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Noninvasive monitoring of glucose concentration using differential absorption low-coherence interferometry based on rapid scanning optical delay line

机译:基于快速扫描光学延迟线使用微分吸收低相干干涉法的葡萄糖浓度的非侵入性监测

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A non-invasive method of detecting glucose concentration using differential , absorption lowcoherence interferometry (DALCI) based on rapid scanning optical delay line is presented. Two light sources, one centered within (1625 ran) a glucose absorption band, while the other outside (1310 nm) the glucose absorption band, are used in the experiment. The low-coherence interferometry (LCI) is employed to obtain the signals back-reflecting from the -iris which carries the messages of material concentration in anterior chamber. Using rapid scanning optical delay line (RSOD) as the reference arm, we can detect the signals in a very short time. Therefore the glucose concentration can be monitored in real-time, which is very important for the detection in vivo. In our experiments, the comea and aqueous humor can be treated as nearly non-scattering substance. The difference in the absorption coefficient is much larger than the difference in the scattering coefficient, so the influence of scattering can be neglected. By subtracting the algorithmic lew-coherence interference signals of the two wavelengths, the absorption coefficient can be calculated which is proportional to glucose concentration. To reduce the speckle noise, a 30 variation of signals were used before the final calculation of the glucose concentration. The improvements of cur experiment are also discussed in the article. The method has a potential application for noninvasive detection of glucose concentration in vivo and in real-time.
机译:呈现了一种基于快速扫描光学延迟线检测使用差分,吸收的幂性干涉法(DALCI)检测葡萄糖浓度的非侵入方法。两个光源,一个以(1625 ran)为中心的葡萄糖吸收带,而另一个外部(1310nm)葡萄糖吸收带在实验中使用。使用低相干干涉测量法(LCI)以获得从 - 从 - 携带前腔室中材料浓度的消息的反射信号。使用快速扫描光学延迟线(RSOD)作为参考臂,我们可以在很短的时间内检测信号。因此,可以实时监测葡萄糖浓度,这对于体内检测非常重要。在我们的实验中,Comea和含水幽默可以作为几乎非散射物质治疗。吸收系数的差异远大于散射系数的差异,因此可以忽略散射的影响。通过减去两个波长的算法笔记相干信号,可以计算吸收系数,其与葡萄糖浓度成比例。为了减少斑点噪声,在最终计算葡萄糖浓度之前使用了30个信号的变化。制品还讨论了Cur实验的改进。该方法具有潜在的应用,用于在体内和实时检测葡萄糖浓度。

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