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Harmonic detection and noise suppression in a magnetic nanoparticle thermometer

机译:磁性纳米温度计中的谐波检测和噪声抑制

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Magnetic nanoparticle (MNP) thermometry will be necessary for safe therapeutic implementation of magnetic nanoparticle hyperthermia, a developing cancer treatment. One realization of a MNP thermometer works by detecting harmonic signal (the fundamental f and 3f harmonics) generated by MNPs exposed to ac magnetic field. In this paper, we aim to measure accurately the harmonic signal in a MNP thermometer, which are contaminated with, or even buried in strong noise including wideband Gaussian, and industry frequency noise. The relations between the temperature error of a MNP thermometer and the measurement error of the harmonic signal are first studied. Furthermore, the theoretical model of a synchronous detector for measuring harmonic signal is then described in detail. Next, the ability of the synchronous harmonic detector to decrease noise (Gaussian, and industrial frequency noise) is assessed from simulations. Last, the experimental results showed effectiveness of the synchronous harmonic detector used in the MNP thermometer.
机译:磁性纳米颗粒(MNP)测温对于磁性纳米颗粒热疗(一种正在发展的癌症治疗)的安全治疗实施必不可少。 MNP温度计的一种实现方式是检测由暴露于交流磁场的MNP产生的谐波信号(基本的f和3f谐波)。在本文中,我们旨在准确测量MNP温度计中的谐波信号,该谐波信号已被甚至淹没在包括宽带高斯噪声和工业频率噪声在内的强噪声中。首先研究了MNP温度计的温度误差与谐波信号的测量误差之间的关系。此外,随后将详细描述用于测量谐波信号的同步检测器的理论模型。接下来,通过仿真评估了同步谐波检测器降低噪声(高斯和工业频率噪声)的能力。最后,实验结果证明了用于MNP温度计的同步谐波检测器的有效性。

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