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P1614: MOLECULAR EPIDEMIOLOGY OF INFLUENZA VIRUS IN PATIENTS WITH HEMATOLOGIC DISORDERS
Опубликовано 2022-06-01Полный текст
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122
Systematic Review of Avian Influenza Virus Infection and Outcomes during Pregnancy
Опубликовано 2025-01-01Предметы: “...avian influenza virus...”
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123
Immunological effects of human tonsil organoids after influenza virus infection
Опубликовано 2024-05-01“...The receptors for influenza virus are widely distributed in human tonsil organoids. ...”
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124
Immunoregulatory functions of natural killer cells in avian influenza virus infection
Опубликовано 2023-11-01Предметы: Полный текст
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125
Myeloid-derived suppressor cells in influenza virus-induced asthma exacerbation
Опубликовано 2024-04-01Предметы: Полный текст
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126
Live poultry vaccines against highly pathogenic avian influenza viruses
Опубликовано 2018-07-01“...The widespread circulation of highly pathogenic avian influenza viruses (HPAIVs) and their occasional transmission to humans creates a constant pandemic threat and leads to significant economic losses in the poultry industry. ...”
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127
Discovering Influenza Virus Neuraminidase Inhibitors via Computational and Experimental Studies
Опубликовано 2024-11-01Полный текст
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128
The Alarming Situation of Highly Pathogenic Avian Influenza Viruses in 2019–2023
Опубликовано 2024-09-01Предметы: “...highly pathogenic avian influenza viruses...”
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129
Implications of the apparent extinction of B/Yamagata-lineage human influenza viruses
Опубликовано 2024-11-01“...Following the onset of the COVID-19 pandemic in 2020, the number of influenza viruses circulating globally fell to historically low numbers. ...”
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130
Predictive evolutionary modelling for influenza virus by site-based dynamics of mutations
Опубликовано 2024-03-01“...Abstract Influenza virus continuously evolves to escape human adaptive immunity and generates seasonal epidemics. ...”
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131
DEVELOPMENT AND EVALUATION OF ANTIGEN CAPTURE ELISA FOR THE DETECTION OF INFLUENZA VIRUS A
Опубликовано 2018-04-01“...The developed AC-ELISA did not show cross-reaction with other viral and bacterial pathogens of poultry, while it was able to detect H9 serotype of avian influenza virus as well as H1 and H3 types of human influenza viruses. ...”
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132
Modular glycosphere assays for high-throughput functional characterization of influenza viruses
Опубликовано 2013“...Such glycospheres were used to selectively capture influenza virus of diverse subtypes from a variety of samples. ...”
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133
Spatiotemporal quantification of cell dynamics in the lung following influenza virus infection
Опубликовано 2013“...Lung injury caused by influenza virus infection is widespread. Understanding lung damage and repair progression post infection requires quantitative spatiotemporal information on various cell types mapping into the tissue structure. ...”
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134
Spatiotemporal quantification of cell dynamics in the lung following influenza virus infection
Опубликовано 2013“...Lung injury caused by influenza virus infection is widespread. Understanding lung damage and repair progression post infection requires quantitative spatiotemporal information on various cell types mapping into the tissue structure. ...”
Полный текст
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135
Pathogenicity Charateristic of Avian Influenza Virus Isolated from Various Poultry
Опубликовано 2008Полный текст
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136
Pathogenicity Charateristic of Avian Influenza Virus Isolated from Various Poultry
Опубликовано 2008Полный текст
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Host ANP32A mediates the assembly of the influenza virus replicase
Опубликовано 2020“...Aquatic birds represent a vast reservoir from which new pandemic influenza A viruses can emerge1. Influenza viruses contain a negative-sense segmented RNA genome that is transcribed and replicated by the viral heterotrimeric RNA polymerase (FluPol) in the context of viral ribonucleoprotein complexes2,3. ...”
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139
The impact of genetic variation on IFITM3 related influenza virus restriction
Опубликовано 2018“...<p>The IFITM3 protein is a prominent restriction factor of influenza virus that has been shown to antagonise the cellular entry of influenza virus. ...”
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140
Enhanced recognition of human NK receptors after influenza virus infection.
Опубликовано 2003“...We therefore suggest that the influenza virus use a novel mechanism for the inhibition of NK cell activity. ...”
Journal article