Thomas D L, Pell G S, Lythgoe M F, Gadian D G, Ordidge R J
Royal College of Surgeons Unit of Biophysics, Institute of Child Health, University College London Medical School, UK.
Magn Reson Med. 1998 Jun;39(6):950-60. doi: 10.1002/mrm.1910390613.
For the in vivo measurement of the apparent diffusion coefficient (ADC), it is desirable for the total imaging time to be as short as possible. One technique is based on a TurboFLASH acquisition in which the diffusion gradients are inserted into a driven equilibrium Fourier transform (DEFT) combination of hard pulses. However, this sequence has the disadvantage that eddy current-induced inhomogeneities lead to incomplete refocusing of the magnetization during the diffusion preparation and to incorrect ADC values. A modification to the sequence is suggested that eliminates this error by phase-cycling the second 90 degrees pulse of the preparation. This study also investigates the effect of a reduced delay time between acquisitions on the accuracy of the measurement. The quality of the TurboFLASH sequence is demonstrated by experimental validation on an agar phantom and in vivo on the rat brain using a high-field (8.5 T) system. Reduction of the interexperiment delay time is shown to be achievable to a certain degree without compromising the measurement accuracy.
对于表观扩散系数(ADC)的体内测量,总成像时间越短越好。一种技术基于快速成像稳态进动序列(TurboFLASH)采集,其中扩散梯度被插入到硬脉冲的驱动平衡傅里叶变换(DEFT)组合中。然而,该序列的缺点是涡流引起的不均匀性会导致扩散准备期间磁化的不完全重聚焦以及ADC值不正确。有人建议对该序列进行修改,通过对准备阶段的第二个90度脉冲进行相位循环来消除此误差。本研究还调查了采集之间延迟时间缩短对测量准确性的影响。通过在琼脂模型上以及使用高场(8.5 T)系统在大鼠脑内进行实验验证,证明了快速成像稳态进动序列(TurboFLASH)的质量。结果表明,在不影响测量准确性的前提下,可以在一定程度上实现实验间延迟时间的缩短。