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Coupling hyperspectral image data having different spatial resolutions by extending multivariate inter-battery Tucker analysis

机译:通过扩展多元电池间Tucker分析耦合具有不同空间分辨率的高光谱图像数据

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Hyperspectral imaging in various spectral domains is used to perform in situ biochemical analysis of biological material. In the present work, two complementary microspectroscopies-mid-infrared and fluorescence-were coupled to characterise maize stem cell walls. In practice, each microspectroscopy operates with its own resolution, infrared pixels covering a 5 X 5 (mu)m~(2) surface and fluorescence pixels a 1 X 1 (mu)m~(2) area, making the coupling of both spectral ranges through unfolding the spectral images not straightforward. A data structure that preserved the spatial resolution in the two domains was built resulting in a two-way data table with a spatial way and a spectral way, paired to a three-way data table with two spatial ways and a spectral way. The multivariate inter-battery Tucker analysis was investigated in order to give each spectral domain a symmetric role. First, the inter-battery Tucker analysis was applied after averaging the three-way data table under the third mode to obtain a classical two-way data table. This led to work at the lowest resolution. Second, the method has been extended for coupling the three-way data table with the two-way data table. The spectral loadings were similar in both cases showing that phloem cell walls were rich in hydroxycinnamic acids and sclerenchyma cell walls in lignins. The extended version provided with fluorescence scores that preserved the spatial resolution showing more fluorescence intensity in cell junctions. The strong point of the extended inter-battery Tucker analysis is to allow the joint analysis of the two tables without altering their qualities.
机译:各种光谱域中的高光谱成像用于对生物材料进行原位生化分析。在目前的工作中,两个互补的显微分光镜(中红外和荧光)被耦合以表征玉米干细胞壁。实际上,每种显微技术都以其自己的分辨率运行,红外像素覆盖5 X 5μm〜(2)的表面,荧光像素覆盖1 X 1μm〜(2)的区域,从而使两个光谱耦合通过展开光谱图像并不容易。建立了在两个域中保留空间分辨率的数据结构,从而生成了具有空间方式和光谱方式的双向数据表,与具有两种空间方式和光谱方式的三向数据表配对。为了使每个光谱域都具有对称作用,对多元电池间Tucker分析进行了研究。首先,在第三模式下对三路数据表求平均后,进行电池间塔克分析,以获得经典的两路数据表。这导致以最低的分辨率进行工作。第二,已经扩展了将三向数据表与两向数据表耦合的方法。在这两种情况下,光谱负荷都是相似的,表明韧皮部细胞壁富含木质素的羟基肉桂酸和巩膜细胞壁。扩展版本提供了荧光评分,保留了空间分辨率,显示了细胞接头中更多的荧光强度。扩展电池间Tucker分析的优点是可以在不更改其质量的情况下对两个表进行联合分析。

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