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Preface | ||
1 | Biomonitoring for Pesticide Exposure | 1 |
2 | Modeling Cytochrome P-450 Mediated Acute Nitrile Toxicity Using Theoretical Linear Solvation Energy Relationships | 22 |
3 | Changes in Biochemical and Molecular Biological Parameters Induced by Exposure to Dioxin-Type Chemicals | 37 |
4 | Regulation of Muscarine Receptors as Biomarkers of Exposure to Insecticides | 51 |
5 | Correlations of Molecular Connectivity Indices with Toxicities of Organic Nitriles | 65 |
6 | Computer-Aided Molecular Modeling for Development of Biomarkers for Human Exposure to Pesticides | 76 |
7 | A Biosensor for Monitoring Blood Cholinesterases as a Biomarker of Exposure to Organophosphorus Anticholinesterase Pesticides | 114 |
8 | Hair as a Target Tissue for Developing a Biological Marker for Precursors to 2,5-Hexanedione | 125 |
9 | Hemoglobin Adducts of Pesticides | 133 |
10 | Immunoassay for p-Nitrophenol in Urine | 158 |
11 | Isolation of Pesticide-Binding Protein from Rat Blood | 166 |
12 | Body Burden and Nonoccupational Exposure Assessment | 178 |
13 | Chronic Organophosphorus Exposure: Biomarkers in the Detection of Immune Dysfunction and the Development of Lymphomas | 197 |
14 | Validation of a Pharmacokinetic Model To Predict Exposure of Ground Boom Mixer-Loader-Applicators to Chlorophenoxyacetic Acid Herbicides: Comparison to Conventional Approaches | 214 |
15 | Dermal Absorption and Disposition of Formulations of Malathion in Sprague-Dawley Rats and Humans | 231 |
16 | Physiologically Based Pharmacokinetic Models: Examples of Their Use in Exposure and Risk Assessment | 264 |
17 | Prediction of Anticholinesterase Activity and Urinary Metabolites of Isofenphos: Use of a Percutaneous Physiologically Based Pharmacokinetic-Physiologically Based Pharmacodynamic Model | 284 |
18 | Analytic Solution of a Linear Physiologically Based Pharmacokinetic Model Prototype Useful in Risk Assessment | 301 |
Author Index | 318 | |
Affiliation Index | 318 | |
Subject Index | 318 |
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Add Biomarkers of human exposure to pesticides, Explores the role of biomarker data in evaluating the impact of human environmental and occupational exposure to pesticides. Focuses on two types of biomarkers: residue analysis of parent compounds or metabolites and end points representing interacti, Biomarkers of human exposure to pesticides to the inventory that you are selling on WonderClubX
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Add Biomarkers of human exposure to pesticides, Explores the role of biomarker data in evaluating the impact of human environmental and occupational exposure to pesticides. Focuses on two types of biomarkers: residue analysis of parent compounds or metabolites and end points representing interacti, Biomarkers of human exposure to pesticides to your collection on WonderClub |