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A Review of Mid-Infrared and Near-Infrared Imaging: Principles, Concepts and Applications in Plant Tissue Analysis

机译:中红外和近红外成像综述:原理,概念和在植物组织分析中的应用

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Plant cells, tissues and organs are composed of various biomolecules arranged as structurally diverse units, which represent heterogeneity at microscopic levels. Molecular knowledge about those constituents with their localization in such complexity is very crucial for both basic and applied plant sciences. In this context, infrared imaging techniques have advantages over conventional methods to investigate heterogeneous plant structures in providing quantitative and qualitative analyses with spatial distribution of the components. Thus, particularly, with the use of proper analytical approaches and sampling methods, these technologies offer significant information for the studies on plant classification, physiology, ecology, genetics, pathology and other related disciplines. This review aims to present a general perspective about near-infrared and mid-infrared imaging/microspectroscopy in plant research. It is addressed to compare potentialities of these methodologies with their advantages and limitations. With regard to the organization of the document, the first section will introduce the respective underlying principles followed by instrumentation, sampling techniques, sample preparations, measurement, and an overview of spectral pre-processing and multivariate analysis. The last section will review selected applications in the literature.
机译:植物细胞,组织和器官由各种生物分子组成,这些生物分子以结构上不同的单位排列,在微观水平上代表着异质性。有关这些成分的分子知识及其在如此复杂的环境中的定位对于基础和应用植物科学都至关重要。在这种情况下,红外成像技术比常规方法更具优势,可以研究异质植物结构,提供成分空间分布的定量和定性分析。因此,特别是通过使用适当的分析方法和采样方法,这些技术为有关植物分类,生理学,生态学,遗传学,病理学和其他相关学科的研究提供了重要信息。这篇综述旨在介绍植物研究中有关近红外和中红外成像/显微光谱的一般观点。致力于比较这些方法的潜力及其优势和局限性。关于文档的组织,第一部分将介绍相应的基本原理,然后介绍仪器,采样技术,样品制备,测量以及光谱预处理和多元分析的概述。最后一部分将回顾文献中的选定应用。

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