Seo, M.; Chae, C.H.; Lee, Y.; Kim, H.R.; Kim, J.
Novel QSAR Models for Molecular Initiating Event Modeling in Two Intersecting Adverse Outcome Pathways Based Pulmonary Fibrosis Prediction for Biocidal Mixtures. Toxics 2021, 9, 59.
https://doi.org/10.3390/toxics9030059
AMA Style
Seo M, Chae CH, Lee Y, Kim HR, Kim J.
Novel QSAR Models for Molecular Initiating Event Modeling in Two Intersecting Adverse Outcome Pathways Based Pulmonary Fibrosis Prediction for Biocidal Mixtures. Toxics. 2021; 9(3):59.
https://doi.org/10.3390/toxics9030059
Chicago/Turabian Style
Seo, Myungwon, Chong Hak Chae, Yuno Lee, Ha Ryong Kim, and Jongwoon Kim.
2021. "Novel QSAR Models for Molecular Initiating Event Modeling in Two Intersecting Adverse Outcome Pathways Based Pulmonary Fibrosis Prediction for Biocidal Mixtures" Toxics 9, no. 3: 59.
https://doi.org/10.3390/toxics9030059
APA Style
Seo, M., Chae, C. H., Lee, Y., Kim, H. R., & Kim, J.
(2021). Novel QSAR Models for Molecular Initiating Event Modeling in Two Intersecting Adverse Outcome Pathways Based Pulmonary Fibrosis Prediction for Biocidal Mixtures. Toxics, 9(3), 59.
https://doi.org/10.3390/toxics9030059