Lambrecht A, Beyer T, Hebestreit K, Mischler R, Petrich W
Fraunhofer Institute for Physical Measurement Techniques, Heidenhofstr. 8, D- 79110 Freiburg, Germany.
Appl Spectrosc. 2006 Jul;60(7):729-36. doi: 10.1366/000370206777887071.
The application of mid-infrared laser spectroscopy to the reagent-free quantification of the concentration of glucose was investigated using cryogenically cooled lead salt lasers or, alternatively, quantum cascade lasers operating at room temperature. The concentration of glucose in aqueous solutions was quantified by means of fiber-based attenuated total reflection (ATR) spectroscopy (fiber-optical evanescent field analysis, FEFA) as well as fiber-based transmission spectroscopy. Both methods have the potential to be utilized by small fiber sensors, which can be inserted into the subcutaneous tissue in order to continuously measure the local concentration of glucose. In our in vitro experiments, noise-equivalent concentrations as low as 10 mg/dL were achieved. The mid-term stability of the measurement schemes was investigated by means of Allan variance analysis. Based on the research presented in this manuscript, an all-room-temperature measurement scheme using quantum cascade lasers, miniaturized fiber-optic sensors, and pyroelectric detectors appears well suited for the continuous monitoring of glucose concentrations at physiological levels.
研究了使用低温冷却的铅盐激光器或在室温下工作的量子级联激光器,将中红外激光光谱应用于无试剂定量葡萄糖浓度。通过基于光纤的衰减全反射(ATR)光谱法(光纤倏逝场分析,FEFA)以及基于光纤的透射光谱法对水溶液中的葡萄糖浓度进行定量。这两种方法都有可能被小型光纤传感器采用,这些传感器可以插入皮下组织以连续测量局部葡萄糖浓度。在我们的体外实验中,实现了低至10mg/dL的噪声等效浓度。通过阿伦方差分析研究了测量方案的中期稳定性。基于本手稿中的研究,一种使用量子级联激光器、小型化光纤传感器和热释电探测器的全室温测量方案似乎非常适合在生理水平上连续监测葡萄糖浓度。