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本文引用的文献

1
Scaling of EPR spectral-spatial images with size of sample: images of a sample greater than 5 cm in linear dimension.
Med Phys. 2007 Dec;34(12):4854-9. doi: 10.1118/1.2804745.
2
Development of a hybrid EPR/NMR coimaging system.一种混合式电子顺磁共振/核磁共振联合成像系统的研发。
Magn Reson Med. 2007 Jul;58(1):156-166. doi: 10.1002/mrm.21205.
3
Use of multi-coil parallel-gap resonators for co-registration EPR/NMR imaging.多线圈平行间隙谐振器在共配准电子顺磁共振/核磁共振成像中的应用。
J Magn Reson. 2007 Jan;184(1):29-38. doi: 10.1016/j.jmr.2006.09.014. Epub 2006 Oct 6.
4
Reactivity of molecular oxygen with ethoxycarbonyl derivatives of tetrathiatriarylmethyl radicals.分子氧与四硫代三芳基甲基自由基的乙氧羰基衍生物的反应活性。
J Org Chem. 2006 Sep 15;71(19):7268-79. doi: 10.1021/jo0610560.
5
Radio frequency continuous-wave and time-domain EPR imaging and Overhauser-enhanced magnetic resonance imaging of small animals: instrumental developments and comparison of relative merits for functional imaging.小动物的射频连续波和时域电子顺磁共振成像以及奥弗豪泽增强磁共振成像:仪器发展及功能成像相对优点的比较
NMR Biomed. 2004 Aug;17(5):263-94. doi: 10.1002/nbm.897.
6
Aqueous sample in an EPR cavity: sensitivity considerations.电子顺磁共振腔内的水性样品:灵敏度考量
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7
In vivo detection of a pH-sensitive nitroxide in the rat stomach by low-field ESR-based techniques.
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8
Mapping of the B1 field distribution of a surface coil resonator using EPR imaging.利用电子顺磁共振成像对表面线圈谐振器的B1场分布进行映射。
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9
Frequency dependence of EPR signal intensity, 250 MHz to 9.1 GHz.电子顺磁共振信号强度的频率依赖性,250兆赫至9.1吉赫
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10
Imaging spin probe distribution in the tumor of a living mouse with 250 MHz EPR: correlation with BOLD MRI.利用250兆赫电子顺磁共振成像活体小鼠肿瘤中的自旋探针分布:与血氧水平依赖性功能磁共振成像的相关性
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用于1.2GHz小鼠全身电子顺磁共振成像的单环多间隙谐振器。

Single loop multi-gap resonator for whole body EPR imaging of mice at 1.2 GHz.

作者信息

Petryakov Sergey, Samouilov Alexandre, Kesselring Eric, Wasowicz Tomasz, Caia George L, Zweier Jay L

机构信息

Center for Biomedical EPR Spectroscopy and Imaging, Davis Heart and Lung Research Institute, Division of Cardiovascular Medicine, Department of Internal Medicine, The Ohio State University, Columbus, OH 43210, USA.

出版信息

J Magn Reson. 2007 Sep;188(1):68-73. doi: 10.1016/j.jmr.2007.05.021. Epub 2007 Jun 9.

DOI:10.1016/j.jmr.2007.05.021
PMID:17625940
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2714052/
Abstract

For whole body EPR imaging of small animals, typically low frequencies of 250-750 MHz have been used due to the microwave losses at higher frequencies and the challenges in designing suitable resonators to accommodate these large lossy samples. However, low microwave frequency limits the obtainable sensitivity. L-band frequencies can provide higher sensitivity, and have been commonly used for localized in vivo EPR spectroscopy. Therefore, it would be highly desirable to develop an L-band microwave resonator suitable for in vivo whole body EPR imaging of small animals such as living mice. A 1.2 GHz 16-gap resonator with inner diameter of 42 mm and 48 mm length was designed and constructed for whole body EPR imaging of small animals. The resonator has good field homogeneity and stability to animal-induced motional noise. Resonator stability was achieved with electrical and mechanical design utilizing a fixed position double coupling loop of novel geometry, thus minimizing the number of moving parts. Using this resonator, high quality EPR images of lossy phantoms and living mice were obtained. This design provides good sensitivity, ease of sample access, excellent stability and uniform B(1) field homogeneity for in vivo whole body EPR imaging of mice at 1.2 GHz.

摘要

对于小动物的全身电子顺磁共振成像,由于较高频率下的微波损耗以及设计合适的谐振器以容纳这些大的有损样品所面临的挑战,通常使用250 - 750 MHz的低频。然而,低微波频率限制了可获得的灵敏度。L波段频率可以提供更高的灵敏度,并且已普遍用于局部体内电子顺磁共振波谱学。因此,非常希望开发一种适用于对诸如活体小鼠等小动物进行体内全身电子顺磁共振成像的L波段微波谐振器。设计并构建了一个内径为42 mm、长度为48 mm的1.2 GHz 16间隙谐振器,用于小动物的全身电子顺磁共振成像。该谐振器对动物引起的运动噪声具有良好的场均匀性和稳定性。通过采用新颖几何形状的固定位置双耦合环进行电气和机械设计,实现了谐振器的稳定性,从而最大限度地减少了活动部件的数量。使用该谐振器,获得了有损体模和活体小鼠的高质量电子顺磁共振图像。这种设计为1.2 GHz下小鼠的体内全身电子顺磁共振成像提供了良好的灵敏度、易于样品接入、出色的稳定性和均匀的B(1)场均匀性。