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Index « Mesh.i » - entrée « Models, Biological »
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Models, Animal < Models, Biological < Models, Chemical  Facettes :

List of bibliographic references indexed by Models, Biological

Number of relevant bibliographic references: 77.
[0-20] [0 - 20][0 - 50][20-40]
Ident.Authors (with country if any)Title
000B78 (2019) Finlay Campbell [Royaume-Uni] ; Anne Cori [Royaume-Uni] ; Neil Ferguson [Royaume-Uni] ; Thibaut Jombart [Royaume-Uni]Bayesian inference of transmission chains using timing of symptoms, pathogen genomes and contact data
000D57 (2017) Cheng-Wei Yang [République populaire de Chine] ; Yue-Zhi Lee [République populaire de Chine] ; Hsing-Yu Hsu [République populaire de Chine] ; Chuan Shih [République populaire de Chine] ; Yu-Sheng Chao [République populaire de Chine] ; Hwan-You Chang [République populaire de Chine] ; Shiow-Ju Lee [République populaire de Chine]Targeting Coronaviral Replication and Cellular JAK2 Mediated Dominant NF-κB Activation for Comprehensive and Ultimate Inhibition of Coronaviral Activity.
000D79 (2017) Shenglan Xiao [République populaire de Chine] ; Yuguo Li [République populaire de Chine] ; Tze-Wai Wong [République populaire de Chine] ; David S. C. Hui [République populaire de Chine]Role of fomites in SARS transmission during the largest hospital outbreak in Hong Kong
000E57 (2017) Miao Gui [République populaire de Chine] ; Wenfei Song [République populaire de Chine] ; Haixia Zhou [République populaire de Chine] ; Jingwei Xu [République populaire de Chine] ; Silian Chen [République populaire de Chine] ; Ye Xiang [République populaire de Chine] ; Xinquan Wang [République populaire de Chine]Cryo-electron microscopy structures of the SARS-CoV spike glycoprotein reveal a prerequisite conformational state for receptor binding.
000F48 (2016) Shih-Wein Li [Taïwan] ; Ching-Ying Wang [Taïwan] ; Yu-Jen Jou [Taïwan] ; Tsuey-Ching Yang [Taïwan] ; Su-Hua Huang [Taïwan] ; Lei Wan [Taïwan] ; Ying-Ju Lin [Taïwan] ; Cheng-Wen Lin [Taïwan]SARS coronavirus papain-like protease induces Egr-1-dependent up-regulation of TGF-β1 via ROS/p38 MAPK/STAT3 pathway.
000F55 (2016) Ya-Hui Lin [Taïwan] ; Kung-Yao Chang [Taïwan]Rational design of a synthetic mammalian riboswitch as a ligand-responsive -1 ribosomal frame-shifting stimulator.
001214 (2015) Dong Yang [États-Unis] ; Julian L. Leibowitz [États-Unis]The structure and functions of coronavirus genomic 3′ and 5′ ends
001523 (2014) C. Chastel [Oman][Middle East respiratory syndrome (MERS): bats or dromedary, which of them is responsible?].
001546 (2014) Chung-Ke Chang [République populaire de Chine] ; Ming-Hon Hou [République populaire de Chine] ; Chi-Fon Chang [République populaire de Chine] ; Chwan-Deng Hsiao [République populaire de Chine] ; Tai-Huang Huang [République populaire de Chine]The SARS coronavirus nucleocapsid protein--forms and functions.
001603 (2014) Vineet D. Menachery [États-Unis] ; Amie J. Eisfeld [États-Unis] ; Alexandra Sch Fer [États-Unis] ; Laurence Josset [États-Unis] ; Amy C. Sims [États-Unis] ; Sean Proll [États-Unis] ; Shufang Fan [États-Unis] ; Chengjun Li [États-Unis] ; Gabriele Neumann [États-Unis] ; Susan C. Tilton [États-Unis] ; Jean Chang [États-Unis] ; Lisa E. Gralinski [États-Unis] ; Casey Long [États-Unis] ; Richard Green [États-Unis] ; Christopher M. Williams [États-Unis] ; Jeffrey Weiss [États-Unis] ; Melissa M. Matzke [États-Unis] ; Bobbie-Jo Webb-Robertson [États-Unis] ; Athena A. Schepmoes [États-Unis] ; Anil K. Shukla [États-Unis] ; Thomas O. Metz [États-Unis] ; Richard D. Smith [États-Unis] ; Katrina M. Waters [États-Unis] ; Michael G. Katze ; Yoshihiro Kawaoka [États-Unis] ; Ralph S. Baric [États-Unis]Pathogenic influenza viruses and coronaviruses utilize similar and contrasting approaches to control interferon-stimulated gene responses.
001705 (2014) Dustin B. Ritchie [Canada] ; Jingchyuan Soong ; William K A. Sikkema ; Michael T. WoodsideAnti-frameshifting ligand reduces the conformational plasticity of the SARS virus pseudoknot.
001779 (2014) Lauren M. Gardner [Australie] ; David Rey [Australie] ; Anita E. Heywood [Australie] ; Renin Toms [Australie] ; James Wood [Australie] ; S. Travis Waller [Australie] ; C. Raina Macintyre [Australie]A Scenario‐Based Evaluation of the Middle East Respiratory Syndrome Coronavirus and the Hajj
001837 (2013) Dirk Brockmann [Allemagne] ; Dirk HelbingThe hidden geometry of complex, network-driven contagion phenomena.
001856 (2013) Luca Zinzula ; Enzo TramontanoStrategies of highly pathogenic RNA viruses to block dsRNA detection by RIG-I-like receptors: Hide, mask, hit
001880 (2013) Graham Simmons [États-Unis] ; Pawel Zmora ; Stefanie Gierer ; Adeline Heurich ; Stefan PöhlmannProteolytic activation of the SARS-coronavirus spike protein: cutting enzymes at the cutting edge of antiviral research.
001C39 (2012) Keisuke Ejima [Japon] ; Ryosuke Omori [Japon, Hong Kong] ; Benjamin J. Cowling [Hong Kong] ; Kazuyuki Aihara [Japon] ; Hiroshi NishiuraThe Time Required to Estimate the Case Fatality Ratio of Influenza Using Only the Tip of an Iceberg: Joint Estimation of the Virulence and the Transmission Potential
001C69 (2012) Xiang-Sheng Wang [Canada] ; Jianhong Wu ; Yong YangRichards model revisited: validation by and application to infection dynamics.
001E29 (2012) Romulus Breban [France]Role of environmental persistence in pathogen transmission: a mathematical modeling approach
002016 (2011) Fulvio Reggiori [Pays-Bas] ; Cornelis A M. De Haan ; Maurizio MolinariUnconventional use of LC3 by coronaviruses through the alleged subversion of the ERAD tuning pathway.
002051 (2011) Kulbhushan Sharma [Inde] ; Sara Kerström ; Anuj Kumar Sharma ; Vincent T K. Chow ; Shumein Teow ; Bernard Abrenica ; Stephanie A. Booth ; Timothy F. Booth ; Ali Mirazimi ; Sunil K. LalSARS-CoV 9b protein diffuses into nucleus, undergoes active Crm1 mediated nucleocytoplasmic export and triggers apoptosis when retained in the nucleus.
002068 (2011) M C W. Chan [République populaire de Chine] ; R W Y. Chan ; G S W. Tsao ; J S M. PeirisPathogenesis of SARS coronavirus infection using human lung epithelial cells: an in vitro model.

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