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高性能核磁共振弛豫分析仪匀场系统的设计与实现
引用本文:陈珊珊,夏天,毕昕,苗志英,杨培强,汪红志,戴曙光. 高性能核磁共振弛豫分析仪匀场系统的设计与实现[J]. 波谱学杂志, 2017, 34(1): 87-99. DOI: 10.11938/cjmr20170111
作者姓名:陈珊珊  夏天  毕昕  苗志英  杨培强  汪红志  戴曙光
作者单位:1. 上海理工大学 光电信息与计算机工程学院, 上海 200093;2. 上海健康医学院, 上海 201318;3. 苏州纽迈电子科技有限公司, 江苏 苏州 215163
基金项目:国家重大科学仪器设备开发专项
摘    要:磁场的高均匀性是高性能核磁共振弛豫分析仪实现短弛豫时间样品和微弱信号核磁共振(NMR)检测的基本保障.该文以0.45 T双极型永磁体作为设计核心部件,在大范围磁体空间-25.4 mm球空间(DSV)内,基于目标场法设计了X、Y、Z、XY、XZ、YZ、Z2共7组有源匀场线圈,根据线圈供电要求,设计了可编程恒流电源,搭建了可用于高性能核磁共振弛豫分析仪磁体的有源匀场系统,介绍了系统的基本结构、设计过程及匀场方法.实验测试结果验证了大范围磁体空间内该匀场系统的实用性.

关 键 词:恒流源  低场核磁共振(low-field NMR)  有源匀场  目标场法  自由感应衰减(FID)  
收稿时间:2015-12-21

Design and Implementation of An Active Shimming System for Low-Field NMR Analyzers
CHEN Shan-shan,XIA Tian,BI Xin,MIAO Zhi-ying,YANG Pei-qiang,WANG Hong-zhi,DAI Shu-guang. Design and Implementation of An Active Shimming System for Low-Field NMR Analyzers[J]. Chinese Journal of Magnetic Resonance, 2017, 34(1): 87-99. DOI: 10.11938/cjmr20170111
Authors:CHEN Shan-shan  XIA Tian  BI Xin  MIAO Zhi-ying  YANG Pei-qiang  WANG Hong-zhi  DAI Shu-guang
Affiliation:1. Scool of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai, 200093, China;2. Shanghai University of Medicine & Health Science, Shanghai, 201318, China;3. Suzhou Niumag Corporation Ltd, Suzhou 215163, China
Abstract:High homogeneity of the magnet field is an essential prerequisite for measuring weak signals and short spin-spin relaxation time on a nuclear magnetic resonance (NMR) analyzer. In this study, we designed active shimming coils, based on a target-field approach, for low filed NMR analyzers. Constant current source was designed according to the coil power supply. An active shimming platform used in a NMR analyzer's 0.45 T magnet system was constructed over a large target-diameter-sphere-volume (25.4 mm DSV) of interest. The basic structure and operation principles of the system, as well as the shimming method, were introduced. The feasibility and practicality of the design was demonstrated by experimental measurements.
Keywords:low-field NMR  active shimming  target-field approach  constant current source  free induction decay (FID)
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