单匝和多间隙屏蔽环路MRI检波器前置放大器最佳解耦条件

Wenjun Wang, J. Sánchez-Heredia, V. Zhurbenko, J. Ardenkjær-Larsen
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引用次数: 2

摘要

近年来,屏蔽回路在磁共振成像(MRI)探测器阵列的设计中引起了人们的浓厚兴趣。为了防止不必要的阵列元素失谐,使用前置放大器去耦。到目前为止,解耦电路的设计都是基于最小化回路两端阻抗的直观方法。这种方法会产生不错但不是最优的结果。本文采用系统的解析方法推导了阵列中屏蔽回路最大解耦的精确条件。该条件精确地描述了为获得最佳解耦,应向回路的终端提供何种阻抗。结果表明,该方法对单间隙屏蔽回路和多间隙屏蔽回路都是有效的。所得结果可用于设计具有最佳解耦的屏蔽线圈的MRI接收阵列。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Condition for Optimal Preamplifier Decoupling in One-turn Single- and Multi-gap Shielded Loop MRI Detectors
Shielded loops have recently attracted keen interest in the design of Magnetic Resonance Imaging (MRI) detector arrays. To prevent unwanted detuning of array elements, preamplifier decoupling is used. So far, the decoupling circuit design was based on intuitive approach of minimizing impedance presented to the terminals of the loop. The approach leads to decent but not optimal results. In this paper a systematic analytical method is used to derive the exact condition for maximum decoupling of shielded loops in array. The condition describes precisely what impedance should be presented to the terminals of the loop for best decoupling. It is shown that the method is valid for single- and multi-gap shielded loops with and without integrated reactive components across the gap. The presented results are useful in the design of MRI receive arrays of shielded loop coils with optimal decoupling.
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