首页> 外文期刊>Sensor Letters: A Journal Dedicated to all Aspects of Sensors in Science, Engineering, and Medicine >Optimum Remote Tuning/Matching NMR Probe Achieved with a Suitable Transmission Line Length and a Suitable Local Tuning/Matching Circuit
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Optimum Remote Tuning/Matching NMR Probe Achieved with a Suitable Transmission Line Length and a Suitable Local Tuning/Matching Circuit

机译:通过合适的传输线长度和合适的本地调谐/匹配电路实现最佳的远程调谐/匹配NMR探针

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摘要

In many nuclear magnetic resonance (NMR) applications, the receiving coil must be as close as possible to the region of interest (ROI) and this limits the access in situ to the settings of local tuning and matching capacities. Here, we develop a method showing that according to the work frequency there is a suitable transmission line length and according to the features of the coil there is a suitable local tuning/matching circuit configuration to insert between the coil and the transmission line. The simulation method has been applied on two different coils models and correlated by results obtained on test bench. The resulting bandwidth, about 30 MHz, makes settings more comfortable and opens the possibility for tuning at different nuclei with very close resonant frequencies.
机译:在许多核磁共振(NMR)应用中,接收线圈必须尽可能靠近感兴趣区域(ROI),这将就地访问限制为本地调谐和匹配能力的设置。在这里,我们开发了一种方法,该方法表明根据工作频率有一个合适的传输线长度,并且根据线圈的特性,有一个合适的本地调谐/匹配电路配置可以插入到线圈和传输线之间。该仿真方法已应用于两个不同的线圈模型,并与在测试台上获得的结果相关联。由此产生的大约30 MHz的带宽使设置更加舒适,并为以非常接近的谐振频率在不同原子核上调谐提供了可能性。

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