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首页> 外文期刊>Analytical chemistry >Orthogonal Projections to Latent Structures Discriminant Analysis Modeling on in Situ FT-IR Spectral Imaging of Liver Tissue for Identifying Sources of Variability
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Orthogonal Projections to Latent Structures Discriminant Analysis Modeling on in Situ FT-IR Spectral Imaging of Liver Tissue for Identifying Sources of Variability

机译:肝组织潜在结构的正交投影判别分析建模,用于识别变异性来源的肝组织原位FT-IR光谱成像

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摘要

In this study, the orthogonal projections to latent structures discriminant analysis (OPLS-DA) method was used to assess the in situ chemical composition of two different cell types in mouse liver samples, hepatocytes and erythrocytes. High spatial resolution FT-IR microspectroscopy equipped with a focal plan array (FPA) detector is capable of simultaneously recording over 4000 spectra from 64 X 64 pixels with a maximum spatial resolution of about 5 (mu)m X 5 (mu)m, which allows for the differentiation of individual cells. The main benefit with OPLS-DA lies in the ability to separate predictive variation (between cell type) from variation that is uncorrelated to cell type in order to facilitate understanding of different sources of variation. OPLS-DA was able to differentiate between chemical properties and physical properties (e.g., edge effects). OPLS-DA model interpretation of the chemical features that separated the two cell types clearly highlighted proteins and lipids/bile acids. The modeled variation that was uncorrelated to cell type made up a larger portion of the total variation and displayed strong variability in the amide I region. This could be traced back to a gradient in the high intensity (high-density) areas vs the low intensity areas (close to empty areas) that as a result of normalization had an adverse effect on FT-IR spectral profiles. This highlights that OPLS-DA provides an effective solution to identify different sources of variability, both predictive and uncorrelated, and also facilitates understanding of any sampling, experimental, or preprocessing issues.
机译:在这项研究中,对潜在结构判别分析的正交投影(OPLS-DA)方法用于评估小鼠肝脏样品中两种不同细胞类型(肝细胞和红细胞)的原位化学组成。配备焦平面阵列(FPA)检测器的高空间分辨率FT-IR显微光谱仪能够同时记录来自64 X 64像素的4000多个光谱,最大空间分辨率约为5μmX 5μm。允许单个细胞的分化。 OPLS-DA的主要优点在于能够将预测变异(在细胞类型之间)与与细胞类型不相关的变异区分开来,以便于理解变异的不同来源。 OPLS-DA能够区分化学性质和物理性质(例如边缘效应)。 OPLS-DA模型对分离两种细胞类型的化学特征的解释清楚地突出了蛋白质和脂质/胆汁酸。与细胞类型无关的建模变异占总变异的很大一部分,并在酰胺I区显示出强烈的变异性。这可以追溯到高强度(高密度)区域与低强度区域(接近空白区域)之间的梯度,这是归一化的结果对FT-IR光谱图产生不利影响。这突出表明,OPLS-DA提供了一种有效的解决方案,可以识别预测性和不相关性的不同可变性来源,还可以帮助您理解任何采样,实验或预处理问题。

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