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Journal of Virology|May 1, 1994
Reverse genetics provides direct evidence for a correlation of hemagglutinin cleavability and virulence of an avian influenza A virusT Horimoto, Y KawaokaJournal of Clinical Microbiology|March 1, 1995
Direct reverse transcriptase PCR to determine virulence potential of influenza A viruses in birdsT Horimoto, Y KawaokaTrends in Microbiology|October 13, 2001
The pathogenesis of Ebola hemorrhagic feverA Takada, Y KawaokaProceedings of the National Academy of Sciences of the United States of America|August 26, 1998
A novel mechanism for the acquisition of virulence by a human influenza A virusH Goto, Y KawaokaVirology|January 10, 1995
Molecular changes in virulent mutants arising from avirulent avian influenza viruses during replication in 14-day-old embryonated eggsT Horimoto, Y KawaokaEuro Surveillance : Bulletin Europeen Sur Les Maladies Transmissibles = European Communicable Disease Bulletin|April 19, 2013
Genetic analysis of novel avian A(H7N9) influenza viruses isolated from patients in China, February to April 2013T Kageyama, S Fujisaki, E Takashita, et al.Journal of Virology|August 1, 1989
Interplay between carbohydrate in the stalk and the length of the connecting peptide determines the cleavability of influenza virus hemagglutininY Kawaoka, R G WebsterProceedings of the National Academy of Sciences of the United States of America|January 1, 1988
Sequence requirements for cleavage activation of influenza virus hemagglutinin expressed in mammalian cellsY Kawaoka, R G WebsterArchives of Virology|January 1, 1989
Origin of the hemagglutinin on A/Equine/Johannesburg/86 (H3N8): the first known equine influenza outbreak in South AfricaY Kawaoka, R G WebsterJournal of Virology|February 1, 1993
Biologic importance of neuraminidase stalk length in influenza A virusM R Castrucci, Y KawaokaPageof 55