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用于监测血清中葡萄糖的中红外量子级联激光光电吸收系统。

Middle infrared, quantum cascade laser optoelectronic absorption system for monitoring glucose in serum.

作者信息

Martin W Blake, Mirov Sergey, Venugopalan Ramakrishna

机构信息

University of Alabama at Birmingham, Department of Biomedical Engineering, 1075 13th St. S, Suite 370, AL 35294, USA.

出版信息

Appl Spectrosc. 2005 Jul;59(7):881-4. doi: 10.1366/0003702054411580.

Abstract

Advances in middle infrared technology are leading researchers beyond the Fourier transform infrared spectrometer and to the quantum cascade laser. While most research focuses on gas-phase detection, recent research explores its use for condensed-phase matter studies. This work investigates its use for monitoring biologically relevant samples of glucose in serum. Samples with physiological glucose concentrations were monitored with a laser at 1036 cm-1. A 0.992 R2 linearity value was observed. In addition, using another laser at 1194 cm-1 as a measure of the background spectroscopic characteristics, a linearity of 0.998 R2 was observed. The average predictive standard errors of the mean (SEM) were 32.5 and 24.7 mg/dL, respectively, for each method. Quantum cascade lasers could be used to develop middle infrared devices for uses beyond the confines of the laboratory.

摘要

中红外技术的进步正引领研究人员超越傅里叶变换红外光谱仪,转向量子级联激光器。虽然大多数研究集中在气相检测,但最近的研究探索了其在凝聚相物质研究中的应用。这项工作研究了其用于监测血清中与生物相关的葡萄糖样本的用途。使用1036 cm-1的激光监测具有生理葡萄糖浓度的样本。观察到线性值R2为0.992。此外,使用1194 cm-1的另一台激光作为背景光谱特征的量度,观察到线性度R2为0.998。每种方法的平均预测平均标准误差(SEM)分别为32.5和24.7 mg/dL。量子级联激光器可用于开发超出实验室范围的中红外设备。

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