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List of bibliographic references indexed by relationship

Number of relevant bibliographic references: 33.
[0-20] [0 - 20][0 - 33][20-32][20-40]
Ident.Authors (with country if any)Title
000102 (2020) Alfonso J. Rodriguez-Morales [Colombie] ; Andrea Gabriela Rodriguez-Morales [Chili] ; Claudio A. Méndez [Chili] ; Sebastián Hernández-BoteroTracing New Clinical Manifestations in Patients with COVID-19 in Chile and Its Potential Relationship with the SARS-CoV-2 Divergence
000A69 (2019) Thomas J. Matthews ; Kostas A. Triantis ; Robert J. Whittaker ; Francois Guilhaumon [France]sars: an R package for fitting, evaluating and comparing species-area relationship models
000B00 (2019) Zheng Li ; Jing-Ya Ruan ; Fan Sun ; Jie-Jing Yan ; Jian-Li Wang ; Zi-Xin Zhang ; Yi Zhang ; Tao WangRelationship between Structural Characteristics and Plant Sources along with Pharmacology Research of Quassinoids.
000D81 (2017) Abdo A. Elfiky [Égypte] ; Samah M. Mahdy [Égypte] ; Wael M. Elshemey [Égypte]Quantitative structure-activity relationship and molecular docking revealed a potency of anti-hepatitis C virus drugs against human corona viruses.
000F20 (2016) Leesa Lin [États-Unis] ; Rachel F. Mccloud [États-Unis] ; Cabral A. Bigman [États-Unis] ; Kasisomayajula Viswanath [États-Unis]Tuning in and catching on? Examining the relationship between pandemic communication and awareness and knowledge of MERS in the USA
001239 (2015) Qi-Fei Zhong [République populaire de Chine] ; Rui Liu [République populaire de Chine] ; Gang Liu [République populaire de Chine]Structure-activity relationship studies on quinoxalin-2(1H)-one derivatives containing thiazol-2-amine against hepatitis C virus leading to the discovery of BH6870.
001950 (2013) Junwook Chi [États-Unis] ; Jungho Baek [États-Unis]Dynamic relationship between air transport demand and economic growth in the United States: A new look
001964 (2013) Pillaiyar Thanigaimalai [Japon] ; Sho Konno [Japon] ; Takehito Yamamoto [Japon] ; Yuji Koiwai [Japon] ; Akihiro Taguchi [Japon] ; Kentaro Takayama [Japon] ; Fumika Yakushiji [Japon] ; Kenichi Akaji [Japon] ; Yoshiaki Kiso [Japon] ; Yuko Kawasaki [États-Unis] ; Shen-En Chen [États-Unis] ; Aurash Naser-Tavakolian [États-Unis] ; Arne Schön [États-Unis] ; Ernesto Freire [États-Unis] ; Yoshio Hayashi [Japon]Design, synthesis, and biological evaluation of novel dipeptide-type SARS-CoV 3CL protease inhibitors: Structure–activity relationship study
001A83 (2013) Jeff Naidoo [États-Unis] ; Jeffrey T. Huber [États-Unis] ; Pamela Cupp ; Qishan WuModeling the relationship between an emerging infectious disease epidemic and the body of scientific literature associated with it: The case of HIV/AIDS in the United States
001B43 (2013) Daniel J. Salkeld [États-Unis] ; Kerry A. Padgett [États-Unis] ; James Holland Jones [États-Unis]A meta‐analysis suggesting that the relationship between biodiversity and risk of zoonotic pathogen transmission is idiosyncratic
001E13 (2012) Akbar Ali [États-Unis] ; Jinhua Wang [États-Unis] ; Robin S. Nathans [États-Unis] ; Hong Cao [États-Unis] ; Natalia Sharova [États-Unis] ; Mario Stevenson [États-Unis] ; Tariq M. Rana [États-Unis]Synthesis and Structure–Activity Relationship Studies of HIV‐1 Virion Infectivity Factor (Vif) Inhibitors that Block Viral Replication
002132 (2011) Marc-André Laurin [Canada] ; Margaux Dastor ; Yvan L'HommeDetection and genetic characterization of a novel pig astrovirus: relationship to other astroviruses.
002319 (2011) J Rgen Slots ; Henrik SlotsBacterial and viral pathogens in saliva: disease relationship and infectious risk
002382 (2011) Marc-André Laurin [Canada] ; Margaux Dastor [Canada] ; Yvan L'Homme [Canada]Detection and genetic characterization of a novel pig astrovirus: relationship to other astroviruses
002A60 (2009) Andrea Spallarossa [Italie] ; Sara Cesarini ; Angelo Ranise ; Silvia Schenone ; Olga Bruno ; Alberto Borassi ; Paolo La Colla ; Margherita Pezzullo ; Giuseppina Sanna ; Gabriella Collu ; Barbara Secci ; Roberta LoddoParallel synthesis, molecular modelling and further structure-activity relationship studies of new acylthiocarbamates as potent non-nucleoside HIV-1 reverse transcriptase inhibitors.
002C88 (2009) Rajeshwar P. Verma [États-Unis] ; Corwin Hansch [États-Unis]Taxane Analogues against Lung Cancer: A Quantitative Structure–Activity Relationship Study
002F19 (2009) Andrea Spallarossa [Italie] ; Sara Cesarini [Italie] ; Angelo Ranise [Italie] ; Silvia Schenone [Italie] ; Olga Bruno [Italie] ; Alberto Borassi [Italie] ; Paolo La Colla [Italie] ; Margherita Pezzullo [Italie] ; Giuseppina Sanna [Italie] ; Gabriella Collu [Italie] ; Barbara Secci [Italie] ; Roberta Loddo [Italie]Parallel synthesis, molecular modelling and further structure-activity relationship studies of new acylthiocarbamates as potent non-nucleoside HIV-1 reverse transcriptase inhibitors
002F82 (2008) Sara Cesarini [Italie] ; Andrea Spallarossa ; Angelo Ranise ; Olga Bruno ; Paolo La Colla ; Barbara Secci ; Gabriella Collu ; Roberta LoddoThiocarbamates as non-nucleoside HIV-1 reverse transcriptase inhibitors. Part 2: Parallel synthesis, molecular modelling and structure-activity relationship studies on analogues of O-(2-phenylethyl)-N-phenylthiocarbamate.
002F83 (2008) Sara Cesarini [Italie] ; Andrea Spallarossa ; Angelo Ranise ; Paola Fossa ; Paolo La Colla ; Giuseppina Sanna ; Gabriella Collu ; Roberta LoddoThiocarbamates as non-nucleoside HIV-1 reverse transcriptase inhibitors. Part 1: Parallel synthesis, molecular modelling and structure-activity relationship studies on O-[2-(hetero)arylethyl]-N-phenylthiocarbamates.
003460 (2008) Sara Cesarini [Italie] ; Andrea Spallarossa [Italie] ; Angelo Ranise [Italie] ; Paola Fossa [Italie] ; Paolo La Colla [Italie] ; Giuseppina Sanna [Italie] ; Gabriella Collu [Italie] ; Roberta Loddo [Italie]Thiocarbamates as non-nucleoside HIV-1 reverse transcriptase inhibitors. Part 1. Parallel synthesis, molecular modelling and structure-activity relationship studies on 0-[2-(hetero)arylethyl]-N-phenylthiocarbamates
003916 (2007) Brian Chung [République populaire de Chine] ; Virginia Wong [République populaire de Chine]Relationship between five common viruses and febrile seizure in children

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