Biblio
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“Chronic exposure of killifish to a highly polluted environment desensitizes estrogen-responsive reproductive and biomarker genes”, Aquatic Toxicology, vol. 152, pp. 222 - 231, 2014.
, “Chronic exposure of killifish to a highly polluted environment desensitizes estrogen-responsive reproductive and biomarker genes”, Aquatic Toxicology, vol. 152, pp. 222 - 231, 2014.
, “Chronic exposure of killifish to a highly polluted environment desensitizes estrogen-responsive reproductive and biomarker genes.”, Aquat Toxicol, vol. 152, pp. 222-31, 2014.
, “Chronic exposure of killifish to a highly polluted environment desensitizes estrogen-responsive reproductive and biomarker genes.”, Aquat Toxicol, vol. 152, pp. 222-31, 2014.
, “Chronic hyperandrogenemia and western-style diet beginning at puberty reduces fertility and increases metabolic dysfunction during pregnancy in young adult, female macaques”, Human Reproduction, vol. 3393429677108333836185112611196622791322410404811211651291131867329834115, no. 4Suppl. 2, pp. 694 - 705, 2018.
, “Chronic hyperandrogenemia in the presence and absence of a western-style diet impairs ovarian and uterine structure/function in young adult rhesus monkeys”, Human Reproduction, vol. 332710437110567186037148358368815211239326492273063712837122257983799228836328913632323686313318, no. 1, pp. 128 - 139, 2017.
, “Chronic hyperandrogenemia in the presence and absence of a western-style diet impairs ovarian and uterine structure/function in young adult rhesus monkeys”, Human Reproduction, vol. 332710437110567186037148358368815211239326492273063712837122257983799228836328913632323686313318, no. 1, pp. 128 - 139, 2017.
, “Chronic PFOS exposures induce life stage-specific behavioral deficits in adult zebrafish and produce malformation and behavioral deficits in F1 offspring”, Environmental Toxicology and Chemistry, vol. 157, no. 4, pp. 201 - 206, 2013.
, “Chronic PFOS exposures induce life stage-specific behavioral deficits in adult zebrafish and produce malformation and behavioral deficits in F1 offspring.”, Environ Toxicol Chem, vol. 32, no. 1, pp. 201-6, 2013.
, “Chronic vitamin E deficiency promotes vitamin C deficiency in zebrafish leading to degenerative myopathy and impaired swimming behavior”, Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, vol. 157, no. 4, pp. 382 - 389, 2013.
, “Chronic vitamin E deficiency promotes vitamin C deficiency in zebrafish leading to degenerative myopathy and impaired swimming behavior.”, Comp Biochem Physiol C Toxicol Pharmacol, vol. 157, no. 4, pp. 382-9, 2013.
, , , “The city as a refuge for insect pollinators”, Conservation Biology, no. 1e23459, pp. 24 - 29, 2017.
, “Clarifying sub-genomic positions of QTLs for flowering habit and fruit quality in U.S. strawberry (Fragaria×ananassa) breeding populations using pedigree-based QTL analysis”, Horticulture Research, vol. 4115159152986764671692421791242012336358837346414675127209127708166736676510314323535679321431025291412956101315917721, p. 17062, 2017.
, “Classical genetics and traditional breeding”, in Genetics, Genomics, and Breeding of Tomato, Boca Raton, FL: CRC Press, 2013, pp. 37-68.
, “Climate Change Amplifies Ongoing Declines in Sagebrush Ecological Integrity”, Rangeland Ecology & Management, vol. 97, pp. 25 - 40, 2024.
, “Climate Change Amplifies Ongoing Declines in Sagebrush Ecological Integrity”, Rangeland Ecology & Management, vol. 97, pp. 25 - 40, 2024.
, “Climate Change Amplifies Ongoing Declines in Sagebrush Ecological Integrity”, Rangeland Ecology & Management, vol. 97, pp. 25 - 40, 2024.
, “Climate Change Amplifies Ongoing Declines in Sagebrush Ecological Integrity”, Rangeland Ecology & Management, vol. 97, pp. 25 - 40, 2024.
, “Climate change and conservation: Nature Conservancy Climate Change Science Conference Portland, Oregon, 5–7 September 2007”, Eos, Transactions American Geophysical Union, vol. 88, pp. 471–471, 2007.
, “Climate change and conservation: Nature Conservancy Climate Change Science Conference Portland, Oregon, 5–7 September 2007”, Eos, Transactions American Geophysical Union, vol. 88, pp. 471–471, 2007.
, “Climate change and fire effects on a prairie-woodland ecotone: projecting species range shifts with a dynamic global vegetation model.”, Ecol Evol, vol. 3, no. 15, pp. 5076-97, 2013.
, “Climate change and fire effects on a prairie–woodland ecotone: projecting species range shifts with a dynamic global vegetation model”, Ecology and evolution, vol. 3, pp. 5076–5097, 2013.
, “Climate change and forest dynamics: a soils perspective”, Soils and Food Security, p. 158, 2012.
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