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Proceedings of the National Academy of Sciences - PNAS, ISSN 0027-8424, 6/2014, Volume 111, Issue 22, pp. 8107 - 8112
The source, timing, and geographical origin of the 1918–1920 pandemic influenza A virus have remained tenaciously obscure for nearly a century, as have the reasons for its unusual severity among young adults... 
H1N1 subtype influenza A virus | Pandemics | Influenza A virus | Swine | Mortality | Childhood | Antibodies | Viruses | Immunity | Age groups | Pathogenicity | Cohort immunity | Phylogeny | Reassortment | Virulence | Science & Technology - Other Topics | Multidisciplinary Sciences | Science & Technology | Influenza A Virus, H1N1 Subtype - immunology | Reassortant Viruses - pathogenicity | Humans | Influenza A virus - genetics | Reassortant Viruses - genetics | Disease Resistance - immunology | Influenza A Virus, H5N1 Subtype - genetics | Influenza A Virus, H3N2 Subtype - genetics | Influenza A Virus, H3N8 Subtype - genetics | Influenza A Virus, H3N8 Subtype - pathogenicity | Influenza A Virus, H7N9 Subtype - immunology | Genetic Variation | Reassortant Viruses - immunology | Influenza A Virus, H7N9 Subtype - pathogenicity | Influenza A virus - pathogenicity | Influenza, Human - mortality | Adult | Influenza A virus - immunology | Influenza, Human - virology | Child | Influenza A Virus, H1N1 Subtype - genetics | Influenza A Virus, H3N2 Subtype - pathogenicity | Influenza Pandemic, 1918-1919 - mortality | Birds | Influenza A Virus, H1N1 Subtype - pathogenicity | Influenza A Virus, H3N2 Subtype - immunology | Biological Evolution | Animals | Influenza A Virus, H3N8 Subtype - immunology | Influenza A Virus, H5N1 Subtype - immunology | Influenza A Virus, H5N1 Subtype - pathogenicity | Aged | Influenza A Virus, H7N9 Subtype - genetics | Causes of | Epidemics | United States | Swine influenza | Phylogenetics | Pathogenesis | Avian flu | Index Medicus | Biological Sciences | pathogenicity | reassortment | phylogeny | virulence | cohort immunity
Journal Article
Emerging infectious diseases, ISSN 1080-6059, 09/2017, Volume 23, Issue 9, pp. 1510 - 1516
...–2013, we quantified the risk for the introduction of low pathogenicity avian influenza virus (LPAIV... 
Infectious Diseases | Immunology | Life Sciences & Biomedicine | Science & Technology | Poultry | Influenza A virus - genetics | Netherlands - epidemiology | Virulence | Risk | Influenza A Virus, H5N1 Subtype - genetics | Meat - virology | Ducks | Farms - organization & administration | Turkeys | Influenza A Virus, H5N1 Subtype - isolation & purification | Disease Outbreaks | Influenza A virus - pathogenicity | Influenza A Virus, H7N1 Subtype - pathogenicity | Poultry Diseases - epidemiology | Influenza A Virus, H7N1 Subtype - isolation & purification | Animals, Wild - virology | Influenza A virus - isolation & purification | Influenza in Birds - epidemiology | Poultry Diseases - virology | Animals | Epidemiological Monitoring | Chickens | Influenza in Birds - virology | Influenza A Virus, H5N1 Subtype - pathogenicity | Influenza A Virus, H7N1 Subtype - genetics | Influenza A virus - classification | Avian influenza | Geospatial data | Avian influenza viruses | Livestock farms | Risk factors | Meat | Index Medicus | influenza | viruses | Low pathogenicity avian influenza virus | zoonoses | Research | respiratory infections | the Netherlands | wild birds | waterways | spatial analysis | Risk for Low Pathogenicity Avian Influenza Virus on Poultry Farms, the Netherlands, 2007–2013 | poultry farms | LPAIV | CVI Virology | Bacteriologie & Epidemiologie | Bacteriology & Epidemiology | CVI Virologie | CVI Bacteriology and Epidemiology | Virologie | Virology | CVI Bacteriologie en Epidemiologie
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 03/2008, Volume 105, Issue 11, pp. 4381 - 4386
... genetics and the pathogenicity of the viruses determined. Viruses containing NS1... 
Proteins | H1N1 subtype influenza A virus | Lungs | Influenza A virus | Virulence | Viruses | Orthomyxoviridae | Amino acids | H5N1 subtype influenza A virus | Genetic mutation | PDZ domains | Influenza reverse genetics | PDZ ligand | H5N1 influenza | Mouse model for influenza | Science & Technology - Other Topics | Multidisciplinary Sciences | Science & Technology | Interferons - biosynthesis | Lung Diseases - metabolism | Virulence Factors - genetics | Humans | Molecular Sequence Data | Influenza A Virus, H5N1 Subtype - genetics | Viral Nonstructural Proteins - chemistry | Recombination, Genetic - genetics | Female | Influenza A Virus, H5N1 Subtype - metabolism | Influenza A Virus, H1N1 Subtype - genetics | Influenza A Virus, H1N1 Subtype - metabolism | Disease Models, Animal | Amino Acid Sequence | Cell Line | Viral Nonstructural Proteins - genetics | Influenza A Virus, H1N1 Subtype - pathogenicity | Virulence Factors - chemistry | Mutation - genetics | Animals | Dogs | Influenza A Virus, H5N1 Subtype - chemistry | Influenza A Virus, H5N1 Subtype - pathogenicity | Viral Nonstructural Proteins - metabolism | Virulence Factors - metabolism | Influenza A Virus, H1N1 Subtype - chemistry | Mice | Mice, Inbred BALB C | Lung Diseases - pathology | Ligand binding (Biochemistry) | Viral proteins | Influenza | Influence | Models | Genetic aspects | Virulence (Microbiology) | Research | Properties | Pathogens | Microbiology | Rodents | Cells | Binding sites | Index Medicus | Biological Sciences | mouse model for influenza | influenza reverse genetics
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 0027-8424, 3/2011, Volume 108, Issue 10, pp. 4164 - 4169
Journal Article
Emerging infectious diseases, ISSN 1080-6059, 10/2018, Volume 24, Issue 10, pp. 1910 - 1913
Journal Article
Nature (London), ISSN 1476-4687, 03/2012, Volume 484, Issue 7395, pp. 519 - 523
The 2009 H1N1 influenza pandemic showed the speed with which a novel respiratory virus can spread and the ability of a generally mild infection to induce severe morbidity and mortality in a subset of the population... 
Science & Technology - Other Topics | Multidisciplinary Sciences | Science & Technology | RNA-Binding Proteins - genetics | Influenza A Virus, H1N1 Subtype - classification | Humans | Orthomyxoviridae Infections - complications | Pneumonia, Viral - etiology | Molecular Sequence Data | Influenza, Human - complications | Scotland - epidemiology | Influenza A Virus, H1N1 Subtype - growth & development | Leukocytes - immunology | Membrane Proteins - deficiency | Influenza A Virus, H3N2 Subtype - growth & development | Lung - virology | England - epidemiology | Gene Deletion | Influenza A virus - pathogenicity | Influenza, Human - mortality | Influenza, Human - virology | Membrane Proteins - metabolism | Cytokines - immunology | Influenza B virus - classification | Influenza A virus - growth & development | Amino Acid Sequence | Lung - pathology | Influenza A Virus, H3N2 Subtype - classification | Membrane Proteins - genetics | Influenza A Virus, H3N2 Subtype - pathogenicity | Mice, Inbred C57BL | Orthomyxoviridae Infections - pathology | Pneumonia, Viral - pathology | RNA-Binding Proteins - chemistry | Influenza B virus - pathogenicity | Influenza A Virus, H1N1 Subtype - pathogenicity | Influenza, Human - epidemiology | Mice, Knockout | Influenza B virus - growth & development | Animals | Orthomyxoviridae Infections - mortality | Membrane Proteins - chemistry | Virus Replication | Pneumonia, Viral - prevention & control | Alleles | Polymorphism, Single Nucleotide - genetics | Mice | Influenza A virus - classification | RNA-Binding Proteins - metabolism | Analysis | Mortality | Swine influenza | United Kingdom | Research | Morbidity | Membrane proteins | Pathology | Pandemics | Lymphocytes | Viruses | Genomes | Avian flu | Blood | Viral infections | Apoptosis | Index Medicus
Journal Article
Cell host & microbe, ISSN 1931-3128, 12/2016, Volume 20, Issue 6, pp. 810 - 821
Constant surveillance of live poultry markets (LPMs) is currently the best way to predict and identify emerging avian influenza viruses (AIVs... 
genesis | prevalence | live poultry markets | H5N6 avian influenza | resassortment | evolution | birds | human infection | Parasitology | Life Sciences & Biomedicine | Microbiology | Science & Technology | Virology | Public Health | Prevalence | Humans | Chickens - virology | Geographic Mapping | Influenza A Virus, H5N1 Subtype - genetics | Influenza A Virus, H9N2 Subtype - pathogenicity | Phylogeny | RNA, Viral - genetics | Genes, Viral - genetics | Poultry - virology | Base Sequence | Influenza A Virus, H7N9 Subtype - pathogenicity | Hemagglutinins | Influenza, Human - virology | Agriculture | Genome, Viral | Influenza A Virus, H5N8 Subtype - pathogenicity | Influenza A Virus, H9N2 Subtype - genetics | Influenza A Virus, H5N8 Subtype - classification | Ducks - virology | Columbidae - virology | Genotype | Influenza, Human - epidemiology | Geese - virology | Influenza in Birds - epidemiology | China - epidemiology | Animals | Epidemiological Monitoring | Influenza in Birds - virology | Neuraminidase | Reassortant Viruses | Influenza A Virus, H5N1 Subtype - pathogenicity | Influenza A Virus, H5N8 Subtype - genetics | Influenza A Virus, H7N9 Subtype - genetics | Cities | Influenza A Virus, H5N8 Subtype - isolation & purification | Evolution, Molecular | Virus diseases | Avian influenza | Cladistic analysis | Analysis | Lectins | Avian influenza viruses | Health aspects | Index Medicus
Journal Article