Despite years of progress, mutation detection in cancer samples continues to require significant manual review as a final step. Expert review is particularly challenging in cases where tumors are sequenced without matched normal control DNA. Attempts have been made to call somatic point mutations without a matched normal sample by removing well-known germline variants, utilizing unmatched normal controls, and constructing decision rules to classify sequencing errors and private germline variants. With budgetary constraints related to computational and sequencing costs, finding the appropriate number of controls is a crucial step to identifying somatic variants. Our approach utilizes public databases for canonical somatic variants as well as...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Cancer, which affects hundreds of thousands of people worldwide every year and costs billions in tre...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Somatic mutation calling from next-generation sequencing data remains a challenge due to the difficu...
Archival tumor samples represent a rich resource of annotated specimens for translational genomics r...
Funding: Cancer Research UK grant C14303/A17197. Funding for open access charge: University of Cambr...
Somatic mutations promote the transformation of normal cells to cancer. Accurate identification of s...
Somatic mutations promote the transformation of normal cells to cancer. Accurate identification of s...
BackgroundA key step in cancer genome analysis is the identification of somatic mutations in the tum...
Cancer, which affects hundreds of thousands of people worldwide every year and costs billions in tre...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Abstract Background A key step in cancer genome analy...
BackgroundA key step in cancer genome analysis is the identification of somatic mutations in the tum...
Abstract Background A key step in cancer genome analy...
Cancer development and progression is driven by genetic alterations. These alterations include somat...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Cancer, which affects hundreds of thousands of people worldwide every year and costs billions in tre...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Somatic mutation calling from next-generation sequencing data remains a challenge due to the difficu...
Archival tumor samples represent a rich resource of annotated specimens for translational genomics r...
Funding: Cancer Research UK grant C14303/A17197. Funding for open access charge: University of Cambr...
Somatic mutations promote the transformation of normal cells to cancer. Accurate identification of s...
Somatic mutations promote the transformation of normal cells to cancer. Accurate identification of s...
BackgroundA key step in cancer genome analysis is the identification of somatic mutations in the tum...
Cancer, which affects hundreds of thousands of people worldwide every year and costs billions in tre...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Abstract Background A key step in cancer genome analy...
BackgroundA key step in cancer genome analysis is the identification of somatic mutations in the tum...
Abstract Background A key step in cancer genome analy...
Cancer development and progression is driven by genetic alterations. These alterations include somat...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Cancer, which affects hundreds of thousands of people worldwide every year and costs billions in tre...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...