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Arsenic by J. Christopher States

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Arsenic

Exposure Sources, Health Risks, and Mechanisms of Toxicity

J. Christopher States

Wiley · Print & ebook · October 26, 2015

Reading lane: Toxicology

This book illustrates the chemistry, toxicology, and health effects of arsenic using novel modeling techniques, case studies, experimental data, and future perspectives.

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At a Glance

Who It's For

Good for readers interested in healthGood for readers who enjoy Toxicology and Industrial Chemistry.

Book Details

Authors
J. Christopher States
Publisher
Wiley
Published
October 26, 2015
Format
Print & ebook
Theme
Toxicology · Industrial Chemistry
Reading lane
Toxicology

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Publisher Categories

  • Toxicology

About This Book

This book illustrates the chemistry, toxicology, and health effects of arsenic using novel modeling techniques, case studies, experimental data, and future perspectives. • Covers exposure sources, health risks, and mechanisms of one of the most toxic minerals in the world • Helps readers understand potential health effects of arsenic, using population studies, mammalian and invertebrate models, and pharmacokinetic and toxicokinetic models • Discusses outcomes, epidemiology,...

Read full description

This book illustrates the chemistry, toxicology, and health effects of arsenic using novel modeling techniques, case studies, experimental data, and future perspectives. • Covers exposure sources, health risks, and mechanisms of one of the most toxic minerals in the world • Helps readers understand potential health effects of arsenic, using population studies, mammalian and invertebrate models, and pharmacokinetic and toxicokinetic models • Discusses outcomes, epidemiology, real-life examples, and modes of action for arsenic-induced diseases, like lung cancer, diabetes, cardiovascular and pulmonary diseases, and immunotoxicity • Acts as a reference for toxicologists, environmental chemists, and risk assessors and includes up-to-date, novel modeling techniques for scientists • Includes future perspectives on special topics, like extrapolation from experimental models to human exposures, biomarkers for phenotypic anchoring, and pathology of chronic exposure

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