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利用来自激光超极化129Xe核的磁共振信号进行纵向弛豫和扩散测量。

Longitudinal relaxation and diffusion measurements using magnetic resonance signals from laser-hyperpolarized 129Xe nuclei.

作者信息

Patyal B R, Gao J H, Williams R F, Roby J, Saam B, Rockwell B A, Thomas R J, Stolarski D J, Fox P T

机构信息

Research Imaging Center, University of Texas Health Science Center, San Antonio 78284, USA.

出版信息

J Magn Reson. 1997 May;126(1):58-65. doi: 10.1006/jmre.1997.1159.

Abstract

Methods for T1 relaxation and diffusion measurements based on magnetic resonance signals from laser-hyperpolarized 129Xe nuclei are introduced. The methods involve optimum use of the perishable hyperpolarized magnetization of 129Xe. The necessary theoretical framework for the methods is developed, and then the methods are applied to measure the longitudinal relaxation constant, T1, and the self-diffusion constant, D, of hyperpolarized 129Xe. In a cell containing natural abundance 129Xe at 790 Torr, the T1 value was determined to be 155 +/- 5 min at 20 degrees C and at 2.0 T field. For a second cell at 896 Torr, at the same field and temperature, the T1 value was determined to be 66 +/- 2 min. At a higher field of 7.05 T, the T1 values for the two cells were found to be 185 +/- 10 and 88 +/- 5 min, respectively. The 129Xe self-diffusion constant for the first cell was measured to be 0.057 cm2/ s and for the second cell it was 0.044 cm2/s. The methods were applied to 129Xe in the gas phase, in vitro; however, they are, in principle, applicable for in vivo or ex vivo studies. The potential role of these methods in the development of newly emerging hyper-polarized 129Xe MRI applications is discussed.

摘要

介绍了基于激光超极化129Xe原子核磁共振信号进行T1弛豫和扩散测量的方法。这些方法涉及对129Xe易逝的超极化磁化强度的优化利用。建立了这些方法所需的理论框架,然后将这些方法应用于测量超极化129Xe的纵向弛豫常数T1和自扩散常数D。在一个含有天然丰度129Xe、压力为790托的样品池中,在20℃和2.0 T磁场下,测得T1值为155±5分钟。对于另一个压力为896托的样品池,在相同的磁场和温度下,测得T1值为66±2分钟。在7.05 T的更高磁场下,发现两个样品池的T1值分别为185±10分钟和88±5分钟。第一个样品池的129Xe自扩散常数测得为0.057 cm2/s,第二个样品池为0.044 cm2/s。这些方法应用于气相中的129Xe,是体外研究;然而,原则上它们也适用于体内或离体研究。讨论了这些方法在新兴的超极化129Xe磁共振成像应用开发中的潜在作用。

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