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OCTAVVS: A Graphical Toolbox for High-Throughput Preprocessing and Analysis of Vibrational Spectroscopy Imaging Data

机译:Octavvs:一种用于高吞吐量预处理和振动光谱成像数据分析的图形工具箱

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Modern vibrational spectroscopy techniques enable the rapid collection of thousands of spectra in a single hyperspectral image, allowing researchers to study spatially heterogeneous samples at micrometer resolution. A number of algorithms have been developed to correct for effects such as atmospheric absorption, light scattering by cellular structures and varying baseline levels. After preprocessing, spectra are commonly decomposed and clustered to reveal informative patterns and subtle spectral changes. Several of these steps are slow, labor-intensive and require programming skills to make use of published algorithms and code. We here present a free and platform-independent graphical toolbox that allows rapid preprocessing of large sets of spectroscopic images, including atmospheric correction and a new algorithm for resonant Mie scattering with improved speed. The software also includes modules for decomposition into constituent spectra using the popular Multivariate Curve ResolutionAlternating Least Squares (MCR-ALS) algorithm, augmented by region-of-interest selection, as well as clustering and cluster annotation.
机译:现代振动光谱技术能够在单个高光谱图像中快速收集数千个光谱,允许研究人员在千分尺分辨率下研究空间异质样品。已经开发了许多算法以纠正诸如大气吸收,通过细胞结构的光散射和不同的基线水平的效果。在预处理之后,频谱通常分解并聚集以揭示信息性模式和微妙的光谱变化。这些步骤中的几个是缓慢,劳动密集型的,并且需要编程技能来利用发布的算法和代码。我们在这里展示了一个自由平台的图形工具箱,可以快速预处理大型光谱图像,包括大气校正和具有提高速度的谐振米散射的新算法。该软件还包括使用流行的多变量曲线解析型最小二乘(MCR-ALS)算法分解成组成光谱的模块,由兴趣区域选择,以及聚类和群集注释增强。

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