Chen Nan-kuei, Wyrwicz Alice M
Department of Biomedical Engineering, Northwestern University, Evanston, Illinois, USA.
Magn Reson Med. 2004 Jun;51(6):1247-53. doi: 10.1002/mrm.20097.
Odd-even echo inconsistencies result in Nyquist ghost artifacts in the reconstructed EPI images. The ghost artifacts reduce the image signal-to-noise ratio and make it difficult to correctly interpret the EPI data. In this article a new 2D phase mapping protocol and a postprocessing algorithm are presented for an effective Nyquist ghost artifacts removal. After an appropriate k-space data regrouping, a 2D map accurately encoding low- and high-order phase errors is derived from two phase-encoded reference scans, which were originally proposed by Hu and Le (Magn Reson Med 36:166-171;1996) for their 1D nonlinear correction method. The measured phase map can be used in the postprocessing algorithm developed to remove ghost artifacts in subsequent EPI experiments. Experimental results from phantom, animal, and human studies suggest that the new technique is more effective than previously reported methods and has a better tolerance to signal intensity differences between reference and actual EPI scans. The proposed method may potentially be applied to repeated EPI measurements without subject movements, such as functional MRI and diffusion coefficient mapping.
奇偶回波不一致会在重建的EPI图像中产生奈奎斯特鬼影伪影。这些鬼影伪影会降低图像的信噪比,并使得难以正确解读EPI数据。在本文中,提出了一种新的二维相位映射协议和一种后处理算法,用于有效去除奈奎斯特鬼影伪影。经过适当的k空间数据重新分组后,从两个相位编码参考扫描中得出一个准确编码低阶和高阶相位误差的二维映射,这两个参考扫描最初是由Hu和Le(《磁共振医学》36:166 - 171;1996年)为其一维非线性校正方法提出的。所测量的相位映射可用于所开发的后处理算法中,以去除后续EPI实验中的鬼影伪影。来自体模、动物和人体研究的实验结果表明,新技术比先前报道的方法更有效,并且对参考EPI扫描和实际EPI扫描之间的信号强度差异具有更好的耐受性。所提出的方法可能潜在地应用于无需受试者移动的重复EPI测量,如功能磁共振成像和扩散系数映射。