Abstract Background Pathogen detection in clinical samples based on 16S metagenomic sequencing technology in microbiology laboratories is an important strategy for clinical diagnosis, public health surveillance, and investigations of outbreaks. However, the implementation of the technology is limited by its accuracy and the time required for bioinformatics analysis. Therefore, a simple, standardized, and rapid analysis pipeline from the receipt of clinical samples to the generation of a test report is needed to increase the use of metagenomic analyses in clinical settings. Results We developed a comprehensive bioinformatics analysis pipeline for the identification of pathogens in clinical samples based on 16S metagenomic sequencing data, na...
Abstract: Diagnostic assays for pathogen detection are critical components of public-health monitori...
Traditional microbial detection methods have difficulty meeting the needs of pathogen detection in t...
Metagenomic sequencing is an increasingly popular way of determining microbial diversity from enviro...
Abstract Background Infectious disease is the leading cause of death worldwide, and diagnosis of pol...
Availability of fast, high throughput and low cost whole genome sequencing holds great promise withi...
High throughput sequencing has been proposed as a one-stop solution for diagnostics and molecular ty...
Nearly all infectious agents contain DNA or RNA genomes, making sequencing an attractive approach fo...
International audienceBacteriological diagnosis is traditionally based on culture. However, this met...
<div><p>With the decreasing cost of next-generation sequencing, deep sequencing of clinical samples ...
Rapid, specific, and sensitive identification of microbial pathogens is critical to infectious disea...
Next-generation sequencing (NGS) technologies have become increasingly available for use in the clin...
Diagnostic assays for pathogen detection are critical components of public-health monitoring efforts...
Whole genome sequencing (WGS) provides the highest resolution for genome-based species identificatio...
Abstract: Diagnostic assays for pathogen detection are critical components of public-health monitori...
Traditional microbial detection methods have difficulty meeting the needs of pathogen detection in t...
Metagenomic sequencing is an increasingly popular way of determining microbial diversity from enviro...
Abstract Background Infectious disease is the leading cause of death worldwide, and diagnosis of pol...
Availability of fast, high throughput and low cost whole genome sequencing holds great promise withi...
High throughput sequencing has been proposed as a one-stop solution for diagnostics and molecular ty...
Nearly all infectious agents contain DNA or RNA genomes, making sequencing an attractive approach fo...
International audienceBacteriological diagnosis is traditionally based on culture. However, this met...
<div><p>With the decreasing cost of next-generation sequencing, deep sequencing of clinical samples ...
Rapid, specific, and sensitive identification of microbial pathogens is critical to infectious disea...
Next-generation sequencing (NGS) technologies have become increasingly available for use in the clin...
Diagnostic assays for pathogen detection are critical components of public-health monitoring efforts...
Whole genome sequencing (WGS) provides the highest resolution for genome-based species identificatio...
Abstract: Diagnostic assays for pathogen detection are critical components of public-health monitori...
Traditional microbial detection methods have difficulty meeting the needs of pathogen detection in t...
Metagenomic sequencing is an increasingly popular way of determining microbial diversity from enviro...