Understanding the molecular basis of cancer requires characterization of its genetic defects. DNA microarray technologies can provide detailed raw data about chromosomal aberrations in tumor samples. Computational analysis is needed (1) to deduce from raw array data actual amplification or deletion events for chromosomal fragments and (2) to distinguish causal chromosomal alterations from functionally neutral ones. We present a comprehensive computational approach, RAE, designed to robustly map chromosomal alterations in tumor samples and assess their functional importance in cancer. To demonstrate the methodology, we experimentally profile copy number changes in a clinically aggressive subtype of soft-tissue sarcoma, pleomorphic liposarcom...
Cancer is the most common genetic disease in humans. It has been estimated that more than 10 million...
In this work, we explore the use of representations in conjunction with DNA microarray technology to...
Genomic DNA copy number alterations are key genetic events in the development and progression of hum...
Understanding the molecular basis of cancer requires characterization of its genetic defects. DNA mi...
Understanding the molecular basis of cancer requires characterization of its genetic defects. DNA mi...
Understanding the molecular basis of cancer requires characterization of its genetic defects. DNA mi...
A large database of copy number profiles from cancer genomes can facilitate the identification of re...
By accurately describing cancer genomes, we may link genomic mutations to phenotypic effects and eve...
By accurately describing cancer genomes, we may link genomic mutations to phenotypic effects and eve...
Cancer evolves due to changes in DNA that give a cell an advantage at the expense of the remaining o...
Cancer is a genetic disease. Step-wise alteration of genes that have a normal function in the cell c...
Cancer is a genetic disease. Step-wise alteration of genes that have a normal function in the cell c...
Background Recent observations point towards the existence of a large number of neighborhoods com...
A powerful way to discover key genes playing causal roles in oncogenesis is to identify genomic regi...
A powerful way to discover key genes playing causal roles in oncogenesis is to identify genomic regi...
Cancer is the most common genetic disease in humans. It has been estimated that more than 10 million...
In this work, we explore the use of representations in conjunction with DNA microarray technology to...
Genomic DNA copy number alterations are key genetic events in the development and progression of hum...
Understanding the molecular basis of cancer requires characterization of its genetic defects. DNA mi...
Understanding the molecular basis of cancer requires characterization of its genetic defects. DNA mi...
Understanding the molecular basis of cancer requires characterization of its genetic defects. DNA mi...
A large database of copy number profiles from cancer genomes can facilitate the identification of re...
By accurately describing cancer genomes, we may link genomic mutations to phenotypic effects and eve...
By accurately describing cancer genomes, we may link genomic mutations to phenotypic effects and eve...
Cancer evolves due to changes in DNA that give a cell an advantage at the expense of the remaining o...
Cancer is a genetic disease. Step-wise alteration of genes that have a normal function in the cell c...
Cancer is a genetic disease. Step-wise alteration of genes that have a normal function in the cell c...
Background Recent observations point towards the existence of a large number of neighborhoods com...
A powerful way to discover key genes playing causal roles in oncogenesis is to identify genomic regi...
A powerful way to discover key genes playing causal roles in oncogenesis is to identify genomic regi...
Cancer is the most common genetic disease in humans. It has been estimated that more than 10 million...
In this work, we explore the use of representations in conjunction with DNA microarray technology to...
Genomic DNA copy number alterations are key genetic events in the development and progression of hum...