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用于水溶液中葡萄糖和乳酸的哈达玛变换测量的固态数字微镜阵列光谱仪。

Solid-state digital micro-mirror array spectrometer for Hadamard transform measurements of glucose and lactate in aqueous solutions.

机构信息

Optical Science and Technology Center and Department of Chemistry, University of Iowa, Iowa City, Iowa 52242, USA.

出版信息

Appl Spectrosc. 2011 Oct;65(10):1170-80. doi: 10.1366/11-06340.

Abstract

A novel solid-state near-infrared spectrometer is presented based on a digital micro-mirror array device (DMD) that is well designed for Hadamard transform spectroscopy. This spectrometer is designed for the collection of transmission spectra over the C-H first overtone region of the near-infrared spectrum (6500-5500 cm(-1)). A spectral resolution of 2.2 nm (~11 cm(-1)) is realized by using a 25 μm diameter linear tungsten filament as the source. Such a thin filament reduces imaging aberrations into the micro-mirror array, thereby enhancing spectral resolution. After passing through the sample, the transmitted radiation is dispersed with a grating before being imaged onto the surface of the DMD. Hadamard transform masks are implemented through the DMD and the reflected light is monitored by a single-element photodiode detector. The analytical utility of this approach is demonstrated through the multivariate quantification of glucose and lactate in binary mixtures composed in an aqueous buffer solution. A signal-to-noise ratio of 35,000 is achieved through these aqueous samples, and the resulting quantitative measurements provide a standard error of prediction of 1.4 and 0.9 mM for glucose and lactate, respectively. The selectivity of the resulting calibration models is established by using both a pure component selectivity analysis as well as analysis of the net analyte signal for each component. These quantitative results from the DMD Hadamard transform spectrometer compare favorably to similar measurements performed with a commercial Fourier transform spectrometer.

摘要

一种基于数字微镜阵列器件(DMD)的新型固态近红外光谱仪被提出,该仪器专门为 Hadamard 变换光谱学设计。该光谱仪用于收集近红外光谱(6500-5500cm-1)中 C-H 倍频区的透射光谱。通过使用直径为 25μm 的线性钨灯丝作为光源,实现了 2.2nm(~11cm-1)的光谱分辨率。这种细灯丝减少了进入微镜阵列的成像像差,从而提高了光谱分辨率。穿过样品后,透射辐射通过光栅进行色散,然后成像到 DMD 的表面。Hadamard 变换掩模通过 DMD 实现,反射光由单个光电二极管探测器监测。通过在水溶液缓冲溶液中组成的二元混合物中对葡萄糖和乳酸的多元定量,证明了这种方法的分析实用性。通过这些水溶液获得了 35000 的信噪比,并且得到的定量测量结果分别为葡萄糖和乳酸的预测标准误差为 1.4 和 0.9mM。通过纯组分选择性分析以及每个组分的净分析物信号分析来建立所得校准模型的选择性。与使用商业傅里叶变换光谱仪进行的类似测量相比,DMD Hadamard 变换光谱仪的这些定量结果表现良好。

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