Mugler J P, Brookeman J R
Department of Radiology, University of Virginia Health Sciences Center, Charlottesville 22908.
J Magn Reson Imaging. 1991 Sep-Oct;1(5):561-7. doi: 10.1002/jmri.1880010509.
The authors investigated the application of three-dimensional (3D) magnetization-prepared rapid gradient-echo (MP-RAGE) imaging to the acquisition of small (32 x 128 x 256) T1-weighted 3D data sets with imaging times of approximately 1 minute. A theoretical model was used to study the contrast behavior of brain tissue. On the basis of these theoretical results, 3D MP-RAGE sequences were implemented on a 1.5-T whole-body imager. Thirty-two-section 3D data sets demonstrating good signal-to-noise ratios and resolution and strong T1-weighted contrast were obtained in 1 minute. Compared with standard short TR/TE spin-echo sequences with the same imaging times and comparable sequence parameters, the 3D MP-RAGE sequence delivered increases of more than 50% in the white matter/gray matter signal difference-to-noise and white matter signal-to-noise ratios, and provided almost twice as many sections. These sequences may find a clinical role in 3D scout imaging and screening and in patients with claustrophobia or trauma.
作者研究了三维(3D)磁化准备快速梯度回波(MP-RAGE)成像在获取小尺寸(32×128×256)T1加权3D数据集方面的应用,成像时间约为1分钟。使用理论模型研究脑组织的对比行为。基于这些理论结果,在1.5-T全身成像仪上实现了3D MP-RAGE序列。在1分钟内获得了32层的3D数据集,其显示出良好的信噪比、分辨率和强T1加权对比度。与具有相同成像时间和可比序列参数的标准短TR/TE自旋回波序列相比,3D MP-RAGE序列在白质/灰质信号差异噪声比和白质信噪比方面提高了50%以上,并且提供的层数几乎是其两倍。这些序列可能在3D定位成像和筛查以及幽闭恐惧症或创伤患者中发挥临床作用。