Seo Y, Shinar H, Morita Y, Navon G
Department of Physiology, Kyoto Prefectural University of Medicine, Kyoto, Japan.
Magn Reson Med. 1999 Sep;42(3):461-6. doi: 10.1002/(sici)1522-2594(199909)42:3<461::aid-mrm8>3.0.co;2-l.
The signals of water in the different compartments of rat sciatic nerve are resolved in the (2)H double-quantum-filtered NMR spectrum, due to their different quadrupolar splittings and relaxation rates. This resolution allowed the independent measurement of the water diffusion coefficients in the different compartments. The water diffusion in all three compartments, the endoneurium, the epineurium and the axon was found to be anisotropic. Parallel to the nerve fiber the average intraxonal water diffusion coefficient was 1.11 x 10(-5) cm(2)/sec, while in the perpendicular direction the diffusion is heavily restricted. The average perpendicular diffusion coefficient ranged from 0.29 x 10(-5) cm(2)/sec to 0.05 x 10(-5) cm(2)/sec for diffusion times of 7 msec and 50 msec, respectively. Assuming restricted diffusion in nonpermeable cylinders, intra-axonal mean diameters of 6.0, 7.4 and 9.0 microm were obtained for nerves taken from three different rats. Magn Reson Med 42:461-466, 1999.
由于大鼠坐骨神经不同区域的水具有不同的四极分裂和弛豫速率,因此在(2)H双量子滤波核磁共振谱中可以分辨出这些区域的水信号。这种分辨率使得能够独立测量不同区域的水扩散系数。研究发现,在内膜、外膜和轴突这三个区域中的水扩散都是各向异性的。与神经纤维平行时,轴突内水的平均扩散系数为1.11×10^(-5) cm²/秒,而在垂直方向上扩散受到严重限制。对于扩散时间分别为7毫秒和50毫秒的情况,平均垂直扩散系数分别在0.29×10^(-5) cm²/秒至0.05×10^(-5) cm²/秒范围内。假设在不可渗透圆柱体中存在受限扩散,从三只不同大鼠取出的神经的轴突内平均直径分别为6.0、7.4和9.0微米。《磁共振医学》42:461 - 466,1999年。