Altbach Maria I, Bilgin Ali, Li Zhiqiang, Clarkson Eric W, Trouard Theodore P, Gmitro Arthur F
Department of Radiology, University of Arizona, Tucson, AZ 85724, USA.
Magn Reson Med. 2005 Sep;54(3):549-59. doi: 10.1002/mrm.20611.
Radially acquired fast spin-echo data can be processed to obtain T2-weighted images and a T2 map from a single k-space data set. The general approach is to use data at a specific TE (or narrow TE range) in the center of k-space and data at other TE values in the outer part of k-space. With this method high-resolution T2-weighted images and T2 maps are obtained in a time efficient manner. The mixing of TE data, however, introduces errors in the T2-weighted images and T2 maps that affect the accuracy of the T2 estimates. In this work, various k-space data processing methods for reconstructing T2-weighted images and T2 maps from a single radial fast spin-echo k-space data set are analyzed in terms of the accuracy of T2 estimates. The analysis is focused on the effect of image artifacts, object dependency, and noise on the T2 estimates. Results are presented in computer-generated phantoms and in vivo.
径向采集的快速自旋回波数据可以进行处理,以便从单个k空间数据集中获得T2加权图像和T2图。一般方法是使用k空间中心特定TE(或窄TE范围)的数据以及k空间外部其他TE值的数据。通过这种方法,可以高效地获得高分辨率T2加权图像和T2图。然而,TE数据的混合会在T2加权图像和T2图中引入误差,从而影响T2估计的准确性。在这项工作中,从T2估计的准确性方面分析了从单个径向快速自旋回波k空间数据集中重建T2加权图像和T2图的各种k空间数据处理方法。分析集中在图像伪影、对象依赖性和噪声对T2估计的影响上。结果在计算机生成的体模和体内进行了展示。