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Non-linear normalization and background correction in one-channel cDNA microarray studies.

机译:单通道cDNA微阵列研究中的非线性归一化和背景校正。

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Motivation: Data from one-channel cDNA microarray studies may exhibit poor reproducibility due to spatial heterogeneity, non-linear array-to-array variation and problems in correcting for background. Uncorrected, these phenomena can give rise to misleading conclusions. Results: Spatial heterogeneity may be corrected using two-dimensional loess smoothing (Colantuoni et al., 2002). Non-linear between-array variation may be corrected using an iterative application of one-dimensional loess smoothing. A method for background correction using a smoothing function rather than simple subtraction is described. These techniques promote within-array spatial uniformity and between-array reproducibility. Their application is illustrated using data from a study of the effects of an insulin sensitizer, rosiglitazone, on gene expression in white adipose tissue in diabetic db/db mice. They may also be useful with data from two-channel cDNA microarrays and from oligonucleotide arrays. Availability: R functions for the methods described are available on request from the author. Contact: DEd@novonordisk.com
机译:动机:由于空间异质性,非线性的阵列间差异和背景校正问题,来自单通道cDNA微阵列研究的数据可能表现出较差的重现性。未经纠正,这些现象会引起误导性结论。结果:可以使用二维黄土平滑法校正空间异质性(Colantuoni等,2002)。非线性的阵列间变化可以使用一维黄土平滑的迭代应用来校正。描述了一种使用平滑函数而不是简单相减的背景校正方法。这些技术促进了阵列内空间均匀性和阵列间可重复性。使用研究胰岛素敏化剂罗格列酮对糖尿病db / db小鼠白色脂肪组织中基因表达的影响的数据说明了它们的应用。它们也可用于来自两通道cDNA微阵列和寡核苷酸阵列的数据。可用性:可应作者要求提供用于所述方法的R函数。联系方式:DEd@novonordisk.com

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