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SAR and QSAR in Environmental Research|January 1, 1996
Multilayered dermal subcompartments for modeling chemical absorptionR L Bookout, C R McDaniel, D W Quinn, et al.SAR and QSAR in Environmental Research|January 1, 1995
Quantitative structure-activity study of the toxicity of benzonitriles to the ciliate Tetrahymena pyriformisM T Cronin, S E Bryant, J C Dearden, et al.SAR and QSAR in Environmental Research|October 25, 2019
Peramivir binding affinity with influenza A neuraminidase and research on its mutations using an induced-fit docking approachV K Tran-Nguyen, M T Le, T D Tran, et al.SAR and QSAR in Environmental Research|May 14, 2015
Simplified molecular input line entry system-based: QSAR modelling for MAP kinase-interacting protein kinase (MNK1)S Begum, P Ganga Raju AcharySAR and QSAR in Environmental Research|May 20, 2015
Exploring molecular fingerprints of selective PPARδ agonists through comparative and validated chemometric techniquesA Nandy, K Roy, A SahaSAR and QSAR in Environmental Research|November 18, 2022
Finding inhibitors and deciphering inhibitor-induced conformational plasticity in the Janus kinase via multiscale simulationsM F Sk, P KarSAR and QSAR in Environmental Research|May 31, 2014
Modelling the binding affinity of steroids to zebrafish sex hormone-binding globulinA K Saxena, J Devillers, A R R Pery, et al.SAR and QSAR in Environmental Research|January 6, 2026
System of self-consistent models synergistic or antagonistic with correlation intensity index: a combined perusal using MAO-A inhibitorsBhawna, A Kumar, V Singh, et al.SAR and QSAR in Environmental Research|February 13, 2023
Energy decomposition and waterswapping analysis to investigate the SNP associated DPD mediated 5-FU resistanceH Verma, J Doshi, G Narendra, et al.SAR and QSAR in Environmental Research|September 14, 2012
QSAR studies on imidazopyrazine derivatives as Aurora A kinase inhibitorsY Leng, T Lu, H L Yuan, et al.Pageof 134