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Journal Article
Dose-Response, ISSN 1559-3258, 10/2008, Volume 6, Issue 4, pp. 352 - 368
Developmental toxicity studies are an important area in the field of toxicology. Endpoints measured on fetuses include weight and indicators of death and... 
Developmental toxicity study | Dose-group variation | Estimation | Spline | Threshold | QUANTITATIVE RISK-ASSESSMENT | HORMESIS | PHARMACOLOGY & PHARMACY | IMPACT | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | TOXICOLOGICAL EXPERIMENTS
Journal Article
Journal Article
by Hunt, D
JOURNAL OF STATISTICAL COMPUTATION AND SIMULATION, ISSN 0094-9655, 2002, Volume 72, Issue 9, pp. 737 - 746
This paper investigates the results of simulations from which clustered binary dose-response data are generated. This data mimics the type of discrete data... 
QUANTITATIVE RISK-ASSESSMENT | COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS | U-shape | STATISTICS & PROBABILITY | threshold | beta-binomial | hormesis | developmental toxicity studies
Journal Article
Communications in Statistics - Theory and Methods, ISSN 0361-0926, 01/1992, Volume 21, Issue 8, pp. 2367 - 2381
The current regulation of non-carcinogenic effects has generally been based on dividing a safety factor into an experimental no-observed-effect-level (NOEL),... 
quantitative responses | risk assessment | confidence limit estimate | STATISTICS & PROBABILITY | CONFIDENCE LIMIT ESTIMATE | RISK ASSESSMENT | QUANTITATIVE RESPONSES
Journal Article
Journal Article
Journal of Applied Statistics, ISSN 0266-4763, 01/2006, Volume 33, Issue 1, pp. 35 - 47
This paper develops threshold models for developmental toxicity data. The distinguishing feature of these threshold models is their flexibility in modeling... 
U-shaped models | threshold models | Beta-binomial | dose-response curves | Dose-response curves | Threshold models | QUANTITATIVE RISK-ASSESSMENT | HORMESIS | STATISTICS & PROBABILITY | TOXICITY | beta-binomial | PROPORTIONS | Beta-binomial; dose-response curves; threshold models; U-shaped models
Journal Article
Biometrics, ISSN 0006-341X, 06/2000, Volume 56, Issue 2, pp. 327 - 336
As appreciation for human impact on the environment has developed, so have the experimental systems and associated statistical tools that quantify this impact.... 
risk assessment | Trend test | Response inhibition | Ecotoxicology | Environmental carcinogenesis | Environmental health | Interdisciplinary collaboration | Environmental statistics | NOEL | Risk analysis | Environmetrics | Dose–response modeling | NOEC | Quantitative | Stochastic modeling | Aquatic toxicology | Concentration–response modeling | Potency estimation | Biometrics | Environmental toxicology | Chemical hazards | Toxicology | Dose response relationship | Mortality | Applied statistics | Dosage | Statistics | Tumors | Editors' Invited Paper | Dose–response modeling | Concentration–response modeling | Trend tests | Concentration-response modeling | Quantitative risk assessment | Dose-response modeling | SURVIVAL | MATHEMATICS, APPLIED | dose-response modeling | environmental carcinogenesis | TUMOR-INCIDENCE RATE | quantitative risk assessment | concentration-response modeling | environmental health | BIOLOGY, MISCELLANEOUS | STATISTICAL-ANALYSIS | potency estimation | HISTORICAL CONTROLS | ecotoxicology, environmental carcinogenesis | aquatic toxicology | REGRESSION | interdisciplinary collaboration | environmental statistics | stochastic modeling | TOXICITY TEST | STATISTICS & PROBABILITY | trend tests | response inhibition | risk analysis | INCREASED CARCINOGENICITY | MODELS | environmetrics | TREND | SACRIFICE EXPERIMENTS | Quantum Theory | Humans | Environmental Monitoring - methods | Toxicology - trends | Models, Statistical | Toxicology - methods | Biometry - methods
Journal Article