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样品、谱图与数学——开发稳健、可靠的振动光谱应用的关键支柱。

The Sample, the Spectra and the Maths-The Critical Pillars in the Development of Robust and Sound Applications of Vibrational Spectroscopy.

机构信息

Centre for Nutrition and Food Sciences, Queensland Alliance for Agriculture and Food Innovation (QAAFI), The University of Queensland, Brisbane, Queensland 4072, Australia.

ARC Training Centre for Uniquely Australian Foods, Queensland Alliance for Agriculture and Food Innovation, The University of Queensland, Block 10, Level 1, 39 Kessels Rd, Coopers Plains Qld 4108, Australia.

出版信息

Molecules. 2020 Aug 12;25(16):3674. doi: 10.3390/molecules25163674.

Abstract

The last two decades have witnessed an increasing interest in the use of the so-called rapid analytical methods or high throughput techniques. Most of these applications reported the use of vibrational spectroscopy methods (near infrared (NIR), mid infrared (MIR), and Raman) in a wide range of samples (e.g., food ingredients and natural products). In these applications, the analytical method is integrated with a wide range of multivariate data analysis (MVA) techniques (e.g., pattern recognition, modelling techniques, calibration, etc.) to develop the target application. The availability of modern and inexpensive instrumentation together with the access to easy to use software is determining a steady growth in the number of uses of these technologies. This paper underlines and briefly discusses the three critical pillars-the sample (e.g., sampling, variability, etc.), the spectra and the mathematics (e.g., algorithms, pre-processing, data interpretation, etc.)-that support the development and implementation of vibrational spectroscopy applications.

摘要

过去二十年见证了人们对所谓快速分析方法或高通量技术的兴趣日益增加。这些应用中的大多数都报告了在广泛的样本中使用振动光谱方法(近红外(NIR)、中红外(MIR)和拉曼)。在这些应用中,分析方法与广泛的多元数据分析(MVA)技术(例如,模式识别、建模技术、校准等)相结合,以开发目标应用。现代且价格低廉的仪器的可用性以及易于使用的软件的访问权限,决定了这些技术的使用数量正在稳步增长。本文强调并简要讨论了三个关键支柱——样本(例如,采样、变异性等)、光谱和数学(例如,算法、预处理、数据解释等)——它们支持振动光谱应用的开发和实施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1cd/7466136/1cb0e9b62adb/molecules-25-03674-g001.jpg

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