Editorial Review
AIDS 2019, 33:1411–1420
Impact Evalution Report 61
Guidance Document
Unite for Children
Journal of Virus Eradication 2016; 2 (Supplement 4): 1–6
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China and Eurasia Forum Quarterly, Volume 6, No. 3 (2008) p. 101-128 © Central Asia-Caucasus Institute & Silk Road Studies Program
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School of Public Health, Fudan University, Key Laboratory of Public Health Safety, Ministry of Education, Shanghai, China
PLOS ONE | www.plosone.org 1, May 2013 | Volume 8 | Issue 5 | e64915
Overview
Rev Panam Salud Publica 40(6), 2016
Pathogen genomic surveillance has become a priority for public health systems in recent years. Genomic sequencing is increasingly being used to characterize pathogens and monitor important public health priorities (e.g. poliovirus, influenza virus, Mycobacterium tuberculosis and Vibrio cholerae, ant...imicrobial resistance (AMR)). The decrease in cost and time of sequencing and the exponential development of bioinformatic pipelines have played a critical role in integrating pathogen genomics into routine public health surveillance. The coronavirus disease 2019 (COVID-19) pandemic has highlighted the role that sequencing plays in the surveillance of infectious diseases. Sequencing facilitates earlier detection, more accurate investigation of outbreaks, closer real-time monitoring of pathogen evolution and tailored development and evaluation of interventions to inform local to global public health decision-making and action. However, there remains a need to coordinate efforts, leverage and link existing surveillance and laboratory networks and capabilities, and systematically integrate genetic sequence data (GSD) with clinical and epidemiological data to strengthen its utility.
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