Focusing on the field of metal ion bioactivity in Quantitative Structure Activity Relationships (QSAR), this book concentrates on the basic and essential applications of QSAR methods in metal ions for readers familiar with the field and statistics. It delineates the theoretical basis and provides a concrete introduction to studying the biological activity and toxicity of metal ions as they impact health and the environment. The book describes the applications of QSARs in characterizing the biological activity and toxicity of metal ions and provides parameters for the correlation of structure with inorganic biological activity.…mehr
Focusing on the field of metal ion bioactivity in Quantitative Structure Activity Relationships (QSAR), this book concentrates on the basic and essential applications of QSAR methods in metal ions for readers familiar with the field and statistics. It delineates the theoretical basis and provides a concrete introduction to studying the biological activity and toxicity of metal ions as they impact health and the environment. The book describes the applications of QSARs in characterizing the biological activity and toxicity of metal ions and provides parameters for the correlation of structure with inorganic biological activity.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Monica Enache hasthirteen years of professional academic experience in Biology. Since 1999 she has been working at the Faculty of Biotechnology of the University of Agricultural Sciences and Veterinary Medicine of Bucharest, Romania. Prior to joining the faculty she has carried out her PhD degree in Liverpool John Moores University (UK), and received her Bachelor of Science degree from the Faculty of Biology of the University of Bucharest (Romania). She is currently a member of the National Society of Cell Biology in Romania, and has authored or co-authoredthen publications andfourteen abstracts for presentations at national or international scientific meetings.
Inhaltsangabe
Introduction. Electronic Structure of Metals and Atomic Parameters. Properties of Metals and Metal Ions Related to QSAR Studies. Descriptors for Organometallic Complexes. QSARs for Predicting Cation Toxicity, Bioconcentration, Biosorption, and Binding. QSARs versus BLM. Regulatory Limits and Applications. Constructing QSARs for Metal Ions.
Introduction. Electronic Structure of Metals and Atomic Parameters. Properties of Metals and Metal Ions Related to QSAR Studies. Descriptors for Organometallic Complexes. QSARs for Predicting Cation Toxicity, Bioconcentration, Biosorption, and Binding. QSARs versus BLM. Regulatory Limits and Applications. Constructing QSARs for Metal Ions.
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