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Designing endocrine disruption out of the next generation of chemicals
T. T. Schug
, R. Abagyan
, B. Blumberg
, T. J. Collins
, D. Crews
, P. L. Defur
, S. M. Dickerson
, T. M. Edwards
, A. C. Gore
, L. J. Guillette
, T. Hayes
, J. J. Heindel
, A. Moores
, H. B. Patisaul
, T. L. Tal
, K. A. Thayer
, L. N. Vandenberg
, J. C. Warner
, C. S. Watson
, F. S. Vom Saal
R. T. Zoeller, K. P. O'Brien, J. P. Myers
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Research output
:
Contribution to journal
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Article
›
peer-review
133
Scopus citations
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Keyphrases
Endocrine Disruption
100%
Testing Protocol
37%
Green Chemistry
25%
Public Health Risk
12%
Cell-based
12%
Inhibiting Effect
12%
Risk Reduction
12%
Possible Mechanisms
12%
Endocrine Disrupting Chemicals
12%
Scientific Advisory Committee
12%
New Assay
12%
Chemical Design
12%
Early Identification
12%
Sequellae
12%
Chemical Potential
12%
Whole Organism
12%
Endocrine System
12%
Chemical Effect
12%
Design Process
12%
Endocrinological
12%
Progress of Science
12%
Environmental Health Sciences
12%
Drawing Board
12%
In Silico Evaluation
12%
Dynamic Tool
12%
Industrial Science
12%
Regulatory Science
12%
Efficient Identification
12%
Hazardous Effect
12%
Mandatory Testing
12%
Pharmacology, Toxicology and Pharmaceutical Science
Receptor
100%
Endocrine Disruptor
100%