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Decoupling of automatic control systems in a continuous-wave electron paramagnetic resonance spectrometer for biomedical applications.

机译:用于生物医学应用的连续波电子顺磁共振波谱仪中自动控制系统的解耦。

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This article describes a systematic approach to decoupling automatic tuning control (ATC) and automatic matching control (AMC) systems in continuous-wave (CW) electron paramagnetic resonance (EPR) spectroscopy for animal experiments. This technique enables us to improve the stability of CW-EPR spectroscopy even if the animal is moving during the data acquisition of EPR spectra. The control systems are formulated to allow the behavior of interference between them to be investigated, since they are generally coupled due to the characteristics of the microwave resonator. The stability of the entire control system in a 1.1 GHz CW-EPR spectrometer is evaluated with the generalized Nyquist stability criterion. We compare the EPR spectra of a triarylmethyl (TAM) radical that is dosed in anesthetized mice in terms of the signal-to-noise ratio (SNR) to test the precompensator for decoupling the ATC and AMC systems. The experimental findings suggest that the present technique is useful for improving the SNR of EPR spectra in animal experiments. The SNR of the measured EPR spectra was improved by about 50% with the precompensator.
机译:本文介绍了一种用于动物实验的连续波(CW)电子顺磁共振(EPR)光谱中解耦自动调谐控制(ATC)和自动匹配控制(AMC)系统的系统方法。这项技术使我们能够提高CW-EPR光谱的稳定性,即使在EPR光谱的数据采集过程中动物在移动。控制系统的公式化使得可以研究它们之间的干扰行为,因为由于微波谐振器的特性,它们通常是耦合的。使用广义的奈奎斯特稳定性标准评估1.1 GHz CW-EPR光谱仪中整个控制系统的稳定性。我们比较了三芳基甲基(TAM)自由基的EPR光谱,该自由基在麻醉小鼠中按信噪比(SNR)进行剂量,以测试预补偿器对ATC和AMC系统的去耦。实验结果表明,本技术可用于改善动物实验中的EPR光谱的SNR。使用预补偿器可以将测得的EPR光谱的SNR提高约50%。

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