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Influenza A (H1N1) 2009 : impact on Frankfurt in due consideration of health care and public health [PDF]

open access: yes, 2010
Background: In April 2009 a novel influenza A H1N1/2009 virus was identified in Mexico and in the United States which quickly spread around the world.
Harald Bias   +14 more
core   +1 more source

Influenza A(H1N1)pdm09 virus in pigs, Togo, 2013 [PDF]

open access: yesVeterinary Microbiology, 2015
We collected 325 nasal swabs from freshly slaughtered previously healthy pigs from October 2012 through January 2014 in a slaughterhouse near Lomé in Togo. Influenza A virus genome was detected by RT-PCR in 2.5-12.3% of the pooled samples, and results of hemagglutinin subtyping RT-PCR assays showed the virus in all the positive pools to be A(H1N1)pdm09.
Ducatez, Mariette   +2 more
openaire   +5 more sources

A(H1N1)pdm09 influenza infection: vaccine inefficiency

open access: yesOncotarget, 2017
The last influenza pandemic, caused by the swine A(H1N1)pdm09 influenza virus, began in North America at 2009. Since then, the World Health Organization (WHO) recommended integration of the swine-based virus A/California/07/2009 strain in yearly vaccinations. Yet, infections with A(H1N1)pdm09 have continued in subsequent years. The reasons for this are
Friedman, Nehemya   +10 more
openaire   +3 more sources

Public preferences for vaccination and antiviral medicines under different pandemic flu outbreak scenarios. [PDF]

open access: yes, 2015
During the 2009-2010 A(H1N1) pandemic, many people did not seek care quickly enough, failed to take a full course of antivirals despite being authorised to receive them, and were not vaccinated.
Yardley, Lucy   +11 more
core   +2 more sources

Self-reported adverse reactions in 4337 healthcare workers immunizations against novel H1N1 influenza [PDF]

open access: yes, 2011
Purpose: The use of the 2009 H1N1 vaccine has generated much debate concerning safety issues among the general population and physicians. Therefore, we investigated the safety of an inactivated monovalent H1N1 pandemic influenza vaccine Methods: We ...
Harald Bias   +15 more
core   +1 more source

The Mobility of Eurasian Avian-like M2 Is Determined by Residue E79 Which Is Essential for Pathogenicity of 2009 Pandemic H1N1 Influenza Virus in Mice

open access: yesViruses, 2023
In 2009, a novel H1N1 influenza virus caused the first influenza pandemic of the 21st century. Studies have shown that the influenza M gene played important roles in the pathogenicity and transmissibility of the 2009 H1N1 pandemic ((H1N1)pdm09), whilst ...
Rujuan Wu   +11 more
doaj   +1 more source

Neurologic complications of influenza A(H1N1)pdm09 [PDF]

open access: yesNeurology, 2012
We sought to determine the range and extent of neurologic complications due to pandemic influenza A (H1N1) 2009 infection (pH1N1'09) in children hospitalized with influenza.Active hospital-based surveillance in 6 Australian tertiary pediatric referral centers between June 1 and September 30, 2009, for children aged
Khandaker, Gulam   +15 more
openaire   +5 more sources

Post-pandemic seroprevalence of pandemic influenza A (H1N1) 2009 infection (swine flu) among children <18 years in Germany. [PDF]

open access: yes, 2011
We determined antibodies to the pandemic influenza A (H1N1) 2009 virus in children to assess: the incidence of (H1N1) 2009 infections in the 2009/2010 season in Germany, the proportion of subclinical infections and to compare titers in vaccinated and ...
Thomas Mertens   +65 more
core   +2 more sources

Influenza A(H1N1)pdm09 Virus in Pigs, Réunion Island

open access: yesEmerging Infectious Diseases, 2012
During 2009, pandemic influenza A(H1N1)pdm09 virus affected humans on Réunion Island. Since then, the virus has sustained circulation among local swine herds, raising concerns about the potential for genetic evolution of the virus and possible retransmission back to humans of variants with increased virulence.
Cardinale, Eric   +17 more
openaire   +7 more sources

Structural Stability of Influenza A(H1N1)pdm09 Virus Hemagglutinins [PDF]

open access: yesJournal of Virology, 2014
ABSTRACT The noncovalent interactions that mediate trimerization of the influenza hemagglutinin (HA) are important determinants of its biological activities. Recent studies have demonstrated that mutations in the HA trimer interface affect the thermal and pH sensitivities of HA, suggesting a possible impact on vaccine stability ().
Hua, Yang   +9 more
openaire   +2 more sources

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