In today’s nanotechnology and pharmaceutical research, alternative toxicology testing methods are crucial for ethically and commercially sound practice. This book provides practical guidelines on how to develop and validate quantitative nanostructure-toxicity relationship (QNTR) models, which are ideal for rapidly exploring the effects of a large number of variables in complex scenarios.
Through contributions by academic, industrial, and governmental experts, Modelling the Toxicity of Nanoparticles delivers clear instruction on these methods and their integration and use in risk assessment. Specific topics include the physico-chemical characteristics of engineered nanoparticles, nanoparticle interactions, in vivo nanoparticle processing, and more.
A much-needed practical guide, Modelling the Toxicity of Nanoparticles is a key text for researchers as well as government and industry regulators.
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Dr. Robert Rallo, Associate Professor of Computer Science and Artificial Intelligence in the Departament d’Enginyeria Informàtica i Matemàtiques at Universitat Rovira i Virgili, Tarragona, Catalunya. He directs the Research Group on Bioinformatics & Computational Engineering (BIOCENIT, www.biocenit.cat) and is also the Director of the Advanced Technology Innovation Center (ATIC) at the Universitat Rovira i Virgili. In 2007 and 2009 he was a visiting professor at the University of California Los Angeles where he is also faculty member of the Center for Environmental Implications of Nanotechnology. Since 2013 he serves as Chair for the Modeling WG in the EU NanoSafety Cluster. From 2013 to 2015 he was the EU co-chair of the US-EU Nano-Dialogue Community of Research on Predictive Modeling and Human Health. His research focuses on multi-scale modeling of complex systems of industrial or environmental relevance. Dr. Rallo serves regularly as reviewer for high-ranked scientific journals and international research organizations.
In today’s nanotechnology and pharmaceutical research, alternative toxicology testing methods are crucial for ethically and commercially sound practice. This book provides practical guidelines on how to develop and validate quantitative nanostructure-toxicity relationship (QNTR) models, which are ideal for rapidly exploring the effects of a large number of variables in complex scenarios.
Through contributions by academic, industrial, and governmental experts, Modelling the Toxicity of Nanoparticles delivers clear instruction on these methods and their integration and use in risk assessment. Specific topics include the physico-chemical characteristics of engineered nanoparticles, nanoparticle interactions, in vivo nanoparticle processing, and more.
A much-needed practical guide, Modelling the Toxicity of Nanoparticles is a key text for researchers as well as government and industry regulators.
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