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AN INTRODUCTION TO DNA MICROARRAYS

机译:DNA微阵列简介

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摘要

Oligonucleotide and DNA arrays, or microarrays, have proven to be useful tools to investigate biological function, and are the focal point of an increasing number of studies. However, most papers shed little light on the underlying basis and best use of microarray technology, often leaving a number of important questions unanswered. Under what conditions are microarrays helpful? How should microarray data be analyzed? What data analysis methods should be avoided? Which biological questions can microarrays address? Which biological questions are not best answered by microarrays? Here, we examine the technology itself, the data produced, proper experimental design, data analysis techniques, and experimental validation. These are issues important to all users of DNA arrays, from the mathematician who may have only limited knowledge of the biology behind the technology, to the biologist who is concerned with experimental design and the details of data analysis. Finally, we stress the importance of great experimental care, sample and data triage, well-characterized and rigorous analysis, and the need for appropriate follow-up and verification, especially when using animal or human tissue.
机译:寡核苷酸和DNA阵列或微阵列已被证明是研究生物学功能的有用工具,并且是越来越多研究的重点。但是,大多数论文对微阵列技术的基本原理和最佳使用方法知之甚少,常常使许多重要问题无法得到解答。在什么条件下微阵列有帮助?微阵列数据应如何分析?应避免使用哪种数据分析方法?微阵列可以解决哪些生物学问题?微阵列不能最好地回答哪些生物学问题?在这里,我们检查技术本身,产生的数据,适当的实验设计,数据分析技术以及实验验证。这些问题对于DNA阵列的所有用户来说都是重要的问题,从可能只对该技术背后的生物学知识有限的数学家到关注实验设计和数据分析细节的生物学家。最后,我们强调必须进行严格的实验护理,对样本和数据进行分类,特征明确且严格的分析,尤其是在使用动物或人体组织时,需要进行适当的跟进和验证。

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