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Passive Decoupling Due to Low Q-Factors of Four-Channel Coils in 300-MHz Pulsed EPR Imaging

机译:300 MHz脉冲EPR成像中四通道线圈Q值低的无源去耦

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This article describes a four-channel coil array for in vivo time-domain electron paramagnetic resonance (EPR) imaging applications. Decoupling of the individual element coils was achieved with the low-quality factors required in pulsed EPR at radiofrequency to accommodate the imaging bandwidth. No active decoupling method was used in the coil array. Remote control of a coaxial switch connected to the four-channel coil array was performed with voltage signals from a personal computer. To verify the operation of this four-channel coil array, a phantom tube filled with a solution of paramagnetic triarylmethyl radicals (OX063) was visualized by pulsed EPR imaging based on the single-point method involving pure phase encoding. In an in vivo experiment, OX063 in a mouse tumor-bearing right hind leg was visualized by pulsed EPR imaging. Even without active decoupling circuits, there was no shift in resonances for individual coils when those were tuned to the same frequency due to low quality factors and low coupling coefficients with neighboring coils. The coil assembly allowed us to study an object that was larger than an individual coil element, enabling the imaging of larger subjects with reduced overall specific absorption rate. Such strategies should be useful for studying larger objects by EPR imaging.
机译:本文介绍了一种用于体内时域电子顺磁共振(EPR)成像应用的四通道线圈阵列。单个元件线圈的去耦是通过脉冲EPR射频所需的低品质因数实现的,以适应成像带宽。在线圈阵列中未使用有源去耦方法。连接到四通道线圈阵列的同轴开关的远程控制是通过来自个人计算机的电压信号执行的。为了验证此四通道线圈阵列的运行,基于涉及纯相位编码的单点方法,通过脉冲EPR成像使装有顺磁性三芳基甲基自由基(OX063)溶液的幻像管可视化。在体内实验中,通过脉冲EPR成像可以观察到带有小鼠肿瘤的右后腿中的OX063。即使没有有源去耦电路,由于品质因数低和与相邻线圈的耦合系数低,将单个线圈调谐到相同频率时,谐振也不会发生偏移。线圈组件使我们能够研究比单个线圈元件大的物体,从而能够以较低的整体比吸收率对较大的物体成像。这样的策略对于通过EPR成像研究更大的物体应该是有用的。

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