Is the Concentration of Cadmium, Lead, Mercury, and Selenium Related to Preterm Birth?
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H. Apaydın | E. Yıldırım | E. Demir | Özgür Koçak | Özgür Kan | M. Derici | Ü. Görkem
[1] M. Shima,et al. The association between whole blood concentrations of heavy metals in pregnant women and premature births: The Japan Environment and Children's Study (JECS) , 2018, Environmental research.
[2] G. Tuncay,et al. Blood Cadmium Concentrations in Women with Ectopic Pregnancy , 2018, Biological Trace Element Research.
[3] C. Watanabe,et al. Prenatal Heavy Metal Exposure and Adverse Birth Outcomes in Myanmar: A Birth-Cohort Study , 2017, International journal of environmental research and public health.
[4] F. Tao,et al. Maternal serum lead level during pregnancy is positively correlated with risk of preterm birth in a Chinese population. , 2017, Environmental pollution.
[5] Aifen Zhou,et al. Prenatal exposure to lead in relation to risk of preterm low birth weight: A matched case-control study in China. , 2015, Reproductive toxicology.
[6] M. Chamari,et al. Comparison of Maternal and Umbilical Cord Blood Selenium Levels in Low and Normal Birth Weight Neonates , 2015, Journal of family & reproductive health.
[7] B. Claus Henn,et al. Perinatal and Childhood Exposure to Cadmium, Manganese, and Metal Mixtures and Effects on Cognition and Behavior: A Review of Recent Literature , 2015, Current Environmental Health Reports.
[8] M. Vahter,et al. The Epigenetic Effects of Prenatal Cadmium Exposure , 2015, Current Environmental Health Reports.
[9] M. Vinceti,et al. Selenium neurotoxicity in humans: bridging laboratory and epidemiologic studies. , 2014, Toxicology letters.
[10] P. Dargan,et al. Association of Blood Lead Level with Neurological Features in 972 Children Affected by an Acute Severe Lead Poisoning Outbreak in Zamfara State, Northern Nigeria , 2014, PloS one.
[11] Sunil K. Sharma,et al. Heavy Metal Levels in Adolescent and Maternal Blood: Association with Risk of Hypospadias , 2014, ISRN pediatrics.
[12] I. Al-Saleh,et al. Birth outcome measures and maternal exposure to heavy metals (lead, cadmium and mercury) in Saudi Arabian population. , 2014, International journal of hygiene and environmental health.
[13] J. Souza,et al. Maternal morbidity and preterm birth in 22 low- and middle-income countries: a secondary analysis of the WHO Global Survey dataset , 2014, BMC Pregnancy and Childbirth.
[14] J. Golding,et al. Lead, cadmium and mercury levels in pregnancy: the need for international consensus on levels of concern , 2013, Journal of Developmental Origins of Health and Disease.
[15] John S. Morris,et al. Selenium Toxicity from a Misformulated Dietary Supplement, Adverse Health Effects, and the Temporal Response in the Nail Biologic Monitor , 2013, Nutrients.
[16] R. Slama,et al. Association between maternal blood cadmium during pregnancy and birth weight and the risk of fetal growth restriction: the EDEN mother-child cohort study. , 2012, Reproductive toxicology.
[17] L. Kooistra,et al. Maternal selenium status during early gestation and risk for preterm birth , 2011, Canadian Medical Association Journal.
[18] M. Chiba,et al. Blood lead at currently acceptable levels may cause preterm labour , 2010, Occupational and Environmental Medicine.
[19] M. Balali-Mood,et al. Comparison of maternal and umbilical cord blood selenium levels in term and preterm infants. , 2009, Zhongguo dang dai er ke za zhi = Chinese journal of contemporary pediatrics.
[20] Li-Li Tian,et al. Effects of Gestational Cadmium Exposure on Pregnancy Outcome and Development in the Offspring at Age 4.5 Years , 2009, Biological Trace Element Research.
[21] W. Foster,et al. Environmental Contaminants and Human Infertility: Hypothesis or Cause for Concern? , 2008, Journal of toxicology and environmental health. Part B, Critical reviews.
[22] M. Harada,et al. Long-Term Exposure to Methylmercury and Neurologic Signs in Minamata and Neighboring Communities , 2008, Epidemiology.
[23] S. Sheweita,et al. Protective role of selenium against renal toxicity induced by cadmium in rats. , 2007, Toxicology.
[24] M. Freeman,et al. Screening for Elevated Lead Levels in Childhood and Pregnancy: An Updated Summary of Evidence for the US Preventive Services Task Force , 2006, Pediatrics.
[25] M. Rahbar,et al. Maternal Fish Consumption, Mercury Levels, and Risk of Preterm Delivery , 2006, Environmental health perspectives.
[26] T. Clarkson,et al. The Toxicology of Mercury and Its Chemical Compounds , 2006, Critical reviews in toxicology.
[27] K. Mahaffey,et al. Blood organic mercury and dietary mercury intake: National Health and Nutrition Examination Survey, 1999 and 2000. , 2004, Environmental health perspectives.
[28] C. Redman,et al. Low selenium status is associated with the occurrence of the pregnancy disease preeclampsia in women from the United Kingdom. , 2003, American journal of obstetrics and gynecology.
[29] Howard Hu,et al. Effect of Maternal Bone Lead on Length and Head Circumference of Newborns and 1-Month-Old Infants , 2002, Archives of environmental health.
[30] A. Roberts,et al. Selenium deficiency and miscarriage: a possible link? , 1996, British journal of obstetrics and gynaecology.
[31] P. Whanger. Selenium in the treatment of heavy metal poisoning and chemical carcinogenesis. , 1992, Journal of trace elements and electrolytes in health and disease.
[32] D A Savitz,et al. Epidemiologic characteristics of preterm delivery: etiologic heterogeneity. , 1991, American journal of obstetrics and gynecology.
[33] L. Olson,et al. Toxic effects of lead on neuronal development and function. , 1990, Environmental health perspectives.
[34] H. Ganther. INTERACTIONS OF VITAMIN E AND SELENIUM WITH MERCURY AND SILVER , 1980, Annals of the New York Academy of Sciences.
[35] S. Agrawal,et al. Arsenic, cadmium and lead , 2017 .
[36] T. Guilarte,et al. Mechanisms of Heavy Metal Neurotoxicity: Lead and Manganese , 2015 .
[37] Joy E. Lawn,et al. Born too soon: the global action report on preterm birth , 2012 .
[38] C. Harris,et al. Developmental Toxicology , 2012, Methods in Molecular Biology.
[39] S. Flora,et al. Chapter 33 – Arsenic, cadmium and lead , 2011 .
[40] M. Llanos,et al. Fetal growth restriction is related to placental levels of cadmium, lead and arsenic but not with antioxidant activities. , 2009, Reproductive toxicology.
[41] H. Matusiewicz. Wet digestion methods , 2003 .
[42] B. Kowalski,et al. Lead, cadmium and mercury influence on selenium fate in rats , 2002 .
[43] G. Nordberg,et al. A kinetic model of cadmium metabolism in the human being. , 1978, Environmental research.