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Single-wavelength water muted photoacoustic system for detecting physiological concentrations of endogenous molecules

机译:用于检测内源性分子生理浓度的单波长水静音光声系统

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摘要

Based on the breakthrough technology of water muting on photoacoustic spectroscopy, a single wavelength photoacoustic system in the short-wavelength-infrared (SWIR) region was developed to sense the endogenous molecules (e.g. glucose, lactate, triglyceride, and serum albumin found in blood and interstitial fluid) in aqueous media. The system implemented a robust photoacoustic resonant cell that can significantly enhance the signal-to-noise ratio of the acoustic waves. The sensitivity of the system was explored, and the experimental results exhibit a precision detection of physiological concentrations of biomolecules by combining the techniques of water muting and photoacoustic resonant amplification in a portable and low-cost single wavelength laser system.
机译:基于光声光谱对水静脉突破的突破性技术,开发了短波长红外(SWIR)区域中的单个波长光声系统以感测内源分子(例如血液中发现的葡萄糖,乳酸,甘油三酯和血清白蛋白水性介质中的间质液。该系统实现了一种坚固的光声谐振电池,可以显着提高声波的信噪比。探索了系统的敏感性,实验结果通过将水静音和光声谐振扩增在便携式和低成本单波长激光系统中的技术的技术表现出生物分子的精确检测。

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