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HYR2PICS: Hybrid regularized reconstruction for combined parallel imaging and compressive sensing in MRI

机译:HYR 2 PICS:混合正则化重建,用于MRI中并行成像和压缩感测的组合

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Both parallel Magnetic Resonance Imaging (pMRI) and Compressed Sensing (CS) are emerging techniques to accelerate conventional MRI by reducing the number of acquired data in the k-space. So far, first attempts to combine sensitivity encoding (SENSE) imaging in pMRI with CS have been proposed in the context of Cartesian trajectories. Here, we extend these approaches to non-Cartesian trajectories by jointly formulating the CS and SENSE recovery in a hybrid Fourier/wavelet framework and optimizing a convex but nons-mooth criterion. On anatomical MRI data, we show that HYR2PICS outperforms wavelet-based regularized SENSE reconstruction. Our results are also in agreement with the Transform Point Spread Function (TPSF) criterion that measures the degree of incoherence of k-space undersampling schemes.
机译:并行磁共振成像(pMRI)和压缩传感(CS)都是新兴的技术,可通过减少k空间中采集的数据数量来加速常规MRI。迄今为止,已经提出了在笛卡尔轨迹的背景下将pMRI中的灵敏度编码(SENSE)成像与CS相结合的首次尝试。在这里,我们通过在傅立叶/小波混合框架中共同制定CS和SENSE恢复并优化凸但非光滑的准则,将这些方法扩展到非笛卡尔轨迹。在解剖MRI数据上,我们显示HYR 2 PICS优于基于小波的常规SENSE重建。我们的结果也与测量k空间欠采样方案的不相干程度的变换点扩展函数(TPSF)标准一致。

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