Amplification, deletion, and loss of heterozygosity of genomic DNA are hallmarks of cancer. In recent years a variety of studies have emerged measuring total chromosomal copy number at increasingly high resolution. Similarly, loss-of-heterozygosity events have been finely mapped using high-throughput genotyping technologies. We have developed a probe-level allele-specific quantitation procedure that extracts both copy number and allelotype information from single nucleotide polymorphism (SNP) array data to arrive at allele-specific copy number across the genome. Our approach applies an expectation-maximization algorithm to a model derived from a novel classification of SNP array probes. This method is the first to our knowledge that is able...
AbstractIn clinical cancer research, high throughput genomic technologies are increasingly used to i...
Submicroscopic changes in chromosomal DNA copy number dosage are common and have been implicated in ...
The progression and clonal development of tumors often involve amplifications and deletions of genom...
Interpretation of allelic copy measurements at polymorphic markers in cancer samples presents distin...
Chromosomal gains and losses comprise an important type of genetic change in tumors, and can now be ...
Loss of heterozygosity (LOH), either with or without accompanying copy-number loss, is a cardinal fe...
We propose a statistical framework, named genoCN, to simultaneously dissect copy number states and g...
In this work, we explore the use of representations in conjunction with DNA microarray technology to...
Gene amplifications and deletions frequently contribute to tumorigenesis. Characterization of these ...
Background: The recent discovery of widespread copy number variation in humans has forced a shift aw...
The progression and clonal development of tumors often involve amplifications and deletions of genom...
We present an allele-specific copy number analysis of the in vivo breast cancer genome. We describe ...
By accurately describing cancer genomes, we may link genomic mutations to phenotypic effects and eve...
We demonstrate the use of representational difference analysis for cloning probes that detect DNA lo...
Motivation: Somatic amplification of particular genomic regions and selection of cellular lineages w...
AbstractIn clinical cancer research, high throughput genomic technologies are increasingly used to i...
Submicroscopic changes in chromosomal DNA copy number dosage are common and have been implicated in ...
The progression and clonal development of tumors often involve amplifications and deletions of genom...
Interpretation of allelic copy measurements at polymorphic markers in cancer samples presents distin...
Chromosomal gains and losses comprise an important type of genetic change in tumors, and can now be ...
Loss of heterozygosity (LOH), either with or without accompanying copy-number loss, is a cardinal fe...
We propose a statistical framework, named genoCN, to simultaneously dissect copy number states and g...
In this work, we explore the use of representations in conjunction with DNA microarray technology to...
Gene amplifications and deletions frequently contribute to tumorigenesis. Characterization of these ...
Background: The recent discovery of widespread copy number variation in humans has forced a shift aw...
The progression and clonal development of tumors often involve amplifications and deletions of genom...
We present an allele-specific copy number analysis of the in vivo breast cancer genome. We describe ...
By accurately describing cancer genomes, we may link genomic mutations to phenotypic effects and eve...
We demonstrate the use of representational difference analysis for cloning probes that detect DNA lo...
Motivation: Somatic amplification of particular genomic regions and selection of cellular lineages w...
AbstractIn clinical cancer research, high throughput genomic technologies are increasingly used to i...
Submicroscopic changes in chromosomal DNA copy number dosage are common and have been implicated in ...
The progression and clonal development of tumors often involve amplifications and deletions of genom...