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Evaluation of Kromoscopy: resolution of glucose and urea

机译:透视检查的评估:葡萄糖和尿素的分离

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摘要

Kromoscopy involves the transmission of a broad band of electromagnetic radiation through the sample of interest. The transmitted light is collected and divided evenly into four detector channels with complementary bandpass functions. This optical configuration provides high signal-to-noise ratios that are ideal for analytical measurements. The molecular basis of the four-channel response is critical, because it directly influences selectivity of the measurement and, therefore, the feasibility of applications in complex sample matrices.. Selectivity of the Kromoscopic signal is demonstrated by resolution of glucose and urea with four channels of information collected over the 800-1300-nm near-infrared spectral region. Analysis of the individual channel responses indicates that the displacement of water from the optical path by the dissolution of solute is a major component of the Kromoscopic measurement in this spectral region. Nevertheless, significant differences are observed in channel responses for glucose and urea. A three-dimensional vector plot of the data highlights these differences and reveals unique vector directions for glucose and urea. This difference in direction of the response vectors represents the principal basis for distinguishing glucose and urea dissolved in aqueous solutions.
机译:缆线镜检查涉及通过目标样品的宽带电磁辐射传输。收集透射的光并将其平均分为具有互补带通功能的四个检测器通道。这种光学配置可提供高信噪比,非常适合分析测量。四通道响应的分子基础至关重要,因为它直接影响测量的选择性,因此也影响了在复杂样品基质中应用的可行性。通过四通道葡萄糖和尿素的分辨率证明了检波镜信号的选择性。在800-1300-nm近红外光谱区域收集的信息。对单个通道响应的分析表明,由于溶质的溶解,水从光路中的位移是该光谱区域内检影测量的主要组成部分。然而,在葡萄糖和尿素的通道响应中观察到显着差异。数据的三维矢量图突出显示了这些差异,并揭示了葡萄糖和尿素的独特矢量方向。响应向量方向上的这种差异代表了区分溶解在水溶液中的葡萄糖和尿素的主要基础。

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