Advances in next-generation sequencing technology have enabled whole genome sequencing (WGS) to be widely used for identification of causal variants in a spectrum of genetic-related disorders, and provided new insight into how genetic polymorphisms affect disease phenotypes. The development of different bioinformatics pipelines has continuously improved the variant analysis of WGS data. However, there is a necessity for a systematic performance comparison of these pipelines to provide guidance on the application of WGS-based scientific and clinical genomics. In this study, we evaluated the performance of three variant calling pipelines (GATK, DRAGEN and DeepVariant) using the Genome in a Bottle Consortium, “synthetic-diploid” and simulated ...
As the scientific community continues to discover novel genetic variants associated with human const...
Background: Reproducible detection of inherited variants with whole genome sequencing (WGS) is vital...
The ability to accurately call variants from next-generation sequencing data (NGS) is a necessity fo...
Advances in next-generation sequencing technology have enabled whole genome sequencing (WGS) to be w...
Rapid advances in high-throughput DNA sequencing technologies have enabled the conduct of whole geno...
Accurate and comprehensive variant discovery is extremely important for rare disease diagnostics us...
Background: The processing and analysis of the large scale data generated by next-generation sequenc...
Biological interpretation of the genetic variation enhances our understanding of normal and patholog...
Rapid advancement of next-generation sequencing (NGS) technologies has facilitated the search for ge...
The next-generation sequencing (NGS) technology represents a significant advance in genomics and med...
To date, researchers and clinicians use widely different methods for detecting and reporting human g...
A diversity of tools is available for identification of variants from genome sequence data. Given th...
BACKGROUND: To facilitate the clinical implementation of genomic medicine by next-generation sequenc...
Insertions and deletions (indels) in human genomes are associated with a wide range of phenotypes, i...
[EN]The advent of big data and advanced genomic sequencing technologies has presented challenges in ...
As the scientific community continues to discover novel genetic variants associated with human const...
Background: Reproducible detection of inherited variants with whole genome sequencing (WGS) is vital...
The ability to accurately call variants from next-generation sequencing data (NGS) is a necessity fo...
Advances in next-generation sequencing technology have enabled whole genome sequencing (WGS) to be w...
Rapid advances in high-throughput DNA sequencing technologies have enabled the conduct of whole geno...
Accurate and comprehensive variant discovery is extremely important for rare disease diagnostics us...
Background: The processing and analysis of the large scale data generated by next-generation sequenc...
Biological interpretation of the genetic variation enhances our understanding of normal and patholog...
Rapid advancement of next-generation sequencing (NGS) technologies has facilitated the search for ge...
The next-generation sequencing (NGS) technology represents a significant advance in genomics and med...
To date, researchers and clinicians use widely different methods for detecting and reporting human g...
A diversity of tools is available for identification of variants from genome sequence data. Given th...
BACKGROUND: To facilitate the clinical implementation of genomic medicine by next-generation sequenc...
Insertions and deletions (indels) in human genomes are associated with a wide range of phenotypes, i...
[EN]The advent of big data and advanced genomic sequencing technologies has presented challenges in ...
As the scientific community continues to discover novel genetic variants associated with human const...
Background: Reproducible detection of inherited variants with whole genome sequencing (WGS) is vital...
The ability to accurately call variants from next-generation sequencing data (NGS) is a necessity fo...