53
1. Agency for Toxic Substances and Disease Registry. Information for clinicians and environmental health professionals. Available at: https://www.atsdr.cdc.gov/pfas/info-for-health-professionals.html Accessed May 17, 2020
2. Ashbolt NJ. Microbial contamination of drinking water and disease outcomes. Toxicology. 2004; 198:229–38.
3. Ashbolt NJ. Microbial contamination of drinking water and disease outcomes. Toxicology. 2004; 198:229–38.
4. Aydın, Mehmet Emin. "Su kirliliği ve gıda güvenliğine etkisi." Sağlık Düşüncesi ve Tıp Kültürü Dergisi 2021 Güz s:22-23
5. Bellinger DC. Environmental chemical exposures and neurodevelopment. Pediatr Clin North Am. 2018; 65:121–34.
6. Black RE, Victora CG, Walker SP, et al. Maternal and child undernutrition and overweight. Lancet. 2013; 382:427–51.
7. Brinkel J, Khan MH, Kraemer A. A systematic review of arsenic exposure and its health effects. Int J Environ Res Public Health. 2009; 6:187–200.
8. Centers for Disease Control and Prevention. Water fluoridation basics. Available at: https://www.cdc.gov/fluoridation/basics/index.htm. Accessed November 1, 2020
9. Children’s Health and the Environment: Part 1, (Eds: Paulson JA, Gitterman BA) Pediatric Clinics of North America, Feb. 2007, Vol:1, No: 1, Saunders, An imprint of Elsevier
10. Clark MB, Keels MA, Slayton RL. Section on Oral Health. Clinical report. Fluoride use in caries prevention in the primary care setting. Pediatrics. 2020;146(6): e2020034637
11. Fewtrell L, Kaufmann RB, Kay D, et al. Water, sanitation, and hygiene interventions. Lancet. 2005; 365:847–58.
12. Gharpure R, Perez A, Miller AD, Wikswo ME, Silver R, Hlavsa MC. Cryptosporidiosis Outbreaks–United States, 2009–2017. MMWR Morb Mortal Wkly Rep. 2019;68(25):568–572
13. Grandjean P, Landrigan PJ. Neurobehavioural effects of developmental toxicity. Lancet. 2014; 383:2168–78.
14. Gündoğdu, Z., Keskindemirci, G., Aksakal, M. T., Aşkan, Ö. Ö., & Gökçay, G. (2016). Fiziksel çevre kirliliğinin çocuk sağlığına etkileri. Çocuk dergisi, 16(2), 60-66.
15. http://www. who.int/mediacentre/news/releases/2017/pollutionchild-death/en/. Erişim tarihi: 9 Nisan 2017
16. Institute of Medicine, Committee to Assess Health Risks From Exposure to Low Levels of Ionizing Radiation. Health Risks From Exposure to Low Levels of Ionizing Radiation: BEIR VII—Phase 2. Washington, DC: National Academies Press; 2006
17. Landrigan PJ, Fuller R, Acosta NJR, et al. The Lancet Commission on pollution and health. Lancet. 2018; 391:462–512.
18. Landrigan PJ, Goldman LR. Children’s vulnerability to toxic chemicals. Environ Health Perspect. 2011; 119:501–7.
19. Lanphear BP, Hornung R, Khoury J, et al. Low-level environmental lead exposure and children’s intellectual function. N Engl J Med. 2005; 352:1517–26.
20. McMahon PB, Brown CJ, Johnson TD, Belitz K, Lindsey BD. Fluoride occurrence in United States groundwater. Sci Total Environ. 2020; 732:139217
21. O’Neal SL, Zheng W. Manganese toxicity upon overexposure: a decade in review. Curr Environ Health Rep. 2015;2 (3):315–328
22. Oulhote Y, Mergler D, Barbeau B, et al. Neurobehavioral function in school-age children exposed to manganese in drinking water. Environ Health Perspect. 2014;122(12):1343–1350
23. Payment P, Richardson L, Siemiatycki J, Dewar R, Edwardes M, Franco E. A randomized trial to evaluate the risk of gastrointestinal disease due to consumption of drinking water meeting current microbiological standards. Am J Public Health. 1991;81(6):703–708
24. Pedati C, Koirala S, Safranek T, Buss BF, Carlson AV. Campylobacteriosis outbreak associated with contaminated municipal water supply–Nebraska, 2017. MMWR Morb Mortal Wkly Rep. 2019;68(7):169–173
25. Perera FP. Multiple threats to child health from fossil fuel combustion. Environ Health Perspect. 2017; 125:141–8.
26. Peres TV, Schettinger MR, Chen P, et al. “Manganese-induced neurotoxicity: a review of its behavioral consequences and neuroprotective strategies”. BMC Pharmacol Toxicol. 2016;17(1):57
27. Rahman A, Persson LÅ, Nermell B, et al. Arsenic exposure and risk of spontaneous abortion, stillbirth, and infant mortality. Epidemiology. 2010;21(6):797–804
28. Rahman A, Vahter M, Smith AH, et al. Arsenic exposure during pregnancy and size at birth. Am J Epidemiol. 2009; 169:304–12.
29. Rees N, Fuller R. The toxic truth: children’s exposure to pollution. Lancet Child Adolesc Health. 2019; 3:234–6.
30. Rodan LH, Hauptman M, D’Gama AM, et al. Novel founder intronic variant in SLC39A14 in two families causing Manganism and potential treatment strategies. Mol Genet Metab. 2018;124(2):161–167
31. Smith AH, Marshall G, Yuan Y, et al. Increased mortality from lung cancer and bronchiectasis in young adults after exposure to arsenic in utero and in early childhood. Environ Health Perspect. 2006;114(8):1293–1296
32. Squillace, P. J., Scott, J. C., Moran, M. J., Nolan, B. T., & Kolpin, D. W. (2002). VOCs, pesticides, nitrate, and their mixtures in groundwater used for drinking water in the United States. Environmental science & technology, 36(9), 1923-1930.
33. Steinmaus CM. Perchlorate in water supplies: sources, exposures, and health effects. Curr Environ Health Rep. 2016;3(2):136–143
34. Taylor PN, Okosieme OE, Murphy R, et al. Maternal perchlorate levels in women with borderline thyroid function during pregnancy and the cognitive development of their offspring: data from the Controlled Antenatal Thyroid Study. J Clin Endocrinol Metab. 2014;99(11):4291–4298
35. Trasande L, Liu Y. Reducing the staggering costs of environmental disease in children. JAMA Pediatr. 2011; 165:347–53.
36. Troeger C, Colombara DV, Rao PC, et al. Global disability-adjusted life-years from diarrhoeal diseases. Lancet Infect Dis. 2018; 18:1211–28.
37. Troeger C, Colombara DV, Rao PC, et al. Global disability-adjusted life-years from diarrhoeal diseases. Lancet Infect Dis. 2018; 18:1211–28.Checkley W, Buckley G, Gilman RH, et al. Multi-country analysis of the effects of diarrhoea on childhood stunting. Int J Epidemiol. 2008; 37:816–30.
38. UNICEF. Progress on drinking water, sanitation and hygiene. New York: UNICEF; 2022.
39. United Nations. Transforming our world: the 2030 Agenda for Sustainable Development. New York: UN; 2015.
40. US Environmental Protection Agency. Estimated nitrate concentrations in groundwater used for drinking water. Available at: https://www.epa.gov/nutrient-policy-data/estimated-nitrate-concentrations-groundwater-used-drinking. Accessed August 18, 2020
41. Vrijheid M, Casas M, Gascon M, et al. Environmental pollutants and child health—A review. Int J Hyg Environ Health. 2016; 219:331–42.
42. Walker CLF, Rudan I, Liu L, et al. Global burden of childhood pneumonia and diarrhoea. Lancet. 2013; 381:1405–16.
43. Ward MH, Jones RR, Brender JD, et al. Drinking water nitrate and human health: an updated review. Int J Environ Res Public Health. 2018;15(7):1557
44. WHO. Chemical hazards in drinking-water. Geneva: WHO; 2017.
45. WHO. Microplastics in drinking-water. Geneva: WHO; 2019.
46. WHO. Quantitative microbial risk assessment: water safety. Geneva: WHO; 2016.
47. Woolf AD, Stierman BD, Barnett ED, Byron LG; COUNCIL ON ENVIRONMENTAL HEALTH AND CLIMATE CHANGE; COMMITTEE ON INFECTIOUS DISEASES. Drinking Water From Private Wells and Risks to Children. Pediatrics. 2023 Feb 1;151(2): e2022060645. doi: 10.1542/peds.2022-060645. PMID: 36995188.
48. World Health Organization. Guidelines for drinking-water quality. 4th ed. Geneva: WHO; 2023.
49. Yu, M. H., H. Tsunoda, and M. Tsunoda. "Biological and Health Effects of Pollutants In: Environmental Toxicology." (2011): 3-40.