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Compressed sensing with non-uniform fast fourier transform for radial Ultra-short Echo Time (UTE) MRI

机译:用于径向超短回波时间(UTE)MRI的具有非均匀快速傅立叶变换的压缩传感

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This paper proposes a compressive sensing (CS) method for radial Magnetic Resonance Imaging (MRI) using nonuniform fast fourier transform (NUFFT). With the Ultra-short Echo Time (UTE) technology, radial MRI can reduce scan time, reduce artifacts, and achieve high imaging quality. We show that NUFFT-CS reconstruction from under-sampled radial k-space measurements achieves better image quality than the zero-filling (ZF) approaches and the existing CS approach that uses regridding. Experiments using phantom and animal samples have verified that the NUFFT-CS achieves better performance than the NUFFT-ZF, regrid-ZF, and regrid-CS, especially at small sampling rates.
机译:本文提出了一种使用非均匀快速傅立叶变换(NUFFT)的用于径向磁共振成像(MRI)的压缩感测(CS)方法。借助超短回波时间(UTE)技术,径向MRI可以减少扫描时间,减少伪像并实现高成像质量。我们表明,从欠采样的径向k空间测量结果中得到的NUFFT-CS重构比零填充(ZF)方法和使用重新网格化的现有CS方法具有更好的图像质量。使用幻像和动物样本的实验已证明,NUFFT-CS的性能优于NUFFT-ZF,regrid-ZF和regrid-CS,尤其是在小采样率的情况下。

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