Pourfathi Mehrdad, Clapp Justin, Kadlecek Stephen J, Keenan Caroline D, Ghosh Rajat K, Kuzma Nicholas N, Rizi Rahim R
Department of Radiology, University of Pennsylvania, Philadelphia, Pennsylvania, USA.
Department of Electrical and Systems Engineering, University of Pennsylvania, Pennsylvania, USA.
Magn Reson Med. 2016 Sep;76(3):1007-14. doi: 10.1002/mrm.26002. Epub 2015 Oct 7.
To present a new cryogenic technique for preparing gaseous compounds in solid mixtures for polarization using dynamic nuclear polarization (DNP).
(129) Xe and (15) N2 O samples were prepared using the presented method. Samples were hyperpolarized at 1.42K at 5 Tesla. (129) Xe was polarized at 1.65K and 1.42K to compare enhancement. Polarization levels for both samples and T1 relaxation times for the (129) Xe sample were measured. Sample pulverization for the (129) Xe and controlled annealing for both samples were introduced as additional steps in sample preparation.
Enhancement increased by 15% due to a temperature drop from 1.65K to 1.42K for the (129) Xe sample. A polarization level of 20 ± 3% for the (129) Xe sample was achieved, a two-fold increase from 10 ± 1% after pulverization of the sample at 1.42K. T1 of the (129) Xe sample was increased by more than three-fold by means of annealing. In the case of (15) N2 O, annealing led to a ∼two-fold increase in the signal level after DNP.
The presented technique for producing and manipulating solid gas/glassing agent/radical mixtures for DNP led to high polarization levels in (129) Xe and (15) N2 O samples. These methods show potential for polarizing other gases using DNP technology. Magn Reson Med 76:1007-1014, 2016. © 2015 Wiley Periodicals, Inc.
介绍一种新的低温技术,用于制备用于动态核极化(DNP)极化的固体混合物中的气态化合物。
使用所提出的方法制备了(129)Xe和(15)N2O样品。样品在5特斯拉的1.42K下进行超极化。将(129)Xe在1.65K和1.42K下极化以比较增强效果。测量了两个样品的极化水平以及(129)Xe样品的T1弛豫时间。在样品制备中引入了(129)Xe的样品粉碎和两个样品的控制退火作为附加步骤。
对于(129)Xe样品,由于温度从1.65K降至1.42K,增强效果提高了15%。(129)Xe样品实现了20±3%的极化水平,在1.42K下对样品进行粉碎后,极化水平从10±1%提高了两倍。通过退火,(129)Xe样品的T1增加了三倍多。对于(15)N2O,退火导致DNP后信号水平增加了约两倍。
所提出的用于生产和处理用于DNP的固体气体/玻璃化剂/自由基混合物的技术,在(129)Xe和(15)N2O样品中产生了高极化水平。这些方法显示了使用DNP技术极化其他气体的潜力。《磁共振医学》76:1007 - 1014, 2016。© 2015威利期刊公司。