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Liselotte van Asten

Biographic Data

ID6064564
NAMELiselotte van Asten
GIVEN NAMESLiselotte
FAMILY NAMEvan Asten
SIGNATUREVAN ASTEN L
AFFILIATIONSNational Institute for Public Health and the Environment
ORCID0000-0002-4123-7595
VERIFIEDYes
TOTAL WORKS4
TOTAL CITATIONS0
AUTHOR COUNT4
EDITOR COUNT0
FIRST PUBLICATION YEAR2010
LATEST PUBLICATION YEAR2020
H-INDEX0
  • Exploring Vector-Borne Disease Surveillance and Response Systems in Beijing, China

    Open Access•Jerome Lock-Wah-Hoon, Yang Zheng et al.•ARTICLE•International Journal of…•2020

    A robust network of centralised institutions provides the continuity and flexibility needed to adapt and manage possible vector-borne disease threats. Opportunities exist for population-based health promotion and the integration of environment and climate monitoring in vector-borne disease surveillance

  • Estimates of global seasonal influenza-associated respiratory mortality

    Open Access•A Danielle Iuliano, Katherine Roguski et al.•ARTICLE•The Lancet•2018

  • Comparing national infectious disease surveillance systems

    Open Access•Willemijn L Vlieg, Ewout Fanoy et al.•ARTICLE•BMC Public Health•2017

    Despite these differences, the main conclusion is that for the two infections studied, the early warning system in China and the Netherlands are remarkably similar considering their large differences in infectious disease history, population size and geographical setting. Our main recommendations are continued emphasis on international corporation that requires insight into national infectious disease surveillance systems, the usage of a One Heal…

  • Detection of Excess Influenza Severity

    Cees C van den Wijngaard, Liselotte van Asten et al.•ARTICLE•American Journal of Public Health•2010•References: 25

    Objectives. We explored whether excesses in influenza severity can be detected by combining respiratory syndromic hospital and mortality data with data on influenza-like illness (ILI) cases obtained from general practitioners. Methods. To identify excesses in the severity of influenza infections in the population of the Netherlands between 1999 and 2005, we looked for increases in influenza-associated hospitalizations and mortality that were disp…

No prominent works on this page.

  • Detection of Excess Influenza Severity

    Cees C van den Wijngaard, Liselotte van Asten et al.•ARTICLE•American Journal of Public Health•2010•References: 25

    Objectives. We explored whether excesses in influenza severity can be detected by combining respiratory syndromic hospital and mortality data with data on influenza-like illness (ILI) cases obtained from general practitioners. Methods. To identify excesses in the severity of influenza infections in the population of the Netherlands between 1999 and 2005, we looked for increases in influenza-associated hospitalizations and mortality that were disp…

  • Comparing national infectious disease surveillance systems

    Open Access•Willemijn L Vlieg, Ewout Fanoy et al.•ARTICLE•BMC Public Health•2017

    Despite these differences, the main conclusion is that for the two infections studied, the early warning system in China and the Netherlands are remarkably similar considering their large differences in infectious disease history, population size and geographical setting. Our main recommendations are continued emphasis on international corporation that requires insight into national infectious disease surveillance systems, the usage of a One Heal…

  • Estimates of global seasonal influenza-associated respiratory mortality

    Open Access•A Danielle Iuliano, Katherine Roguski et al.•ARTICLE•The Lancet•2018

  • Exploring Vector-Borne Disease Surveillance and Response Systems in Beijing, China

    Open Access•Jerome Lock-Wah-Hoon, Yang Zheng et al.•ARTICLE•International Journal of…•2020

    A robust network of centralised institutions provides the continuity and flexibility needed to adapt and manage possible vector-borne disease threats. Opportunities exist for population-based health promotion and the integration of environment and climate monitoring in vector-borne disease surveillance

Environmental health (4 works) · Medicine (4 works) · Disease (3 works) · China (2 works) · Coronavirus disease 2019 (COVID-19) (2 works) · Data-Driven Disease Surveillance (2 works) · Disease surveillance (2 works) · Geography (2 works) · Infectious disease (medical specialty) (2 works) · Influenza Virus Research Studies (2 works)

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