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Phase-sensitive optical low-coherence reflectometry for the detection of analyte concentrations

机译:相敏光学低相干反射仪,用于检测分析物浓度

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摘要

Optical techniques may potentially be used for noninvasive glucose sensing. We investigated the application of phase-sensitive optical low-coherence reflectometry (PS-OLCR) to the measurement of analyte concentrations. The dependence of the PS-OLCR signal on the concentration of various analytes, including aqueous solutions of glucose, calcium chloride, magnesium chloride, sodium chloride, potassium chloride, potassium bicarbonate, urea, bovine serum albumin, and bovine globulin, were determined in clear and turbid media. Obtained results demonstrated (1) a high degree of sensitivity and accuracy of the phase measurements of analyte concentrations with PS-OLCR; (2) a concentration-dependent change in the phase-shift for glucose that is significantly greater than that of other analytes sampled over the same physiological range; and (3) a high submillimolar sensitivity of PS-OLCR for the measurement of glucose concentration. Further exploration of the application of PS-OLCR to the noninvasive, sensitive, and specific monitoring of glucose concentration seems warranted.
机译:光学技术可潜在地用于非侵入性葡萄糖感测。我们研究了相敏光学低相干反射法(PS-OLCR)在分析物浓度测量中的应用。明确测定了PS-OLCR信号对各种分析物浓度的依赖性,包括葡萄糖,氯化钙,氯化镁,氯化钠,氯化钾,碳酸氢钾,尿素,牛血清白蛋白和牛球蛋白的水溶液。和混浊的介质。获得的结果表明(1)使用PS-OLCR进行分析物浓度的相位测量具有很高的灵敏度和准确性; (2)葡萄糖的相移浓度依赖性变化明显大于在相同生理范围内采样的其他分析物的浓度变化; (3)PS-OLCR对糖浓度的测量具有很高的亚毫摩尔灵敏度。似乎有必要进一步探索PS-OLCR在葡萄糖浓度的无创,敏感和特异监测中的应用。

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