[HTML][HTML] Rapid identification of pathogens, antibiotic resistance genes and plasmids in blood cultures by nanopore sequencing

AM Taxt, E Avershina, SA Frye, U Naseer, R Ahmad - Scientific reports, 2020 - nature.com
Bloodstream infections (BSI) and sepsis are major causes of morbidity and mortality
worldwide. Blood culture-based diagnostics usually requires 1–2 days for identification of …

Rapid identification of pathogens, antibiotic resistance genes and plasmids in blood cultures by nanopore sequencing

AM Taxt, E Avershina, SA Frye, MU Naseer, R Ahmad - 2020 - munin.uit.no
Bloodstream infections (BSI) and sepsis are major causes of morbidity and mortality
worldwide. Blood culture-based diagnostics usually requires 1–2 days for identification of …

Rapid identification of pathogens, antibiotic resistance genes and plasmids in blood cultures by nanopore sequencing

AM Taxt, E Avershina, SA Frye, U Naseer, R Ahmad - a.storyblok.com
Rapid identification of pathogens, antibiotic resistance genes and plasmids in blood
cultures by nanopore sequencing Page 1 Rapid identification of pathogens, antibiotic …

Rapid identification of pathogens, antibiotic resistance genes and plasmids in blood cultures by nanopore sequencing

AM Taxt, E Avershina, SA Frye, MU Naseer, R Ahmad - 2020 - brage.inn.no
Bloodstream infections (BSI) and sepsis are major causes of morbidity and mortality
worldwide. Blood culture-based diagnostics usually requires 1–2 days for identification of …

Rapid identification of pathogens, antibiotic resistance genes and plasmids in blood cultures by nanopore sequencing

AM Taxt, E Avershina, SA Frye, U Naseer… - Scientific …, 2020 - ui.adsabs.harvard.edu
Bloodstream infections (BSI) and sepsis are major causes of morbidity and mortality
worldwide. Blood culture-based diagnostics usually requires 1-2 days for identification of …

Rapid identification of pathogens, antibiotic resistance genes and plasmids in blood cultures by nanopore sequencing.

AM Taxt, E Avershina, SA Frye, U Naseer… - Scientific …, 2020 - search.ebscohost.com
Bloodstream infections (BSI) and sepsis are major causes of morbidity and mortality
worldwide. Blood culture-based diagnostics usually requires 1–2 days for identification of …

[HTML][HTML] Rapid identification of pathogens, antibiotic resistance genes and plasmids in blood cultures by nanopore sequencing

AM Taxt, E Avershina, SA Frye, U Naseer… - Scientific …, 2020 - ncbi.nlm.nih.gov
Bloodstream infections (BSI) and sepsis are major causes of morbidity and mortality
worldwide. Blood culture-based diagnostics usually requires 1–2 days for identification of …

Rapid identification of pathogens, antibiotic resistance genes and plasmids in blood cultures by nanopore sequencing

AM Taxt, E Avershina, SA Frye, MU Naseer, R Ahmad - 2020 - fhi.brage.unit.no
Bloodstream infections (BSI) and sepsis are major causes of morbidity and mortality
worldwide. Blood culture-based diagnostics usually requires 1–2 days for identification of …

Rapid identification of pathogens, antibiotic resistance genes and plasmids in blood cultures by nanopore sequencing

AM Taxt, E Avershina, SA Frye, U Naseer… - Scientific …, 2020 - pubmed.ncbi.nlm.nih.gov
Bloodstream infections (BSI) and sepsis are major causes of morbidity and mortality
worldwide. Blood culture-based diagnostics usually requires 1-2 days for identification of …

Rapid identification of pathogens, antibiotic resistance genes and plasmids in blood cultures by nanopore sequencing.

AM Taxt, E Avershina, SA Frye, U Naseer… - Scientific Reports, 2020 - europepmc.org
Bloodstream infections (BSI) and sepsis are major causes of morbidity and mortality
worldwide. Blood culture-based diagnostics usually requires 1–2 days for identification of …