Nolte U G, Finsterbusch J, Frahm J
Biomedizinische NMR Forschungs GmbH am Max-Planck-Institut für biophysikalische Chemie, Göttingen, Germany.
Magn Reson Med. 2000 Nov;44(5):731-6. doi: 10.1002/1522-2594(200011)44:5<731::aid-mrm11>3.0.co;2-1.
A subsecond magnetic resonance imaging (MRI) technique for isotropic diffusion mapping is described which, in contrast to echo-planar imaging (EPI), is insensitive to resonance offsets, i.e., tissue susceptibility differences, magnetic field inhomogeneities, and chemical shifts. It combines a diffusion-weighted (DW) spin-echo preparation period and a high-speed stimulated echo acquisition mode (STEAM) MRI sequence and yields single-shot images within measuring times of 559 msec (80 echoes). Here, diffusion encoding involved one scan without DW, three DW scans with b = 490 sec mm(-2), and three DW scans with b = 1000 sec mm(-2) (orthogonal gradient orientations). An automated on-line evaluation resulted in isotropic DW images as well as ADC maps (trace of the diffusion tensor). Experiments at 2.0 T covered the brain of healthy subjects in 20 contiguous sections of 6 mm thickness and 2.0 x 2.0 mm(2) in-plane resolution within a total measuring time of 78 sec. High-resolution studies at 1.0 x 1.0 mm(2) (interpolated from 2.0 x 1.0 mm(2) acquisitions) were obtained within 5 min 13 sec using four averages. In comparison with EPI, DW single-shot STEAM MRI exhibits only about half the SNR, but completely avoids regional signal losses, high intensity artifacts, and geometric distortions.
本文描述了一种用于各向同性扩散映射的亚秒级磁共振成像(MRI)技术,与回波平面成像(EPI)不同,该技术对共振偏移不敏感,即对组织磁化率差异、磁场不均匀性和化学位移不敏感。它结合了扩散加权(DW)自旋回波准备期和高速受激回波采集模式(STEAM)MRI序列,并在559毫秒(80次回波)的测量时间内生成单次激发图像。在这里,扩散编码包括一次无DW扫描、三次b = 490秒/毫米²的DW扫描和三次b = 1000秒/毫米²的DW扫描(正交梯度方向)。自动在线评估产生了各向同性DW图像以及ADC图(扩散张量的迹)。在2.0 T场强下的实验,在78秒的总测量时间内,以6毫米的厚度和2.0×2.0毫米²的平面分辨率对健康受试者的大脑进行了20个连续层面的成像。使用四次平均,在5分13秒内获得了1.0×1.0毫米²(从2.0×1.0毫米²采集数据插值得到)的高分辨率研究结果。与EPI相比,DW单次激发STEAM MRI的信噪比仅为其一半左右,但完全避免了区域信号损失、高强度伪影和几何畸变。