DNA methylation is an epigenetic modification that plays an important role in many biological processes and diseases. Several statistical methods have been proposed to test for DNA methylation differences between conditions at individual cytosine sites, followed by a post hoc aggregation procedure to explore regional differences. While there are benefits to analyzing CpGs individually, there are both biological and statistical reasons to test entire genomic regions for differential methylation. Variability in methylation levels measured by Next-Generation Sequencing (NGS) is often observed across CpG sites in a genomic region. Evaluating meaningful changes in regional level methylation profiles between conditions over noisy site-level measu...
Background. DNA methylation is essential for regulating gene expression, and the changes of DNA meth...
DNA methylation, the reversible addition of methyl groups at CpG dinucleotides, represents an import...
Aim: DNA methylation is a key epigenetic mechanism regulating gene expression. Identifying different...
[[abstract]]Advances in biotechnology have resulted in large-scale studies of DNA methylation. A dif...
<div><p>Advances in biotechnology have resulted in large-scale studies of DNA methylation. A differe...
Advances in biotechnology have resulted in large-scale studies of DNA methylation. A differentially ...
Abstract Background DNA methylation has long been kno...
Advances in biotechnology have resulted in large-scale studies of DNA methylation. A differentially ...
Abstract Background DNA methylation is an epigenetic process that regulates gene expression. Methyla...
Background: DNA methylation is an epigenetic process that regulates gene expression. Methylation can...
Abstract Background Single-probe analyses in epigenome-wide association studies (EWAS) have identifi...
Motivation: Researchers in genomics are increasingly interested in epigenetic factors such as DNA me...
DNA methylation is an epigenetic modification that occurs when a methyl group is added to cytosine s...
BACKGROUND: DNA methylation profiling reveals important differentially methylated regions (DMRs) of ...
Background High-throughput DNA methylation arrays are likely to accelerate the pace of methylation b...
Background. DNA methylation is essential for regulating gene expression, and the changes of DNA meth...
DNA methylation, the reversible addition of methyl groups at CpG dinucleotides, represents an import...
Aim: DNA methylation is a key epigenetic mechanism regulating gene expression. Identifying different...
[[abstract]]Advances in biotechnology have resulted in large-scale studies of DNA methylation. A dif...
<div><p>Advances in biotechnology have resulted in large-scale studies of DNA methylation. A differe...
Advances in biotechnology have resulted in large-scale studies of DNA methylation. A differentially ...
Abstract Background DNA methylation has long been kno...
Advances in biotechnology have resulted in large-scale studies of DNA methylation. A differentially ...
Abstract Background DNA methylation is an epigenetic process that regulates gene expression. Methyla...
Background: DNA methylation is an epigenetic process that regulates gene expression. Methylation can...
Abstract Background Single-probe analyses in epigenome-wide association studies (EWAS) have identifi...
Motivation: Researchers in genomics are increasingly interested in epigenetic factors such as DNA me...
DNA methylation is an epigenetic modification that occurs when a methyl group is added to cytosine s...
BACKGROUND: DNA methylation profiling reveals important differentially methylated regions (DMRs) of ...
Background High-throughput DNA methylation arrays are likely to accelerate the pace of methylation b...
Background. DNA methylation is essential for regulating gene expression, and the changes of DNA meth...
DNA methylation, the reversible addition of methyl groups at CpG dinucleotides, represents an import...
Aim: DNA methylation is a key epigenetic mechanism regulating gene expression. Identifying different...