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[1]张凯威,苗志英,施群雁,等.基于直接数字频率合成技术的核磁共振弛豫分析仪场频联锁电路设计[J].生物医学工程研究,2016,01:31-35.
 ZHANG Kaiwei,MIAO ZHIying,SHI Qunyan,et al.Design of Locking Fields Signal Generating Circuit for Nuclear Magnetic Resonance Instrumentation based on Direct Digital Synthesizer Technology[J].Journal of Biomedical Engineering Research,2016,01:31-35.
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基于直接数字频率合成技术的核磁共振弛豫分析仪场频联锁电路设计(PDF)

《生物医学工程研究》[ISSN:1006-6977/CN:61-1281/TN]

期数:
2016年01期
页码:
31-35
栏目:
出版日期:
2016-03-25

文章信息/Info

Title:
Design of Locking Fields Signal Generating Circuit for Nuclear Magnetic Resonance Instrumentation based on Direct Digital Synthesizer Technology
作者:
张凯威1苗志英1施群雁1陈珊珊2汪红志2△
1.上海理工大学医疗器械与食品学院,上海 200093;2.上海健康医学院,上海 200093
Author(s):
ZHANG Kaiwei1MIAO ZHIying1SHI Qunyan1CHEN Shanshan2WANG Hongzhi2
1.School of Medical Instrument and Food Engineering,Universing of Shanghai for Science and Technology,Shanghai 200093,China;2.Shanghai University of Medicine and Health Sciences,Shanghai 200093
关键词:
场频联锁磁共振弛豫分析仪电路设计直接数字频率合成技术THS3091AD797
Keywords:
Field/Frequency LockMagnetic resonance relaxation analyzerCircuit designDirect digtal synthesizerTHS3091AD797
分类号:
R318
DOI:
-
文献标识码:
A
摘要:
为了研制一个稳定、高分辨特性的磁共振弛豫分析仪场频联锁系统,利用FPGA作为系统控制核心控制DDS电路,产生快速所需的调制射频信号。然后对锁场系统中发射单元,射频开关以及接收单元进行电路设计。最后,通过实验验证,整个锁场电路在3.268 MHz的频率下,能够激励氘核并产生磁共振信号,并且在接收单元中,能够将uW级的磁共振信号进行前置放大,使其达到330 mW,便于FPGA处理。本系统对将来研制高性能弛豫分析仪有重要的参考意义。
Abstract:
To develop a stable, high resolution field frequency characteristics of nuclear magnetic resonance (NMR) relaxation analyzer interlocking system, with FPGA to controll DDS chip to generate desired modulated radio frequency(RF) signal.The system was designed with a launch unit, RF switch and receiving unit.Experiments showed that the system could effectively motivate deuteron produce NMR signal in the frequency of 3.268 MHz. And in receiving unit, it could carry on the preamplifier for the NMR signal level uW to 330 mW. The design can provide reference for high performance relaxation analyzer.

参考文献/References

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备注/Memo

备注/Memo:
(收稿日期:2015-10-10) 通讯作者 Email:wanghzhi2000@sina.com
更新日期/Last Update: 2016-06-13