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Titlebook: Advances in Toxicology and Risk Assessment of Nanomaterials and Emerging Contaminants; Liang-Hong Guo,Monika Mortimer Book 2022 The Editor

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Perturbations of the dirac operator,ntargeted metabolomics are discussed. The main limitations of the omics methods in toxicology, including the relatively high cost, lack of comprehensive and comparable databases and the need for standardized analysis pipelines are outlined. Future directions of omics in toxicology are envisioned to
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Perturbations of the dirac operator,advances in automation, robotic handling and artificial intelligence (AI) assisted data analysis have further enhanced the screening capability. With the establishment of property-toxicity relationships, safer-by-design of nanomaterials have become feasible. This chapter summarizes the key features
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https://doi.org/10.1007/BFb0066914intelligence to nanotoxicology research and provide future perspectives on developments that are likely or need to occur in the near future that allow big data and artificial intelligence to make a deeper contribution to nanosafety.
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Social and Environmental FactorsCPs, such as bisphenol A and its analogues, triclosan, triclocarban, and phthalates, their adverse endocrine-disrupting activities and three typical endocrine system-related modes of action (MOAs) through interaction with estrogen, androgen, and thyroid receptors.
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https://doi.org/10.1057/9781137558619ered chemical risk assessment by HTT-based AOP network profiles. In summary, the AOP network-based chemical screening provides a rapid and efficient omics-based approach for ranking, clustering and assessment of chemical hazards.
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Book 2022fine aerosol particulates (PM2.5) as well as emerging organic pollutants. It also provides latest computational approaches for toxicity prediction and risk assessment of nanoscale materials which possess realistic chances to enter the environment and human organism. Written by leading scientists at
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ion on risk assessment of emerging contaminants and applicatThis book details the state-of-the-art methodological advances for delineating the toxicology and working mechanisms of nanomaterials, microplastics, fine aerosol particulates (PM2.5) as well as emerging organic pollutants. It also provides
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