Hyperpolarized gases--a new type of MR contrast agents?

Acta radiologica. Supplementum Pub Date : 1997-01-01
L R Schad, P Bachert, M Bock, M Essig, M V Knopp, M Ebert, T Grossmann, W Heil, R Surkau, E W Otten
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Abstract

The nuclear spin polarization of noble gases can be strongly enhanced by laser optical pumping followed by electron-nuclear polarization transfer. Direct optical pumping of metastable 3He atoms has been shown to produce enormous polarization in the order of 0.4-0.6. This is about 10(5) times greater than the polarization of water protons at thermal equilibrium used at conventional MR imaging. We demonstrate that hyperpolarized 3He gas can be applied to nuclear MR imaging of human organs with air-filled spaces. In vivo 3He MR experiments were performed in a whole-body MR scanner with a superconducting magnet ramped down to 0.8 T and at 1.5 T using a double resonant Helmholtz coil operating at 63.6 and 48.6 MHz for 1H and 3He, respectively. Anatomical details of the lungs of a volunteer were visualized with the FLASH technique demonstrating the potential of the method for fast imaging of airways in the human body and for pulmonary ventilation studies.

超极化气体——一种新型磁共振造影剂?
通过激光光泵浦和电子-核极化转移可以增强惰性气体的核自旋极化。亚稳3He原子的直接光泵浦已被证明能产生0.4-0.6量级的巨大偏振。这比传统磁共振成像中使用的热平衡水质子极化大10(5)倍。我们证明了超极化3He气体可以应用于充满空气的人体器官的核磁共振成像。体内3He磁共振实验在全身磁共振扫描仪中进行,超导磁体下降到0.8 T和1.5 T,使用双谐振亥姆霍兹线圈,分别在63.6和48.6 MHz工作1H和3He。一名志愿者的肺部解剖细节通过FLASH技术可视化,展示了该方法在人体气道快速成像和肺通气研究中的潜力。
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