Prenatal exposure to mercury and precocious puberty: a prospective birth cohort study is a research paper published in Human Reproduction (2020). On theSindex it has a DataRank of 0. It has been cited 39 times.
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NIH
Grant: R01HD086013
NIH
Grant: 2R01HD041702
NIH
Grant: R01HD098232
NIH
Grant: R01ES031272
S. Department of Health and Human Services
Grant: UJ2MC31074
S. Department of Health and Human Services
Grant: R03ES029594
NICHD NIH HHS
Grant: R01 HD041702
National Institute of Environmental Health Sciences
Eunice Kennedy Shriver National Institute of Child Health and Human Development
Health Resources and Services Administration of the U.S. Department of Health and Human Services
NIH
National Institute of Environmental Health Science
National Institutes of Health
Health Resources and Services Administration
FWCI
2.93
Citation Percentile
0.9%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 6 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 4 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 2 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 3 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 2 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 4 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 1 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 5 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 6 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 7 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 5 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 7 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 3 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice
Additional file 1 of Asynchronous embryonic germ cell development leads to a heterogeneity of postnatal ovarian follicle activation and may influence the timing of puberty onset in mice