Petryakov S, Chzhan M, Samouilov A, He G, Kuppusamy P, Zweier J L
The EPR Center and Division of Cardiology, Department of Medicine, The Johns Hopkins University School of Medicine, 5501 Hopkins Bayview Circle, Baltimore, Maryland 21224, USA.
J Magn Reson. 2001 Jul;151(1):124-8. doi: 10.1006/jmre.2001.2349.
The design and structure of a bridged loop-gap surface resonator developed for topical EPR spectroscopy and imaging of the distribution and metabolism of spin labels in in vivo skin is reported. The resonator is a one-loop, one-gap bridged structure. A pivoting single loop-coupling coil was used to couple the microwave power to the loop-gap resonant structure. A symmetric coupling circuit was used to achieve better shielding and minimize radiation. The frequency of the resonator can be easily adjusted by trimming the area of the capacitive foil bridge, which overlaps the gap in the cylindrical loop. The working frequency set was 2.2 GHz and the unloaded Q was 720. The B1 field of this resonator was measured and spatially mapped by three-dimensional EPR imaging. The resonator is well suited to topical measurements of large biological subjects and is readily applicable for in vivo measurements of free radicals in human skin.
本文报道了一种为局部电子顺磁共振光谱(EPR)以及体内皮肤中自旋标记物的分布和代谢成像而研发的桥接环形间隙表面谐振器的设计与结构。该谐振器为单环单间隙桥接结构。采用了一个可旋转的单环耦合线圈将微波功率耦合至环形间隙谐振结构。使用了对称耦合电路以实现更好的屏蔽并使辐射最小化。通过修整与圆柱形环中的间隙重叠的电容性箔桥的面积,可轻松调节谐振器的频率。设定的工作频率为2.2 GHz,空载品质因数为720。通过三维EPR成像对该谐振器的B1场进行了测量和空间映射。该谐振器非常适合对大型生物对象进行局部测量,并且易于应用于人体皮肤中自由基的体内测量。