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List of bibliographic references indexed by model

Number of relevant bibliographic references: 46.
Ident.Authors (with country if any)Title
000128 (2018-03) V. Busignies [France] ; G. Simon [France] ; G. Mollereau [France] ; O. Bourry [France] ; V. Mazel [France] ; Manuel Rosa-Calatrava [France] ; P. Tchoreloff [France]Development and pre-clinical evaluation in the swine model of a mucosal vaccine tablet for human influenza viruses: A proof-of-concept study
000160 (2018) Daniil A. Korenkov [Russie] ; Karen L. Laurie [Australie] ; Patrick C. Reading [Australie] ; Louise A. Carolan [Australie] ; Kok Fei Chan [Australie] ; Irina I. Isakova-Sivak [Russie] ; Tatiana A. Smolonogina [Russie] ; Kanta Subbarao [Australie] ; Ian G. Barr [Australie] ; Julie Villanueva [États-Unis] ; Svetlana Shcherbik [États-Unis] ; Tatiana Bousse [États-Unis] ; Larisa G. Rudenko [Russie]Safety, immunogenicity and protection of A(H3N2) live attenuated influenza vaccines containing wild-type nucleoprotein in a ferret model.
000334 (2017) Özden O. Dalg Ç [Canada] ; Osman Y. Özalt N [États-Unis] ; William A. Ciccotelli [Canada] ; Fatih S. Erenay [Canada]Deriving effective vaccine allocation strategies for pandemic influenza: Comparison of an agent-based simulation and a compartmental model
000425 (2016) Veronika I. Zarnitsyna [États-Unis] ; Andreas Handel [États-Unis] ; Sean R. Mcmaster [États-Unis] ; Sarah L. Hayward [États-Unis] ; Jacob E. Kohlmeier [États-Unis] ; Rustom Antia [États-Unis]Mathematical Model Reveals the Role of Memory CD8 T Cell Populations in Recall Responses to Influenza
000458 (2016) Irina Isakova-Sivak [Russie] ; Daniil Korenkov [Russie] ; Tatiana Smolonogina [Russie] ; Tatiana Tretiak [Russie] ; Svetlana Donina [Russie] ; Andrey Rekstin [Russie] ; Anatoly Naykhin [Russie] ; Svetlana Shcherbik [États-Unis] ; Nicholas Pearce [États-Unis] ; Li-Mei Chen [États-Unis] ; Tatiana Bousse [États-Unis] ; Larisa Rudenko [Russie]Comparative studies of infectivity, immunogenicity and cross-protective efficacy of live attenuated influenza vaccines containing nucleoprotein from cold-adapted or wild-type influenza virus in a mouse model
000466 (2016) Yasushi Itoh [Japon]Translational research on influenza virus infection using a nonhuman primate model
000581 (2015) Yu Qiu [Belgique] ; Karl De Hert [Belgique] ; Kristien Van Reeth [Belgique]Cross-protection against European swine influenza viruses in the context of infection immunity against the 2009 pandemic H1N1 virus: studies in the pig model of influenza
000741 (2014) Irina Isakova-Sivak [États-Unis, Russie] ; Li-Mei Chen [États-Unis] ; Melissa Bourgeois [États-Unis] ; Yumiko Matsuoka [États-Unis] ; J. Theo M. Voeten [Pays-Bas] ; Jacco G. M. Heldens [Pays-Bas] ; Han Van Den Bosch [Pays-Bas] ; Alexander Klimov [États-Unis] ; Larisa Rudenko [Russie] ; Nancy J. Cox [États-Unis] ; Ruben O. Donis [États-Unis]Characterization of Reverse Genetics-Derived Cold-Adapted Master Donor Virus A/Leningrad/134/17/57 (H2N2) and Reassortants with H5N1 Surface Genes in a Mouse Model
000749 (2014) Jesse D. Bloom [États-Unis]An Experimentally Determined Evolutionary Model Dramatically Improves Phylogenetic Fit
000B11 (2012) R. S. Mcdonald [États-Unis] ; A. R. Sambol [États-Unis] ; B. K. Heimbuch [États-Unis] ; T. L. Brown [États-Unis] ; S. H. Hinrichs [États-Unis] ; J. D. Wander [États-Unis]Proportional mouse model for aerosol infection by influenza
000C06 (2011) April Spesock [États-Unis] ; Meghana Malur [États-Unis] ; M. Jaber Hossain [États-Unis] ; Li-Mei Chen [États-Unis] ; Bradley L. Njaa [États-Unis] ; Charles T. Davis [États-Unis] ; Aleksandr S. Lipatov [États-Unis] ; Ian A. York [États-Unis] ; Robert M. Krug [États-Unis] ; Ruben O. Donis [États-Unis]The Virulence of 1997 H5N1 Influenza Viruses in the Mouse Model Is Increased by Correcting a Defect in Their NS1 Proteins ▿
000C69 (2011) Charalambos Chrysostomou [Royaume-Uni] ; Huseyin Seker ; Nizamettin AydinEffects of windowing and zero-padding on Complex Resonant Recognition Model for protein sequence analysis.
000C79 (2011) J. Brian Kimble [États-Unis] ; Erin Sorrell [États-Unis] ; Hongxia Shao [États-Unis] ; Philip L. Martin [États-Unis] ; Daniel Roberto Perez [États-Unis]Compatibility of H9N2 avian influenza surface genes and 2009 pandemic H1N1 internal genes for transmission in the ferret model
000D34 (2011) Charalambos Chrysostomou [Royaume-Uni] ; Huseyin Seker [Royaume-Uni] ; Nizamettin Aydin [Turquie]Investigation into the Effects of an Individual Amino Acid on Protein Function by Means of a Resonant Recognition Model
000D54 (2011) A. Fierro [Italie] ; A. Liccardo [Italie]A simple stochastic lattice gas model for H1N1 pandemic. Application to the Italian epidemiological data
000D75 (2010-07) Marine Habart Corlosquet [France]Taking into account the pandemic risk in a partial internal model
000D86 (2010) Michela Rigoni ; Anna Toffan ; Elisabetta Viale ; Marzia Mancin ; Filippo Cilloni ; Elena Bertoli ; Angela Salomoni ; Sabrina Marciano ; Adelaide Milani ; Bianca Zecchin ; Ilaria Capua ; Giovanni CattoliThe mouse model is suitable for the study of viral factors governing transmission and pathogenesis of highly pathogenic avian influenza (HPAI) viruses in mammals
000E17 (2010) Hailong Guo ; Félix Santiago ; Kris Lambert ; Toru Takimoto ; David J. TophamT Cell-Mediated Protection against Lethal 2009 Pandemic H1N1 Influenza Virus Infection in a Mouse Model ▿
000E84 (2010) Dennis L. Chao [États-Unis] ; M. Elizabeth Halloran [États-Unis] ; Valerie J. Obenchain [États-Unis] ; Ira M. Longini [États-Unis]FluTE, a Publicly Available Stochastic Influenza Epidemic Simulation Model
000F44 (2010) J. Theo M. Voeten [Pays-Bas] ; Irina V. Kiseleva [Pays-Bas, Russie] ; Harrie L. Glansbeek [Pays-Bas] ; Stephanie M. C. Basten [Pays-Bas] ; Sandra K. M. Drieszen-Van Der Cruijsen [Pays-Bas] ; Larisa G. Rudenko [Russie] ; Han Van Den Bosch [Pays-Bas] ; Jacco G. M. Heldens [Pays-Bas]Master donor viruses A/Leningrad/134/17/57 (H2N2) and B/USSR/60/69 and derived reassortants used in live attenuated influenza vaccine (LAIV) do not display neurovirulent properties in a mouse model
000F75 (2010) Martin Ehler [États-Unis] ; Vinodh Rajapakse [États-Unis] ; Barry Zeeberg [États-Unis] ; Brian Brooks [États-Unis] ; Jacob Brown [États-Unis] ; Wojciech Czaja [États-Unis] ; Robert F. Bonner [États-Unis]Analysis of Temporal-spatial Co-variation within Gene Expression Microarray Data in an Organogenesis Model
000F88 (2010) J. Theo [Pays-Bas] ; M. Voeten [Pays-Bas] ; Irina V. Kiseleva [Russie] ; Harrie L. Glansbeek [Pays-Bas] ; Stephanie M. C. Basten [Pays-Bas] ; Sandra K. M. Drieszen-Van Der Cruijsen [Pays-Bas] ; Larisa G. Rudenko [Russie] ; Han Van Den Bosch [Pays-Bas] ; Jacco G. M. Heldens [Pays-Bas]Master donor viruses A/Leningrad/134/17/57 (H2N2) and B/USSR/60/69 and derived reassortants used in live attenuated influenza vaccine (LAIV) do not display neurovirulent properties in a mouse model
000F97 (2009-11) Vittoria Colizza [Italie] ; Alessandro Vespignani [Italie] ; Nicola Perra [États-Unis] ; Chiara Poletto [Italie] ; Bruno Goncalves [États-Unis] ; Hao Hu [États-Unis] ; Duygu Balcan [États-Unis] ; Daniela Paolotti [Italie] ; Wouter Van Den Broeck [Italie] ; Michele Tizzoni [Italie] ; Paolo Bajardi [France] ; Jose J. Ramasco [Italie]Estimate of Novel Influenza A/H1N1 cases in Mexico at the early stage of the pandemic with a spatially structured epidemic model
001071 (2009) Cristina Lanzas [États-Unis] ; Patrick Ayscue [États-Unis] ; Renata Ivanek ; Yrjö T. Gröhn [États-Unis]Model or meal? Farm animal populations as models for infectious diseases of humans
001127 (2009) Tomoko Morimoto ; Hirofumi IshikawaAssessment of intervention strategies against a novel influenza epidemic using an individual-based model
001332 (2008) Beixing Liu [Japon, République populaire de Chine] ; Md. Jaber Hossain [Japon] ; Isamu Mori [Japon] ; Yoshinobu Kimura [Japon]Evaluation of a virus derived from MDCK cells infected persistently with influenza A virus as a potential live‐attenuated vaccine candidate in the mouse model
001343 (2008) Xiaoping Xiong [États-Unis] ; James M. Boyett [États-Unis] ; Robert G. Webster [États-Unis] ; Juergen Stech [Allemagne]A stochastic model for estimation of mutation rates in multiple-replication proliferation processes
001370 (2007) J. Mcvernon ; Ct Mccaw ; Jd MathewsModel answers or trivial pursuits? The role of mathematical models in influenza pandemic preparedness planning
001376 (2007) Hui-Ling Yen ; Aleksandr S. Lipatov ; Natalia A. Ilyushina ; Elena A. Govorkova ; John Franks ; Neziha Yilmaz ; Alan Douglas ; Alan Hay ; Scott Krauss ; Jerold E. Rehg ; Erich Hoffmann ; Robert G. WebsterInefficient Transmission of H5N1 Influenza Viruses in a Ferret Contact Model▿
001478 (2006) Taronna R. Maines [États-Unis] ; Li-Mei Chen [États-Unis] ; Yumiko Matsuoka [États-Unis] ; Hualan Chen [États-Unis] ; Thomas Rowe [États-Unis] ; Juan Ortin [Espagne] ; Ana Falc N [Espagne] ; Nguyen Tran Hien [Viêt Nam] ; Le Quynh Mai [Viêt Nam] ; Endang R. Sedyaningsih [Indonésie] ; Syahrial Harun [Indonésie] ; Terrence M. Tumpey [États-Unis] ; Ruben O. Donis [États-Unis] ; Nancy J. Cox [États-Unis] ; Kanta Subbarao [États-Unis] ; Jacqueline M. Katz [États-Unis]Lack of transmission of H5N1 avian–human reassortant influenza viruses in a ferret model
001604 (2005) Jaroslav V. Burda [République tchèque] ; Manoj K. Shukla [États-Unis] ; Jerzy Leszczynski [États-Unis]Theoretical model of the aqua-copper [Cu(H2O)5]+cation interactions with guanine
001659 (2004) Robin M. BushInfluenza as a model system for studying the cross-species transfer and evolution of the SARS coronavirus.
001768 (2002) Masayoshi Shinjoh [Japon] ; Takashi Yoshikawa [Japon] ; Yixing Li [Japon] ; Kyoko Shiraishi [Japon] ; Hideaki Ueki [Japon] ; Kuniaki Nerome [Japon]Prophylaxis and treatment of influenza encephalitis in an experimental mouse model
001865 (2001) B. Basu-Mallick [Inde] ; Bhabani Prasad Mandal [Inde]On an exactly solvable B N type Calogero model with non-Hermitian PT invariant interaction
001866 (2001) G. V. Jaiani [Géorgie (pays)]On a Mathematical Model of Bars with Variable Rectangular Cross‐sections
001C66 (1996) Claire E. Parker [Royaume-Uni] ; Keith G. Gould [Royaume-Uni]Influenza A virus—a model for viral antigen presentation to cytotoxic T lymphocytes
001D40 (1995) Andrey R. Kolovsky [Russie]Quantum chaos: double resonance model and its physical applications
001D69 (1995) Allison E. Howard [États-Unis] ; Piotr Cieplak [États-Unis, Pologne] ; Peter A. Kollman [États-Unis]A molecular mechanical model that reproduces the relative energies for chair and twist‐boat conformations of 1,3‐dioxanes
002240 (1988) Jean-Marie André [Belgique] ; Marie-Claude André [Belgique]The free‐electron model and its role in polymer quantum chemistry
002261 (1988) Georges Trinquier [France] ; Kai-Xian Chen [France] ; Nohad Gresh [France]Binding of nogalamycin to model tetranucleotides
002637 (1982) M. Ali ; H F Maassab ; R. Jennings ; C W PotterInfant rat model of attenuation for recombinant influenza viruses prepared from cold-adapted attenuated A/Ann Arbor/6/60.
002687 (1982) Martin Welti [Suisse] ; Ernö Pretsch [Suisse] ; Enrico Clementi [États-Unis] ; Wilhelm Simon [Suisse]Interaction of Ca2+ and Mg2+ with Ionophores Studied by Using a Pair‐Potential Model Based on ab initio Calculations
002750 (1981) The resonant model potential method: a narrow d band approximation to d metal bandstructure, model Green function and density response function
002786 (1980) M C Wark ; G A Tannock ; M M Sutherland ; L E SmithA murine model for assessment of living attenuated influenza A vaccines.
002B44 (1976) C. W. Potter ; R. JenningsThe hamster as a model system for the study of influenza vaccines
002C58 (1973) I. A. Bernadskii ; R. A. MinlosExact solution of the BCS model

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