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首页> 外文期刊>Scientific reports. >Strategies for rapid reconstruction in 3D MRI with radial data acquisition: 3D fast Fourier transform vs two-step 2D filtered back-projection
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Strategies for rapid reconstruction in 3D MRI with radial data acquisition: 3D fast Fourier transform vs two-step 2D filtered back-projection

机译:3D MRI快速重建的策略径向数据采集:3D快速傅里叶变换与两步2D过滤后投影

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For 3D radial data reconstruction in magnetic resonance imaging (MRI), fast Fourier transform via gridding (gFFT) is widely used for its fast processing and flexibility. In comparison, conventional 3D filtered back projection (cFBP), while more robust against common radial k-space centering errors, suffers from long computation times and is less frequently used. In this study, we revisit another back-projection reconstruction strategy, namely two-step 2D filtered back-projection (tsFBP), as an alternative 3D radial MRI reconstruction method that combines computational efficiency and certain error tolerance. In order to compare the three methods (gFFT, cFBP, and tsFBP), theoretical analysis was performed to evaluate the number of computational steps involved in each method. Actual reconstruction times were also measured and compared using 3D radial-MRI data of a phantom and a human brain. Additionally, the sensitivity of tsFBP to artifacts caused by radial k-space centering errors was compared with the other methods. Compared to cFBP, tsFBP dramatically improved the reconstruction speed while retaining the benefit of tolerance to the radial k-space errors. Our study therefore suggests that tsFBP can be a promising alternative to the conventional back projection method for 3D radial MRI reconstruction.
机译:用于磁共振成像(MRI)的3D径向数据重建,快速傅立叶经由网格化(gFFT)被广泛地用于其快速处理和灵活性变换。相比较而言,传统的3D滤波反投影(cFBP),而针对共同的径向k-空间更健壮定心误差,从很长的计算时间和患有较不频繁地使用。在这项研究中,我们重新访问另一个反投影重建策略,即两步2D滤波反投影(tsFBP),作为一种替代3D径向MRI重建方法,结合了计算效率和一定的误差容限。为了将三种方法(gFFT,cFBP和tsFBP)比较,进行理论分析,以评估所涉及的每一种方法的计算步骤的数目。实际重建时间也测量和比较使用幻象的3D径向-MRI数据和人的大脑。此外,tsFBP的引起径向k-空间定心误差伪像的敏感度被与其他方法相比。相比cFBP,tsFBP显着改善的重建速度,同时保持容限的益处径向k-空间的错误。因此,我们的研究表明,tsFBP可以是一个有希望的替代方案用于3D径向MRI重建常规背投影方法。

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