Statistical methods for detecting genomic alterations through array-based comparative genomic hybridization (CGH)
This paper proposes two new statistical methods, the standard and smoothed t-statistics, and two tests (t-test and HAS) for detecting genomic alterations in array-based CGH data, demonstrating improved performance in simulations.
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This paper develops statistical methods for identifying genomic copy-number alterations from array-based comparative genomic hybridization (ABCGH), where differentially labeled test and reference DNAs are cohybridized to genomic fragments and analyzed via deviations in fluorescence intensity ratios. The authors propose two statistics—a standard t-statistic and a version with variance smoothed along the genome—and corresponding tests, comparing a conventional t-test to a test based on hybrid adaptive spline (HAS), motivated by spatial correlation, changing ratio variance, and non-Normal data distributions. Simulation results show that the smoothed t-statistic improves performance versus the standard t-statistic, with t-tests performing better for isolated changes and HAS-based tests better for clusters. The paper applies the methods to genomic alteration detection in endometrium samples from women with endometriosis, making it directly relevant to endometriosis through its application to endometrial genomic changes in that condition.
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- europepmc
- last seen: 2026-09-15T06:16:59.523076+00:00
- pubmed
- last seen: 2026-05-13T22:12:38.158000+00:00
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