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Meta-Analysis Combines Affymetrix Microarray Results Across Laboratories

机译:荟萃分析结合了整个实验室的Affymetrix芯片结果

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摘要

With microarray technology becoming more prevalent in recent years, it is now common for several laboratories to employ the same microarray technology to identify differentially expressed genes that are related to the same phenomenon in the same species. Although experimental specifics may be similar, each laboratory will typically produce a slightly different list of statistically significant genes, which calls into question the validity of each gene list (i.e. which list is best). A statistically-based meta-analytic approach to microarray analysis systematically combines results from the different laboratories to provide a single estimate of the degree of differential expression for each gene. This approach provides a more precise view of genes that are of significant interest, while simultaneously allowing for differences between laboratories. The widely-used Affymetrix oligonucleotide array and its software are of particular interest because the results are naturally suited to a meta-analysis. A simulation model based on the Affymetrix platform is developed to examine the adaptive nature of the meta-analytic approach and to illustrate the utility of such an approach in combining microarray results across laboratories.
机译:随着微阵列技术在最近几年变得越来越普遍,现在有几个实验室采用相同的微阵列技术来鉴定与同一物种中相同现象相关的差异表达基因。尽管实验细节可能相似,但每个实验室通常会产生统计意义上略有不同的基因列表,这使每个基因列表(即哪个列表最好)的有效性受到质疑。基于统计的基于荟萃分析的微阵列分析方法系统地结合了来自不同实验室的结果,以提供每个基因差异表达程度的单一估计。这种方法提供了对重要基因的更精确视图,同时允许实验室之间的差异。广泛使用的Affymetrix寡核苷酸阵列及其软件特别受关注,因为其结果自然适合进行荟萃分析。开发了基于Affymetrix平台的仿真模型,以检验元分析方法的适应性,并说明这种方法在跨实验室组合微阵列结果中的实用性。

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