Beaulieu C, Allen P S
Department of Biomedical Engineering, University of Alberta, Edmonton, Canada.
Magn Reson Med. 1996 Jul;36(1):39-44. doi: 10.1002/mrm.1910360108.
It has been suggested that the anistropy of the water-diffusion coefficient measured in nerve and in white matter could arise from locally anisotropic background gradients induced by the static field, B0. By utilizing 1) pulse sequences, which minimize the effects of background gradients, and 2) changes in sample orientation, which would maximize the change in the magnitude of these gradients if present, it is shown that in four excised nerves the background gradients do not play a measurable role in the anisotropy of the water-diffusion coefficient at a field strength of 2.35 T. The excised nerves evaluated were the olfactory, trigeminal, and optic nerves of the garfish and the sciatic nerve of the frog.
有人提出,在神经和白质中测量的水扩散系数的各向异性可能源于由静磁场B0引起的局部各向异性背景梯度。通过利用1)使背景梯度影响最小化的脉冲序列,以及2)样本取向的改变(如果存在背景梯度,这将使这些梯度大小的变化最大化),结果表明,在2.35T的场强下,对于四条切除的神经,背景梯度在水扩散系数的各向异性中不起可测量的作用。所评估的切除神经为雀鳝的嗅神经、三叉神经和视神经以及青蛙的坐骨神经。