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Investigations on micro-displacement based techniques for resonance frequency control of miniature monolithic resonators dedicated to Magnetic Resonance Imaging

机译:基于微位移基于微量位移的微型谐振器谐振频率控制技术,专用于磁共振成像的微型整体谐振器

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The use of miniature monolithic Multi-turn Transmission Line resonator (MTLR) in Magnetic Resonance Imaging (MRI) allows achieving very high spatial resolution images but calls to dedicated techniques to finely control the resonance frequency of the resonator. This paper presents preliminary investigations on micro-displacement based frequency control techniques dedicated to MTLR. In particular, a tuning technique, based on a dielectric coupling, to tune the coil to the Larmor frequency of the observed protons and a decoupling technique based on short-circuit of the coil winding are studied. Results obtained with both experimental measurements and numerical simulations are presented and micro-devices that could perform automatic and precise frequency shift are proposed.
机译:在磁共振成像(MRI)中使用微型单片多转速传输线谐振器(MTLR)允许实现非常高的空间分辨率图像,而是呼叫专用技术来精细控制谐振器的谐振频率。本文介绍了专用于MTLR的微位移基于微位移的频率控制技术的初步调查。具体地,研究了基于介电耦合的调谐技术,以将线圈调节到观察到的质子的大频频率和基于线圈绕组短路的去耦技术。提出了通过实验测量和数值模拟获得的结果,并且提出了可以执行自动和精确频移的微型器件。

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