<div><p>Due to the growth of interest in single-cell genomics, computational methods for distinguishing true variants from artifacts are highly desirable. While special attention has been paid to false positives in variant or mutation calling from single-cell sequencing data, an equally important but often neglected issue is that of false negatives derived from allele dropout during the amplification of single cell genomes. In this paper, we propose a simple strategy to reduce the false negatives in single-cell sequencing data analysis. Simulation results show that this method is highly reliable, with an error rate of 4.94×10<sup>-5</sup>, which is orders of magnitude lower than the expected false negative rate (~34%) estimated from a singl...
Background: The literature on single cell genomic analysis on the DNA level is conflicting regarding...
Somatic single nucleotide variants (SNVs) are mutations resulting from the substitution of a single ...
Single-cell sequencing is a promising technology that can address cancer cell evolution by identifyi...
Due to the growth of interest in single-cell genomics, computational methods for distinguish-ing tru...
Although all cells in a human body are descendant from a single cell –i.e. the zygote– the genetic c...
Single cell genomics offers an unprecedented resolution to interrogate genetic heterogeneity in a pa...
Single-cell sequencing provides a powerful approach for elucidating intratumor heterogeneity by reso...
Tumours are heterogeneous populations of cells that evolve dynamically in response to selective pres...
Abstract Background Querying cancer genomes at single-cell resolution is expected to provide a power...
Tumor cells have heterogeneous genotypes, which drives progression and treatment resistance. Such ge...
Abstract Background The current literature on single cell genomic analyses on the DNA level is confl...
Single-cell DNA sequencing (scDNA-seq) helps researchers study the evolutionary process of cancer. I...
MOTIVATION: In recent years, the well-known Infinite Sites Assumption has been a fundamental feature...
Detection of genomic changes at single cell resolution is important for characterizing genetic heter...
Variation in DNA sequence influences change in one or many molecular intermediates in a functional p...
Background: The literature on single cell genomic analysis on the DNA level is conflicting regarding...
Somatic single nucleotide variants (SNVs) are mutations resulting from the substitution of a single ...
Single-cell sequencing is a promising technology that can address cancer cell evolution by identifyi...
Due to the growth of interest in single-cell genomics, computational methods for distinguish-ing tru...
Although all cells in a human body are descendant from a single cell –i.e. the zygote– the genetic c...
Single cell genomics offers an unprecedented resolution to interrogate genetic heterogeneity in a pa...
Single-cell sequencing provides a powerful approach for elucidating intratumor heterogeneity by reso...
Tumours are heterogeneous populations of cells that evolve dynamically in response to selective pres...
Abstract Background Querying cancer genomes at single-cell resolution is expected to provide a power...
Tumor cells have heterogeneous genotypes, which drives progression and treatment resistance. Such ge...
Abstract Background The current literature on single cell genomic analyses on the DNA level is confl...
Single-cell DNA sequencing (scDNA-seq) helps researchers study the evolutionary process of cancer. I...
MOTIVATION: In recent years, the well-known Infinite Sites Assumption has been a fundamental feature...
Detection of genomic changes at single cell resolution is important for characterizing genetic heter...
Variation in DNA sequence influences change in one or many molecular intermediates in a functional p...
Background: The literature on single cell genomic analysis on the DNA level is conflicting regarding...
Somatic single nucleotide variants (SNVs) are mutations resulting from the substitution of a single ...
Single-cell sequencing is a promising technology that can address cancer cell evolution by identifyi...