High-Q litz wire NQR sensor for medical applications

R. Khusnutdinov, G. V. Mozzhukhin, N. R. Khusnutdinova, B. M. Salakhutdinov
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Abstract

RELEVANCE. The design and development of radio frequency (RF) coil sensors is an important engineering and, at the same time, fundamental task for those radio spectroscopic instruments that require an increase in sensitivity, measured as a signal-to-noise ratio (SNR). Radio spectroscopy of nuclear quadrupole resonance (NQR), especially in nitrogen compounds, in which the resonant frequency is very low and ranges from a few megahertz or lower to hundreds of kilohertz, requires the use of special solutions to increase the sensitivity. PURPOSE. Theoretical substantiation and search for a technical solution that allows achieving high sensitivity on standard equipment through the use of a high-quality sensor. METHODS. Methods for optimizing the design of sensors for NQR/NMR spectrometers are considered. The design of the sensor for the NQR spectrometer, which contains an inductance coil wound with a Litz wire, has been calculated and designed. RESULTS. A high-quality coil for the spectrometer sensor was made, which gives an increase in the quality factor by about 1.5 times. The use of a spectrometer with this coil made it possible to confidently record weak noisy signals of paracetamol at a low duty cycle. The sensitivity of the sensor made it possible to distinguish preparations from different manufacturers by their spectral characteristics. CONCLUSIONS. A solenoid sensor has been developed, modeled and manufactured, which has a high quality factor and allows recording quadrupole resonance signals of drugs (paracetamol) by a non-destructive method directly through the package. The possibility of using such a sensor for quality control of medicines, detection of falsified and counterfeit medicines is shown.
医疗用高q利兹线NQR传感器
的相关性。射频(RF)线圈传感器的设计和开发是一项重要的工程,同时也是那些需要提高灵敏度(以信噪比(SNR)测量)的无线电频谱仪器的基本任务。核四极共振(NQR)的无线电波谱学,特别是在氮化合物中,其共振频率非常低,范围从几兆赫兹或更低到数百千赫兹,需要使用特殊的溶液来提高灵敏度。目的。通过使用高质量的传感器,在标准设备上实现高灵敏度的理论证实和技术解决方案的研究。方法。研究了NQR/NMR光谱仪传感器的优化设计方法。本文对NQR光谱仪传感器的设计进行了计算和设计,该传感器包含一个绕有利兹丝的电感线圈。结果。制作了高质量的光谱仪传感器线圈,使质量因子提高了约1.5倍。使用带有这种线圈的光谱仪,可以在低占空比下自信地记录扑热息痛的微弱噪声信号。传感器的灵敏度使得通过光谱特性区分不同厂家的制剂成为可能。结论。已经开发、建模和制造了一种电磁传感器,该传感器具有高质量因子,可以通过非破坏性方法直接通过包装记录药物(扑热息痛)的四极共振信号。展示了使用这种传感器进行药品质量控制、检测伪造和假冒药品的可能性。
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