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Investigations of the impact of polluted natural waters on cardiovascular diseases and development of integrated prevention system

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The aim of this study was to establish the correlation between natural water pollutions and the prevalence of heart diseases. We analyzed the data from the 2014 Federal Service Report on the state of sanitary and epidemiological welfare of the population. The correlation analysis of data on mortality and primary morbidity of the population was carried out, the correlation between the quality of natural water and cardiovascular diseases of the population was established. The complex method of water quality assessment according to the data of hydrochemical monitoring of the Azov Sea and rivers flowing into it were used in the investigation, the influence of the main pollutants such as copper and manganese on the dynamics of cardiovascular diseases according to mortality and primary morbidity for the population of Taganrog was considered. As conclusion we can state that statistical association between water intake and heart diseases exists in the region of analysis. However, further studies on water intake are needed to confirm our findings.
Rocznik
Strony
49--60
Opis fizyczny
Bibliogr. 16 poz.., mapy, rys., tab., wykr.
Twórcy
  • Southern Federal University Shevchenko, 2, Building E, room E-307, 347922, Taganrog Rostovskaya oblast, Russia
  • Azovmorinformcenter, Instrumental’naya 48, Taganrog, Rostovskaya oblast, Russia, 347923
Bibliografia
  • Aldibekova, K.N., Aldibekova, Sh.N. & Baysakalova, A.Sh. (2016). Features of Influence of Ionizing Heavy Metals on Health of Person. Actual Problems of Humanities and Natural Sciences, 2-6, 5-9.
  • Alissa, E.M. & Ferns, G.A. (2011). Heavy metal poisoning and cardiovascular disease. Journal of Toxicology, #870125. https://doi.org/10.1155/2011/870125
  • Catling, L.A., Abubakar, I., Lake, I.R., Swift, L. & Hunter, P.R. (2008). A systematic review of analytical observational studies investigating the association between cardiovascular disease and drinking water hardness. Journal of J Water Health, 6(4), 433-442.
  • Chowdhury, R., Ramond, A., O’Keeffe, L.M., Shahzad, S., Kunutsor, S.K., Muka, T., ... Di Angelantonio, E. (2018). Environmental toxic metal contaminants and risk of cardiovascular disease: systematic review and meta-analysis. BMJ, 362, k3310 https://doi.org/10.1136/bmj.k3310
  • Cui, R., Iso, H., Eshak, E., Maruyama, K., & Tamakoshi, A. (2018). Water intake from foods and beverages and risk of mortality from CVD: The Japan Collaborative Cohort (JACC) Study. Public Health Nutrition, 21(16), 3011-3017.
  • Federal Service for Supervision of Consumer Rights Protection and Human Welfare (2014). Report on the state of sanitary and epidemiological welfare of the population for 2014. Rostov: Center of hygiene and epidemiology in the Rostov region. Retrieved from: http://www.61.rospotrebnadzor.ru/files/35_ГД_2014_%20РО.zip.
  • Federal Service for Supervision of Consumer Rights Protection and Human Welfare. (2015). State report. On the state of sanitary and epidemiological welfare of the population in the Russian Federation in 2014. Rostov: Center of hygiene and epidemiology in the Rostov region. Retrieved from: https://vk.kiwi/dj0iY
  • Federal State Establishment (2014). Information Bulletin on the state of water bodies, bottom, shores, their morphometric features, water protection zones, quantitative and qualitative indicators of water resources, the state of water management systems, including hydraulic structures in the area of activity of the Federal state establishment. Taganrog: Azovmorinformcenter. Retrieved from: http://azovinform.ru/content/menu/132/inf_bul_2014.pdf.
  • Jang, S., Cheon, C., Jang, B.H. Park, S., Oh, S.M., Shin, Y.C. & Ko, S.G. (2016). Relationship Between Water Intake and Metabolic/Heart Diseases: Based on Korean National Health and Nutrition Examination Survey. Osong Public Health and Research Perspectives, 7(5), 289-295.
  • Klimov, S.V. & Zhukova, A.G. (2013). Influence of manganese on human and animal organism. In Materials of the XLVIII scientific practical conference “Hygiene, health care organization and occupational pathology” (pages 33-36).
  • Kouroutou, P., Hadjistavrou, K., Linos, A. & Kales, S. (2012). The Effects of Occupational Heavy Metal Exposure on Morbidity and Mortality. Archives of Hellenic Medicine, 29(1), 70-76.
  • Monarca, S., Zerbini, I., Simonati, C. & Gelatti, U. (2003). Drinking water hardness and chronic degenerative diseases. II. Cardiovascular diseases. Annali di Igiene, 15(1), 41-56.
  • Rehman, K., Fatima, F., Waheed, I. & Akash, M. (2018). Prevalence of exposure of heavy metals and their impact on health consequences. Journal of Cellular Biochemistry, 119, 157-184.
  • Vishnevetskiy, V.Yu. & Popruzhniy, V.M. (2010). Assessment of copper content in water and bottom sediments of the Azov sea. SFedU News. Technical Science, 9(110), 117-122.
  • Vishnevetskiy, V.Yu. & Popruzhniy, V.M. (2014). Assessment of water quality in water intakes of Taganrog on hydrochemical indicators. Don Engineering Bulletin, 4-2(32), 16.
  • Vishnevetskiy, V.Yu., Popruzhniy, V.M. (2015). Assessment of the impact of manganese content in natural water on human health in water intakes of Taganrog. Don Engineering Bulletin, 4-2(39), 24.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-962c62d4-0a28-4f8c-970e-79612b83687e
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