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SAR and QSAR in Environmental Research|June 21, 2002
Probabilistic neural network modeling of the toxicity of chemicals to Tetrahymena pyriformis with molecular fragment descriptorsK L E Kaiser, S P Niculescu, T W Schultz
SAR and QSAR in Environmental Research|June 1, 2012
The definition of the applicability domain relevant to skin sensitization for the aromatic nucleophilic substitution mechanismS J Enoch, T W Schultz, M T D Cronin
SAR and QSAR in Environmental Research|April 12, 2003
Selection of data sets for QSARs: analyses of Tetrahymena toxicity from aromatic compoundsT W Schultz, T I Netzeva, M T D Cronin
SAR and QSAR in Environmental Research|June 20, 2002
The effect of precision of molecular orbital descriptors on toxicity modeling of selected pyridinesJ R Seward, M T D Cronin, T W Schultz
Journal of Applied Toxicology : JAT|July 1, 1996
'Dynamic' QSAR for semicarbazide-induced mortality in frog embryosO G Mekenyan, T W Schultz, G D Veith, et al.
Journal of Applied Toxicology : JAT|February 1, 1990
Structure-activity relationships for osteolathyrism. III. Substituted thiosemicarbazidesD A Dawson, T W Schultz, L L Baker, et al.
Toxicology in Vitro : an International Journal Published in Association with BIBRA|August 23, 2005
Non-enzymatic glutathione reactivity and in vitro toxicity: a non-animal approach to skin sensitizationAynur O Aptula, Grace Patlewicz, David W Roberts, et al.
Ecotoxicology and Environmental Safety|June 22, 1999
Validation of genetically engineered bioluminescent surfactant resistant bacteria as toxicity assessment toolsA C Layton, B Gregory, T W Schultz, et al.
SAR and QSAR in Environmental Research|March 11, 2011
Reactivity and aquatic toxicity of aromatic compounds transformable to quinone-type Michael acceptorsF Bajot, M T D Cronin, D W Roberts, et al.
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