首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Full utilization of conjugate symmetry: combining virtual conjugate coil reconstruction with partial Fourier imaging for g‐factor reduction in accelerated MRI
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Full utilization of conjugate symmetry: combining virtual conjugate coil reconstruction with partial Fourier imaging for g‐factor reduction in accelerated MRI

机译:共轭对称性的充分利用:将虚拟共轭线圈重建与部分傅里叶成像相结合,用于加速MRI的G型傅里叶因子

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Purpose In this study we propose a method to combine the parallel virtual conjugate coil (VCC) reconstruction with partial Fourier (PF) acquisition to improve reconstruction conditioning and reduce noise amplification in accelerated MRI where PF is used. Methods Accelerated measurements are reconstructed in k‐space by GRAPPA, with a VCC reconstruction kernel trained and applied in the central, symmetrically sampled part of k‐space, while standard reconstruction is performed on the asymmetrically sampled periphery. The two reconstructed regions are merged to form a full reconstructed dataset, followed by PF reconstruction. The method is tested in vivo using T1‐weighted spin‐echo and T2*‐weighted gradient‐echo echo planar imaging (EPI) sequences, using both in‐plane and simultaneous multislice (SMS) acceleration, at 1.5T and 3T field strengths. Noise amplification is estimated with theoretical calculations and pseudo‐multiple‐replica computations, for different PF factors, using zero‐filling, homodyne, and projection onto convex sets (POCS) PF reconstruction. Results Depending on the PF algorithm and the inherent benefit of VCC reconstruction without PF, approximately 35% to 80%, 15% to 60%, and 5% to 30% of that intrinsic SNR gain can be retained for PF factors 7/8, 6/8, and 5/8, respectively, by including the VCC signals in the reconstruction. Compared with VCC‐reconstructed acquisitions of higher acceleration, without PF, but having the same net acceleration, the combined method can provide a higher SNR if the inherent benefit of VCC is low or moderate. Conclusion The proposed technique enables the partial application of VCC reconstruction to measurements with PF using either in‐plane or SMS acceleration, and therefore can reduce the noise amplification of such acquisitions.
机译:本研究中的目的我们提出了一种将平行虚拟共轭线圈(VCC)重建与部分傅立叶(PF)采集组合的方法,以改善使用PF的加速MRI中的重建调节并降低噪声放大。方法通过GRAPPA重建加速测量,通过GRAPPA重建K空间,VCC重建内核训练并在K-Space的中央,对称采样部分中施加,而在不对称采样的外围执行标准重建。两个重建区域被合并以形成完整的重建数据集,然后是PF重建。该方法使用T1加权旋转回波和T2 * - 重梯度回波平面成像(EPI)序列在体内测试,使用平面内和同时的多层(SMS)加速度,在1.5T和3T场强度。使用零填充,卵差和投影估计不同的PF因子,估计具有理论计算和伪多副本计算的噪声放大,以及在凸集(POCS)PF重建上。结果取决于PF算法的VCC重建的固有益处,没有PF,约35%至80%,15%至60%,5%至30%,可以保留本征SNR增益的PF因子7/8,通过在重建中包括VCC信号,分别在6/8和5/8。与VCC重建的获取更高加速度相比,没有PF,但具有相同的净加速度,如果VCC的固有益处低或中等,则组合方法可以提供更高的SNR。结论所提出的技术能够使用平面内或短信加速来部分地应用VCC重建对PF的测量,因此可以降低这种采集的噪声放大。

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