The goal of biomarker testing, in the field of personalized medicine, is to guide treatments to achieve the best possible results for each patient. The accurate and reliable identification of everyone’s genome variants is essential for the success of clinical genomics, employing third-generation sequencing. Different variant calling techniques have been used and recommended by both Oxford Nanopore Technologies (ONT) and Nanopore communities. A thorough examination of the variant callers might give critical guidance for third-generation sequencing-based clinical genomics. In this study, two reference genome sample datasets (NA12878) and (NA24385) and the set of high-confidence variant calls provided by the Genome in a Bottle (GIAB) were used...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
<div><p>A diversity of tools is available for identification of variants from genome sequence data. ...
The recent advent of third-generation sequencing technologies brings promise for better characteriza...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Introduction: Whole-genome sequencing using nanopore technologies can uncover structural variants, w...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Whole-genome sequencing (WGS) is becoming widely used in clinical medicine in diagnostic contexts an...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
<div><p>A diversity of tools is available for identification of variants from genome sequence data. ...
The recent advent of third-generation sequencing technologies brings promise for better characteriza...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Introduction: Whole-genome sequencing using nanopore technologies can uncover structural variants, w...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Whole-genome sequencing (WGS) is becoming widely used in clinical medicine in diagnostic contexts an...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
Targeted genomic sequencing (TS) greatly benefits precision oncology by rapidly detecting genetic va...
<div><p>A diversity of tools is available for identification of variants from genome sequence data. ...
The recent advent of third-generation sequencing technologies brings promise for better characteriza...