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Infrared measurements of glucose in peritoneal fluid with a tuneable quantum cascade laser

机译:具有可调谐量子级联激光的腹膜液中葡萄糖的红外测量

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摘要

Fast and accurate continuous glucose monitoring is needed in future systems for control of blood glucose levels in type 1 diabetes patients. Direct spectroscopic measurement of glucose in the peritoneal cavity is an attractive alternative to conventional electrochemical sensors placed subcutaneously. We demonstrate the feasibility of fast glucose measurements in peritoneal fluid using a fibre-coupled tuneable mid-infrared quantum cascade laser. Mid-infrared spectra (1200–925 cm−1) of peritoneal fluid samples from pigs with physiological glucose levels (32–426 mg/dL, or 1.8–23.7 mmol/L) were acquired with a tuneable quantum cascade laser employing both transmission and attenuated total reflection (ATR) spectroscopy. Using partial least-squares regression, glucose concentrations were predicted with mean absolute percentage errors (MAPEs) of 8.7% and 12.2% in the transmission and ATR configurations, respectively. These results show that highly accurate concentration predictions are possible with mid-infrared spectroscopy of peritoneal fluid, and represent a first step towards a miniaturised optical sensor for intraperitoneal continuous glucose monitoring.
机译:在未来的系统中,需要快速准确的连续葡萄糖监测,用于控制1型糖尿病患者的血糖水平。腹膜腔中的葡萄糖的直接光谱测量是对皮下放置的常规电化学传感器的有吸引力的替代方案。我们展示了使用纤维耦合可调的中红外量子级联激光器的腹膜流体快速葡萄糖测量的可行性。通过采用变速器的可调量子级联激光器,获得来自生理葡萄糖水平(32-426mg / d1或1.8-23.7mmol / L)的猪的中红外光谱(1200-925cm-1)的腹膜流体样品。衰减全反射(ATR)光谱。使用局部最小二乘回归,分别预测葡萄糖浓度,分别以8.7%和12.2%的平均绝对百分比误差(MAPES)分别在传输和ATR配置中。这些结果表明,具有腹膜流体中红外光谱的高度精确的浓度预测,并且代表朝向腹膜内连续葡萄糖监测的小型化光学传感器的第一步。

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