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Acoustic Modal Analysis of Resonant Photoacoustic Spectroscopy with Dual-Wavelength Differential Detection for Noninvasive Glucose Monitoring

机译:双波长差分检测共振光声光谱的声学模态分析,用于无创血糖监测

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A theoretical study of resonant photoacoustic spectroscopy (PAS) for glucose noninvasive detection was performed by rigorously taking into account the spatial distribution of the photothermal source and the acoustic resonance mode in a cavity. The sensitivity of the dual-wavelength differential PA technique is derived when glucose with weak optical absorption is detected in solution with high optical absorption. The sensitivity dependence of acoustic resonance modes was evaluated by both analysis and experiment with pure water. The analytical results show good agreement with the experiment. The sensitivity against the concentration of the target molecules can be enhanced approximately twofold by choosing the optimum acoustic resonance mode. The results indicate that this method has the potential to detect glucose in a physiological range comparable to that of invasive blood glucose monitoring.
机译:通过严格考虑光热源的空间分布和腔内的声共振模式,对用于葡萄糖非侵入性检测的共振光声光谱法(PAS)进行了理论研究。当在具有高光吸收率的溶液中检测到具有弱光吸收率的葡萄糖时,就可以得出双波长差分PA技术的灵敏度。通过分析和纯水实验评估了声共振模式的灵敏度依赖性。分析结果与实验吻合良好。通过选择最佳的声共振模式,可以将对目标分子浓度的敏感性提高大约两倍。结果表明,该方法具有在生理范围内检测葡萄糖的潜力,可与有创血糖监测相比。

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