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SAR and QSAR in Environmental Research|September 25, 2019
Improving (Q)SAR predictions by examining bias in the selection of compounds for experimental testingP V Pogodin, A A Lagunin, D A Filimonov, et al.SAR and QSAR in Environmental Research|September 24, 2019
Molecular docking, design, synthesis and biological evaluation of novel 2,3-aryl-thiazolidin-4-ones as potent NNRTIsA Geronikaki, A Petrou, V Kartsev, et al.SAR and QSAR in Environmental Research|November 6, 2018
QSPR modelling for prediction of glass transition temperature of diverse polymersP M Khan, K RoySAR and QSAR in Environmental Research|March 8, 2014
Synthesis, antifeedant activity against Coleoptera and 3D QSAR study of alpha-asarone derivativesB Łozowicka, P Kaczyński, T Magdziarz, et al.SAR and QSAR in Environmental Research|March 15, 2014
Modelling and predicting the biological effects of nanomaterialsD A Winkler, F R Burden, B Yan, et al.SAR and QSAR in Environmental Research|November 10, 2018
In silico study directed towards identification of novel high-affinity inhibitors targeting an oncogenic protein: BRD4-BD1R Tumdam, A Kumar, N Subbarao, et al.SAR and QSAR in Environmental Research|November 10, 2018
An exploratory study using QICAR models for prediction of adsorption capacity of multi-walled carbon nanotubes for heavy metal ionsM Salahinejad, E ZolfonounSAR and QSAR in Environmental Research|April 29, 2004
The utility of structure-activity relationship (SAR) models for prediction and covariate selection in developmental toxicity: comparative analysis of logistic regression and decision tree modelsV C Arena, N B Sussman, S Mazumdar, et al.SAR and QSAR in Environmental Research|April 29, 2004
Structure-activity approach to the identification of environmental estrogens: the MCASE approachA R Cunningham, S L Cunningham, H S RosenkranzSAR and QSAR in Environmental Research|January 27, 2005
On the nature, evolution and future of quantitative structure-activity relationships (QSAR) in toxicologyG D VeithPageof 134