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Glucose detection in a highly scattering medium with diffuse photon-pair density wave

机译:散射光子对密度波在高散射介质中的葡萄糖检测

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摘要

We propose a novel optical method for glucose measurement based on diffuse photon-pair density wave (DPPDW) in a multiple scattering medium (MSM) where the light scattering of photon-pair is induced by refractive index mismatch between scatters and phantom solution. Experimentally, the DPPDW propagates in MSM via a two-frequency laser (TFL) beam wherein highly correlated pairs of linear polarized photons are generated. The reduced scattering coefficient μ2s′ and absorption coefficient μ2a of DPPDW are measured simultaneously in terms of the amplitude and phase measurements of the detected heterodyne signal under arrangement at different distances between the source and detection fibers in MSM. The results show that the sensitivity of glucose detection via glucose-induced change of reduced scattering coefficient (δμ2s′) is 0.049%mM?1 in a 1% intralipid solution. In addition, the linear range of δμ2s′ vs glucose concentration implies that this DPPDW method can be used to monitor glucose concentration contin...
机译:我们提出了一种基于多散射介质(MSM)中的弥散光子对密度波(DPPDW)的葡萄糖测量的新型光学方法,该光子对的光散射是由散射体和幻影溶液之间的折射率失配引起的。实验上,DPPDW通过两频激光(TFL)光束在MSM中传播,其中生成了高度相关的线性极化光子对。根据在MSM中源和检测光纤之间的不同距离处布置的检测到的外差信号的幅度和相位测量,同时测量DPPDW的减小的散射系数μ2s'和吸收系数μ2a。结果表明,在1%脂质溶液中,葡萄糖引起的散射系数降低(δμ2s')变化引起的葡萄糖检测的灵敏度为0.049%mM?1。此外,δμ2s'与葡萄糖浓度的线性范围意味着该DPPDW方法可用于监测葡萄糖浓度的连续变化。

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