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Research Article

FISH BIOCONCENTRATION MODELING WITH LOG P

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Pages 1-10 | Published online: 30 Sep 2008

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S. A. L. M. Kooijman, J. Baas, D. Bontje, M. Broerse, T. Jager, C. A. M. Van Gestel & B. Van Hattum. (2007) Scaling relationships based on partition coefficients and body sizes have similarities and interactions† . SAR and QSAR in Environmental Research 18:3-4, pages 315-330.
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K. Roy, I. Sanyal & P. P. Roy. (2006) QSPR of the bioconcentration factors of non-ionic organic compounds in fish using extended topochemical atom (ETA) indices. SAR and QSAR in Environmental Research 17:6, pages 563-582.
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Articles from other publishers (7)

Thomas H. Miller, Matteo D. Gallidabino, James I. MacRae, Stewart F. Owen, Nicolas R. Bury & Leon P. Barron. (2019) Prediction of bioconcentration factors in fish and invertebrates using machine learning. Science of The Total Environment 648, pages 80-89.
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Jennifer M. Daley, Gordon Paterson & Ken G. Drouillard. 2014. Reviews of Environmental Contamination and Toxicology, Volume 227. Reviews of Environmental Contamination and Toxicology, Volume 227 107 155 .
James Devillers. 2013. Computational Toxicology. Computational Toxicology 3 27 .
J.G.M. Van Engelen, P. J. Hakkinen, C. Money, M.G.J. Rikken & T.G. Vermeire. 2007. Risk Assessment of Chemicals. Risk Assessment of Chemicals 195 226 .
Teodora Ivanciuc, Ovidiu Ivanciuc & Douglas J. Klein. (2006) Modeling the bioconcentration factors and bioaccumulation factors of polychlorinated biphenyls with posetic quantitative super-structure/activity relationships (QSSAR). Molecular Diversity 10:2, pages 133-145.
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Jon?A. Arnot & Frank?A.?P.?C. Gobas. (2003) A Generic QSAR for Assessing the Bioaccumulation Potential of Organic Chemicals in Aquatic Food Webs. QSAR & Combinatorial Science 22:3, pages 337-345.
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Chisako Yamagami, Kozue Araki, Kyoko Ohnishi, Kaoru Hanasato, Haruko Inaba, Masahiro Aono & Akihiro Ohta. (1999) Measurement and prediction of hydrophobicity parameters for highly lipophilic compounds: Application of the HPLC column-switching technique to measurement of log P of diarylpyrazines. Journal of Pharmaceutical Sciences 88:12, pages 1299-1304.
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