Deichmann R, Good C D, Josephs O, Ashburner J, Turner R
Wellcome Department of Cognitive Neurology, Institute of Neurology, London, United Kingdom.
Neuroimage. 2000 Jul;12(1):112-27. doi: 10.1006/nimg.2000.0601.
An optimized MR sequence for structural three-dimensional brain scans is presented, giving good T(1) contrast and excellent white matter/gray matter segmentation. Modification of the usual linear phase encoding order to centric phase encoding restores the contrast loss, which usually occurs after magnetization preparation during the acquisition process when large volumes are imaged. The deleterious effects on the point-spread function are compensated by means of an appropriate k-space filter. RF coil inhomogeneities are corrected by means of shaped excitation pulses. High contrast-to-noise images of the entire brain with 1 mm isotropic resolution can be obtained in 12 min. The contrast-to-noise-ratio is about 100% higher than for sequences based on linear phase encoding.
本文介绍了一种用于脑部结构三维扫描的优化磁共振序列,该序列具有良好的T(1)对比度和出色的白质/灰质分割效果。将通常的线性相位编码顺序修改为中心相位编码可恢复对比度损失,这种损失通常在采集过程中对大体积进行成像时,磁化准备后出现。通过适当的k空间滤波器可补偿对点扩散函数的有害影响。利用成形激发脉冲校正射频线圈不均匀性。在12分钟内可获得全脑各向同性分辨率为1mm的高对比度噪声图像。其对比度噪声比比基于线性相位编码的序列高出约100%。