基于稀疏驱动的基于投影-重建样条的笛卡尔采集离线重建框架,该框架能够一致地提供优于当前采用的重建策略的改进,以应对这些不良影响。此外,所提出的重建策略不需要对现有的基于投影-重建样条的笛卡尔采集采集协议进行更改,并且描述了一种高效的数值优化和硬件系统,允许在不到 2 分钟的时间内从 8 通道数据集重建 256×160×80 体积的对比增强磁共振血管造影体积。

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