SummaryGenomics and whole genome sequencing (WGS) have the capacity to greatly enhance knowledge and understanding of infectious diseases and clinical microbiology. The growth and availability of bench-top WGS analysers has facilitated the feasibility of genomics in clinical and public health microbiology. Given current resource and infrastructure limitations, WGS is most applicable to use in public health laboratories, reference laboratories, and hospital infection control-affiliated laboratories. As WGS represents the pinnacle for strain characterisation and epidemiological analyses, it is likely to replace traditional typing methods, resistance gene detection and other sequence-based investigations (e.g., 16S rDNA PCR) in the near future...
The accessibility of whole-genome sequencing (WGS) presents the opportunity for national reference l...
Background Next-generation sequencing (NGS) is increasingly being translated into routine public he...
New sequencing technologies have made it possible to generate bacterial genomes at clinically releva...
Genomics and whole genome sequencing (WGS) have the capacity to greatly enhance knowledge and unders...
Genomics and whole genome sequencing (WGS) have the capacity to greatly enhance knowledge and unders...
Whole genome sequencing (WGS) promises to be transformative for the practice of clinical microbiolog...
<p>Clinical samples processed by diagnostic microbiology laboratories commonly pass through up to fo...
Recent advances in DNA sequencing technologies have the potential to transform the field of clinical...
Recent advances in DNA sequencing technologies have the potential to transform the field of clinical...
IMPORTANCE The latest generation of benchtop DNA sequencing platforms can provide an accurate whole-...
Next-generation sequencing (NGS) technologies have become increasingly available for use in the clin...
AbstractThe recent advances in sequencing technologies have given all microbiology laboratories acce...
The recent advances in sequencing technologies have given all microbiology laboratories access to wh...
The recent advances in sequencing technologies have given all microbiology laboratories access to wh...
BACKGROUND: next generation sequencing (NGS) is increasingly being used in clinical microbiology. Li...
The accessibility of whole-genome sequencing (WGS) presents the opportunity for national reference l...
Background Next-generation sequencing (NGS) is increasingly being translated into routine public he...
New sequencing technologies have made it possible to generate bacterial genomes at clinically releva...
Genomics and whole genome sequencing (WGS) have the capacity to greatly enhance knowledge and unders...
Genomics and whole genome sequencing (WGS) have the capacity to greatly enhance knowledge and unders...
Whole genome sequencing (WGS) promises to be transformative for the practice of clinical microbiolog...
<p>Clinical samples processed by diagnostic microbiology laboratories commonly pass through up to fo...
Recent advances in DNA sequencing technologies have the potential to transform the field of clinical...
Recent advances in DNA sequencing technologies have the potential to transform the field of clinical...
IMPORTANCE The latest generation of benchtop DNA sequencing platforms can provide an accurate whole-...
Next-generation sequencing (NGS) technologies have become increasingly available for use in the clin...
AbstractThe recent advances in sequencing technologies have given all microbiology laboratories acce...
The recent advances in sequencing technologies have given all microbiology laboratories access to wh...
The recent advances in sequencing technologies have given all microbiology laboratories access to wh...
BACKGROUND: next generation sequencing (NGS) is increasingly being used in clinical microbiology. Li...
The accessibility of whole-genome sequencing (WGS) presents the opportunity for national reference l...
Background Next-generation sequencing (NGS) is increasingly being translated into routine public he...
New sequencing technologies have made it possible to generate bacterial genomes at clinically releva...