We develop statistically based methods to detect single nucleotide DNA mutations in next generation sequencing data. Sequencing generates counts of the number of times each base was observed at hundreds of thousands to billions of genome positions in each sample. Using these counts to detect mutations is challenging because mutations may have very low prevalence and sequencing error rates vary dramatically by genome position. The discreteness of sequencing data also creates a difficult multiple testing problem: current false discovery rate methods are designed for continuous data, and work poorly, if at all, on discrete data. We show that a simple randomization technique lets us use continuous false discovery rate methods on discrete data. ...
Performing high throughput sequencing on samples pooled from different individuals is a strategy to ...
DNA sequencing and fluctuation test have been choice methods for studying DNA mutations for decades....
Single-cell sequencing provides a powerful approach for elucidating intratumor heterogeneity by reso...
We develop statistically based methods to detect single nucleotide DNA mutations in next generation ...
We discuss pooling methods of mutation detection for identifying rare mutations. We provide mathemat...
With next-generation DNA sequencing technologies, one can interrogate a specific genomic region of i...
The knowledge of genomic DNA variations in patient samples has a high and increasing value for human...
Background: Detection of somatic mutations is one of the main goals of next generation DNA sequencin...
Recent advances in high-throughput DNA sequencing technologies and associated statistical analyses h...
Background Deep sequencing is a powerful tool for assessing viral genetic diversity. Such experimen...
With next-generation DNA sequencing tech-nologies, one can interrogate a specific genomic region of ...
SummaryBackgroundEvolution depends on mutations: rare errors in the transmission of genetic informat...
BACKGROUND: Sensitive detection of low-frequency single nucleotide variants carries great signifi...
Mutational processes acting on cancer genomes can be traced by investigating mutational signatures. ...
Abstract Background TILLING (Targeting induced local lesions IN genomes) is an efficient reverse gen...
Performing high throughput sequencing on samples pooled from different individuals is a strategy to ...
DNA sequencing and fluctuation test have been choice methods for studying DNA mutations for decades....
Single-cell sequencing provides a powerful approach for elucidating intratumor heterogeneity by reso...
We develop statistically based methods to detect single nucleotide DNA mutations in next generation ...
We discuss pooling methods of mutation detection for identifying rare mutations. We provide mathemat...
With next-generation DNA sequencing technologies, one can interrogate a specific genomic region of i...
The knowledge of genomic DNA variations in patient samples has a high and increasing value for human...
Background: Detection of somatic mutations is one of the main goals of next generation DNA sequencin...
Recent advances in high-throughput DNA sequencing technologies and associated statistical analyses h...
Background Deep sequencing is a powerful tool for assessing viral genetic diversity. Such experimen...
With next-generation DNA sequencing tech-nologies, one can interrogate a specific genomic region of ...
SummaryBackgroundEvolution depends on mutations: rare errors in the transmission of genetic informat...
BACKGROUND: Sensitive detection of low-frequency single nucleotide variants carries great signifi...
Mutational processes acting on cancer genomes can be traced by investigating mutational signatures. ...
Abstract Background TILLING (Targeting induced local lesions IN genomes) is an efficient reverse gen...
Performing high throughput sequencing on samples pooled from different individuals is a strategy to ...
DNA sequencing and fluctuation test have been choice methods for studying DNA mutations for decades....
Single-cell sequencing provides a powerful approach for elucidating intratumor heterogeneity by reso...