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磁共振成像中的平移分子自扩散。I. 对观测到的自旋-自旋弛豫的影响。

Translational molecular self-diffusion in magnetic resonance imaging. I. Effects on observed spin-spin relaxation.

作者信息

Wesbey G E, Moseley M E, Ehman R L

出版信息

Invest Radiol. 1984 Nov-Dec;19(6):484-90. doi: 10.1097/00004424-198411000-00004.

Abstract

The reduced T2 (spin-spin) relaxation times (T2obs less than 200 ms) measured on pure fluids on our 0.35T magnetic resonance imagers stimulated an investigation into this phenomenon. The cause for the short T2obs of fluids was found to be translational molecular self-diffusion of hydrogen nuclei through the pulsed slice-selective magnetic gradient in the imagers. Similar reductions in biological tissue T2obs were also attributed to molecular self-diffusion.

摘要

我们在0.35T磁共振成像仪上对纯流体测量得到的T2(自旋-自旋)弛豫时间缩短(观测到的T2小于200毫秒)激发了对这一现象的研究。发现流体观测到的T2缩短的原因是氢核通过成像仪中的脉冲层面选择磁梯度进行的平移分子自扩散。生物组织观测到的T2类似缩短也归因于分子自扩散。

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