Next-Generation Sequencing of Infectious Pathogens - PubMed (original) (raw)
Next-Generation Sequencing of Infectious Pathogens
Marta Gwinn et al. JAMA. 2019.
No abstract available
Conflict of interest statement
Conflicts of Interest:
The authors have no conflicts of interest related to this work.
Figures
Figure :
[Slide 1] Workflow transforming pathogen genome sequence data into actionable information. [Slide 2, legend indicating data sources.] [Slide 3] Example: Use of nanopore sequencing to distinguish among possible routes of Ebola virus transmission.
Figure :
[Slide 1] Workflow transforming pathogen genome sequence data into actionable information. [Slide 2, legend indicating data sources.] [Slide 3] Example: Use of nanopore sequencing to distinguish among possible routes of Ebola virus transmission.
Figure :
[Slide 1] Workflow transforming pathogen genome sequence data into actionable information. [Slide 2, legend indicating data sources.] [Slide 3] Example: Use of nanopore sequencing to distinguish among possible routes of Ebola virus transmission.
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References
- U.S. Centers for Disease Control and Prevention. Advanced Molecular Detection. https://www.cdc.gov/amd. Published October 2016. Accessed June 25, 2018.
- American Academy of Microbiology. Applications of clinical microbial next-generation sequencing. https://www.asm.org/index.php/colloquium-reports/item/4462-applications-.... Published February 2016. Accessed June 22, 2018.
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