Results 51 to 60 of about 3,585,461 (226)

Seroepidemiologic Study of Pandemic (H1N1) 2009 during Outbreak in Boarding School, England

open access: yesEmerging Infectious Diseases, 2011
We conducted a seroepidemiologic study during an outbreak of pandemic (H1N1) 2009 in a boarding school in England. Overall, 353 (17%) of students and staff completed a questionnaire and provided a serum sample.
Sandra Johnson   +10 more
doaj   +1 more source

Detection of extensive cross-neutralization between pandemic and seasonal A/H1N1 Influenza Viruses using a pseudotype neutralization assay. [PDF]

open access: yesPLoS ONE, 2010
BackgroundCross-immunity between seasonal and pandemic A/H1N1 influenza viruses remains uncertain. In particular, the extent that previous infection or vaccination by seasonal A/H1N1 viruses can elicit protective immunity against pandemic A/H1N1 is ...
Béatrice Labrosse   +7 more
doaj   +1 more source

Pandemic (H1N1) 2009 Cases in Nepal

open access: yesJournal of Nepal Medical Association, 2012
We analyzed the data available in Nepal during this pandemic in order to determine the epidemiological, clinical and virological characteristics of pandemic influenza A in 2009. The test was conducted by real-time Reverse Transcription – Polymerase Chain Reaction on sample from patients with suspected influenza-like illnesses.
N Kandel   +4 more
openaire   +5 more sources

Tropism of Pandemic 2009 H1N1 Influenza a Virus [PDF]

open access: yesFrontiers in Microbiology, 2012
Substitutions at the receptor-binding site of the pandemic H1N1 2009 influenza A virus (H1N1pdm) hemagglutinin (HA) gene may be critical in determining whether a virus binds to human or avian receptors. Previous reports suggest that HA Gly(222) and/or Arg(223) allow viruses to bind preferentially to the α2,3-linked sialic acid found in avian species ...
Ririn eRamadhany   +11 more
openaire   +3 more sources

Real-time characterization of the molecular epidemiology of an influenza pandemic [PDF]

open access: yes, 2013
Early characterization of the epidemiology and evolution of a pandemic is essential for determining the most appropriate interventions. During the 2009 H1N1 influenza A pandemic, public databases facilitated widespread sharing of genetic sequence data ...
Lycett, Samantha J.   +7 more
core   +1 more source

Seroepidemiology of pandemic influenza A (H1N1) 2009 virus infections in Pune, India

open access: yesBMC Infectious Diseases, 2010
Background In India, Pune was one of the badly affected cities during the influenza A (H1N1) 2009 pandemic. We undertook serosurveys among the risk groups and general population to determine the extent of pandemic influenza A (H1N1) 2009 virus infections.
Tandale Babasaheb V   +6 more
doaj   +1 more source

Metal nanostructure‐coupled label‐free localized surface plasmon resonance biosensors for rapid and sensitive disease diagnosis

open access: yesBMEMat, EarlyView.
LSPR biosensing enables rapid, sensitive, and low‐sample‐volume detection of biomarkers, with broad applications in diagnosing cancer, infectious, and chronic diseases. Advances in nanostructure design, micro/nanofabrication, and microfluidic integration have expanded the potential of LSPR sensors in biomedical diagnostics.
Zhaoxin Geng   +4 more
wiley   +1 more source

The comparative clinical course of pregnant and non-pregnant women hospitalised with influenza A(H1N1)pdm09 infection [PDF]

open access: yes, 2012
Introduction: The Influenza Clinical Information Network (FLU-CIN) was established to gather detailed clinical and epidemiological information about patients with laboratory confirmed A(H1N1)pdm09 infection in UK hospitals.
Read, R. C.   +79 more
core   +1 more source

Pandemic (H1N1) 2009 and Seasonal Influenza A (H1N1) Co-infection, New Zealand, 2009

open access: yesEmerging Infectious Diseases, 2010
Co-infection with seasonal influenza A (H1N1) and pandemic (H1N1) 2009 could result in reassortant viruses that may acquire new characteristics of transmission, virulence, and oseltamivir susceptibility.
Matthew Peacey   +10 more
doaj   +1 more source

The Genomic Contributions of Avian H1N1 Influenza A Viruses to the Evolution of Mammalian Strains. [PDF]

open access: yesPLoS ONE, 2015
Among the influenza A viruses (IAVs) in wild aquatic birds, only H1, H2, and H3 subtypes have caused epidemics in humans. H1N1 viruses of avian origin have also caused 3 of 5 pandemics.
Zeynep A Koçer   +4 more
doaj   +1 more source

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