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Briefings in Bioinformatics Advance Access published online on November 25, 2009

Briefings in Bioinformatics, doi:10.1093/bib/bbp055
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© The Author 2009. Published by Oxford University Press. For Permissions, please email: journals.permissions@oxfordjournals.org

Detection call algorithms for high-throughput gene expression microarray data

Kellie J. Archer and Sarah E. Reese

Corresponding author. Kellie J. Archer, 730 East Broad Street, P.O. Box 980032, Virginia Commonwealth University, Richmond, VA 23298-0032, USA. Tel: +1-804-827-2039; Fax: +1-804-828-8900; E-mail: kjarcher{at}vcu.edu

Extensive methodological research has been conducted to improve gene expression summary methods. However, in addition to quantitative gene expression summaries, most platforms, including all those examined in the MicroArray Quality Control project, provide a qualitative detection call result for each gene on the platform. These detection call algorithms are intended to render an assessment of whether or not each transcript is reliably measured. In this paper, we review uses of these qualitative detection call results in the analysis of microarray data. We also review the detection call algorithms for two widely used gene expression microarray platforms, Affymetrix GeneChips and Illumina BeadArrays, and more clearly formalize the mathematical notation for the Illumina BeadArray detection call algorithm. Both algorithms result in a P-value which is then used for determining the qualitative detection calls. We examined the performance of these detection call algorithms and default parameters by applying the methods to two spike-in datasets. We show that the default parameters for qualitative detection calls yield few absent calls for high spike-in concentrations. When genes of interest are expected to be present at very low concentrations, spike-in datasets can be useful for appropriately adjusting the tuning parameters for qualitative detection calls.

Keywords: gene expression, microarray, detection calls, present

Submitted: September 4, 2009. Received (in revised form): October 13, 2009.


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