Frahm J, Haase A, Matthaei D
J Comput Assist Tomogr. 1986 Mar-Apr;10(2):363-8. doi: 10.1097/00004728-198603000-00046.
Fast low-angle shot (FLASH) imaging is a new technique for rapid magnetic resonance (MR) imaging that reduces acquisition times to seconds while retaining spatial resolution. This article deals with a three-dimensional (3D) variant of the FLASH method that allows the recording of a 3D-data set of 128 X 128 X 128 pixels within an acquisition time of only 4 min. The method is demonstrated using a 2.35 T 40 cm bore MR system. Experiments are carried out on rabbit head and human extremities. Depending on the field of view, the isotropic resolution is 1 mm or even less leading to cross-sectional images with a 1 mm slice thickness. In principle, FLASH imaging techniques are applicable to any MR system without the need of major hardware modifications. However, high-speed computers, large storage capacity, and rapid image display routines greatly facilitate an advantageous use of the 3D-FLASH variant.
快速低角度激发(FLASH)成像技术是一种用于快速磁共振(MR)成像的新技术,它能在保持空间分辨率的同时,将采集时间缩短至数秒。本文讨论的是FLASH方法的一种三维(3D)变体,该变体能够在仅4分钟的采集时间内记录一个128×128×128像素的三维数据集。使用一台2.35T、40cm孔径的MR系统对该方法进行了演示。实验在兔头部和人体四肢上进行。根据视野的不同,各向同性分辨率为1mm甚至更小,从而得到切片厚度为1mm的横断面图像。原则上,FLASH成像技术适用于任何MR系统,无需进行重大硬件修改。然而,高速计算机、大容量存储以及快速图像显示程序极大地促进了三维FLASH变体的优势应用。