MRI Centre, Department of Physics, University of New Brunswick, Fredericton, New Brunswick, Canada E3B 5A3.
J Magn Reson. 2011 Dec;213(1):90-7. doi: 10.1016/j.jmr.2011.09.001. Epub 2011 Sep 10.
High pressure measurements in most scientific fields rely on metal vessels given the superior tensile strength of metals. We introduce high pressure magnetic resonance imaging (MRI) measurements with metallic vessels. The developed MRI compatible metallic pressure vessel concept is very general in application. Macroscopic physical systems are now amenable to spatially resolved nuclear magnetic resonance (NMR) study at variable pressure and temperature. Metallic pressure vessels not only provide inherently high tensile strengths and efficient temperature control, they also permit optimization of the MRI RF probe sensitivity. An MRI compatible pressure vessel is demonstrated with a rock core holder fabricated using non-magnetic stainless steel. Water flooding through a porous rock under pressure is shown as an example of its applications. High pressure NMR spectroscopy plays an indispensable role in several science fields. This work will open new vistas of study for high pressure material science MRI and MR.
在大多数科学领域,由于金属的拉伸强度较高,因此依赖金属容器进行高压测量。我们介绍了带有金属容器的高压磁共振成像(MRI)测量。所开发的 MRI 兼容金属压力容器概念在应用中非常通用。现在,宏观物理系统可在可变压力和温度下进行空间分辨的核磁共振(NMR)研究。金属压力容器不仅提供固有的高强度和高效的温度控制,还允许优化 MRI 射频探头的灵敏度。使用非磁性不锈钢制造的岩心保持器演示了 MRI 兼容的压力容器。以水压通过多孔岩石为例展示了其应用。高压 NMR 光谱学在多个科学领域中都发挥着不可或缺的作用。这项工作将为高压材料科学 MRI 和 MR 的研究开辟新的视野。