Search Results - (Author, Cooperation:M. A. Dillon)
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1D. C. Ekiert ; A. K. Kashyap ; J. Steel ; A. Rubrum ; G. Bhabha ; R. Khayat ; J. H. Lee ; M. A. Dillon ; R. E. O'Neil ; A. M. Faynboym ; M. Horowitz ; L. Horowitz ; A. B. Ward ; P. Palese ; R. Webby ; R. A. Lerner ; R. R. Bhatt ; I. A. Wilson
Nature Publishing Group (NPG)
Published 2012Staff ViewPublication Date: 2012-09-18Publisher: Nature Publishing Group (NPG)Print ISSN: 0028-0836Electronic ISSN: 1476-4687Topics: BiologyChemistry and PharmacologyMedicineNatural Sciences in GeneralPhysicsKeywords: Animals ; Antibodies, Neutralizing/*chemistry/genetics/*immunology ; Antibodies, Viral/*chemistry/genetics/*immunology ; Antibody Specificity/genetics/*immunology ; Antigens, Viral/chemistry/immunology ; Binding Sites ; Complementarity Determining Regions/chemistry/genetics/immunology ; Conserved Sequence ; Cross Reactions/genetics/immunology ; Crystallography, X-Ray ; Enzyme-Linked Immunosorbent Assay ; Epitopes/chemistry/immunology ; Hemagglutinin Glycoproteins, Influenza Virus/chemistry/immunology ; Influenza A Virus, H1N1 Subtype/chemistry/immunology ; Influenza A Virus, H3N2 Subtype/chemistry/immunology ; Influenza A virus/chemistry/*classification/*immunology ; Influenza Vaccines/immunology ; Mice ; Models, Molecular ; Molecular Sequence Data ; Mutation/genetics ; Orthomyxoviridae Infections/immunology/prevention & control/virology ; Protein ConformationPublished by: -
2Tanaka, H. ; Boesten, L. ; Kimura, M. ; Dillon, M. A. ; Spence, D.
College Park, Md. : American Institute of Physics (AIP)
Published 1990Staff ViewISSN: 1089-7690Source: AIP Digital ArchiveTopics: PhysicsChemistry and PharmacologyNotes: The electron energy loss spetra of silane was recorded at several impact energies and angles. It is concluded that the lowest triplet state of silane is formed from configuration mixing of the 4s Rydberg state with a valence state of the same symmetry.(AIP)Type of Medium: Electronic ResourceURL: -
3Spence, David ; Tanaka, Hiroshi ; Dillon, M. A.
[S.l.] : American Institute of Physics (AIP)
Published 1987Staff ViewISSN: 1089-7550Source: AIP Digital ArchiveTopics: PhysicsNotes: Using the technique of high-incident-energy forward-scattering electron energy-loss spectroscopy, we have derived the relative photoabsorption cross section of xenon difluoride from 150 to 275 nm. Normalization of our data to two previous measurements which used conventional photoabsorption techniques shows good agreement with an early measurement over the entire spectral range, but significant disagreement with more recent data for wavelengths greater than 175 nm.Type of Medium: Electronic ResourceURL: