PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Occupational EMF exposure and risk of breast cancer

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Ekspozycja zawodowa PEM a ryzyko zachorowania na raka piersi
Języki publikacji
EN
Abstrakty
EN
In this work the author introduced the procedure using the current knowledge relating to biological effects of the occupational exposure on electromagnetic fields. The relationship between exposure to EMFs and human breast cancer was discussed. The biological effects of EMFs are still controversial, in general, the negative effects should not be ignored.
PL
Przedstawione zostały aspekty związane z ekspozycją środowiskową na sztucznie generowane pole elektromagnetyczne oraz raportowane przez badaczy powiązania wzrostu ryzyka zachorowania na raka piersi u osób eksponowanych na oddziaływanie PEM. Wyniki badań, gdzie wskazuje się negatywny wpływ ekspozycji powinny być rozwijane.
Rocznik
Strony
177--180
Opis fizyczny
Bibliogr. 28 poz., tab.
Twórcy
  • Uniwersytet Zielonogórski, Wydział Informatyki, Elektrotechniki i Automatyki, Instytut Sterowania i Systemów Informatycznych, ul. Szafrana 2, 65-516 Zielona Góra
autor
  • Uniwersytet Zielonogórski, Wydział Informatyki, Elektrotechniki i Automatyki, Instytut Sterowania i Systemów Informatycznych, ul. Szafrana 2, 65-516 Zielona Góra
Bibliografia
  • [1] PubMed, The US National Library of Medicine of National Institutes of Health, Available at: https://www.ncbi. nlm.nih.gov/pubmed
  • [2] IARC Working Group on the Evaluation of Carcinogeni c Risks to Humans, Non-ionizing radiation, Part 1, Static and extremely low-frequency (ELF) electric and magnetic fields, IARC monographs on the evaluation of carcinogenic risks to humans, Vol. 80, IARCPress, 2002, Lyon, France
  • [3] IEEE Standards Coordinating Commi t t ee 28. IEEE standard for safety levels with respect to human exposure to electromagnetic fields, 0-3 kHz. New York, NY, IEEE - The Institute of Electrical and Electronics Engineers, 2002 (IEEE Std C95.6-2002)
  • [4] Health and Safety Executive 2012, The burden of occupational cancer in Great Britain – technical report: breast cancer. Health and Safety Executive Available at: http://www.hse.gov.uk/cancer/
  • [5] Heal th and Safet y Execut ive 2012, The burden of occupational cancer in Great Britain – technical report: cervical cancer. Health and Safety Executive Available at: http://www.hse.gov.uk/cancer/
  • [6] Health and Safety Executive 2012,The burden of occupational cancer in Great Britain – technical report: ovarian cancer. Health and Safety Executive Available at: http://www.hse.gov.uk/cancer/
  • [7] Weiderpass E., Meo M., Vainio H. , Risk factors for breast cancer, including occupational exposures, Saf Health Work, 2 (2011), 1-8
  • [8] Slack R., Young C., Rushton L., British Occupational Cancer Burden Study Group: Occupational cancer in Britain. Female cancers: Breast, cervix and ovary, Br J Cancer, 107 (2012), Suppl 1, S27-S32
  • [9] Sadeghipour R., Ahmadian S., Bolouri B., Pazhang Y. , Shafiezadeh M., Effects of extremely lowfrequency pulsed electromagnetic fields on morphological and biochemical properties of human breast carcinoma cells (T47D), Electromagn Biol Med., 31 (2012), No. 4, 425-435
  • [10] Girgert R., Gründker C., Emons G., Hanf V., Electromagnetic fields alter the expression of estrogen receptor cofactors in breast cancer cells, Bioelectromagnetics, 29 (2008), 169-176
  • [11] Szabo J., Mezei K., Thuróczy G., Mezei G., Occupational 50 Hz magnetic field exposure measurements among female sewing machine operators in Hungary, Bioelectromagnetics, 27 (2006), No. 6, 451-457
  • [12] Li W., Ray R.M., Thomas D.B., Yost M., Davis S . , Breslow N., Gao D. L . , F i tzgibbons E.D., Camp J.E., Wong E., Wernli K.J., Checkoway H., Occupational Exposure to Magnetic Fields and Breast Cancer Among Women Textile Workers in Shanghai, China. Am J Epidemiol., 178 (2013), No. 7, 1038-1045
  • [13] Kowal M., Filipczuk P., Obuchowicz A., Korbicz J . , Monczak R. , Computer-aided diagnosis of breast cancer based on fine needle biopsy microscopic images, Computers in Biology and Medicine, 43 (2013), 1563-1572
  • [14] Kowal M, Filipczuk P. , Nuclei segmentation for computer-aided diagnosis of breast cancer, International Journal of Applied Mathematics and Computer Science, 24 (2014), No. 1, 19-31
  • [15] Shekhar S. , Cancer Cells Detection and Classification in Biopsy Image, International Journal of Computer Applications, 38 (2012), No. 3, 15-21
  • [16] Koc M., Polat P., Epidemiology and aetiological factors of male breast cancer: a ten years retrospective study in eastern Turkey, Eur J Cancer Prev., 10 (2001), No. 6, 531-534
  • [12] Van WijnGaarden E., Nylander-French L.A., Millikan R.C., Savitz D.A., Loomis D., Population-based case-control study of occupational exposure to electromagnetic fields and breast cancer, Annals of Epidemiology, 11 (2001), No. 5., 297- 303
  • [13] Labrèche F., Goldberg M.S., Valoi s M.F., Nadon L., Ri chardson L., Lakhani R., Lat rei l le B., Occupational exposures to extremely low frequency magnetic fields and postmenopausal breast cancer, Am J Ind Med., 44 (2003), No. 6, 643-652
  • [14] Schoenfeld E.R., O'Leary E.S., Henderson K., Grimson R., Kabat G.C., Ahnn S., Kaune W.T., Gammon M.D., Leske M.C.; EBCLIS Group, Electromagnetic fields and breast cancer on Long Island: a case-control study, Am J Epidemiol., 158 (2003), No. 1, 47-58
  • [15] Kliukiene J., Tynes T., Andersen A., Residential and occupational exposures to 50-Hz magnetic fields and breast cancer in women: a population-based study, Am J Epidemiol., 159 (2004), No. 9, 852-861
  • [16] Forssén U.M. , Rutqv i st L.E., Ahlbom A., Feycht ing M. , Occupational magnetic fields and female breast cancer: A case-control study using Swedish population registers and new exposure data, Am J Epidemiol., 161 (2005), No. 3, 250-259
  • [17] McElroy J.A., Egan K.M., Titus-Ernstoff L., Anderson H.A., Trentham-Dietz A., Hampton J.M., Newcomb P.A. , Occupational exposure to electromagnetic field and breast cancer risk in a large, population-based, casecontrol study in the United States, J Occup Environ Med., 49 (2007), 266-274
  • [18] Peplonska B., Stewart P., Szeszenia-Dabrowska N., Rusiecki J., Gar c ia-Closas M., L issowska J., Bar d in- Mikol a jczak A., Zatonski W., Gromiec J., Brzezni cki S., B r inton L.A., B lai r A., Occupation and breast cancer risk in Polish women: a population-based case-control study , Am J Ind Med., 50 (2007), No. 2, 97-111
  • [19] Elliott P., Shaddick G., Douglas M., de Hoogh K., Briggs D. J. , Toledano M.B. , Adult cancers near highvoltage overhead power lines, Epidemiology, 24 (2012), 184- 190
  • [20] Grundy A., Harris S.A., Demers P.A., Johnson K.C., Agenew D.A., Canadian Cancer Registries Epidemiology Research Group, Villeneuve P.J., Occupational exposure to magnetic fields and breast cancer among Canadian men, Cancer Medicine, 5 (2016), No. 3, 586- 596
  • [21] Feycht ing M., For s sén U., Electromagnetic fields and female breast cancer, Cancer Causes Control., 17 (2006), No. 4, 553-558
  • [22] Davanipour Z., Sobel E., . Long-term exposure to magnetic fields and the risks of Alzheimer's disease and breast cancer: Further biological research, Pathophysiology, 16 (2009), No.2-3, 149-156
  • [23] Mar ci l io I., Habermann M., Gouveia N., Campos magnéticos de frequência extremamente baixa e efeitos na saúde: revisão da literature, Rev. bras. epidemiol., 12 (2009), No. 2, 105-123
  • [24] Chen C., Ma X, Zhong M., Yu Z., Extremely lowfrequency electromagnetic fields exposure and female breast cancer risk: a meta-analysis based on 24,338 cases and 60,628 controls, Breast Cancer Res Treat., 123 (2010), No. 2, 569-576
  • [25] Chen Q., Lang L., Wu W., Xu G., Zhang X., Li T . , Huang H., A meta-analysis on the relationship between exposure to ELF-EMFs and the risk of female breast cancer, PLoS One, 8 (2013), No. 7, e69272, doi:10.1371/ journal.pone.0069272
  • [26] Sun J.W., Li X.R., Gao H.Y. , Yin J.Y. , Qin Q., Nie S.F. , Wei S. , Electromagnetic field exposure and male breast cancer risk: a meta-analysis of 18 studies, Asian Pac J Cancer Prev., 14 (2013), No. 1, 523-528
  • [27] Zhao G., Lin X., Zhou M., Zhao J., Relationship between exposure to extremely low-frequency electromagnetic fields and breast cancer risk: a meta-analysis, European Journal of Gynaecological Oncology, 35 (2014), No. 3, 264-269
  • [28] Zhang Y., Lai, J., Ruan, G., Chen, C. , Wang, D.W., Meta-analysis of extremely low frequency electromagnetic fields and cancer risk: A pooled analysis of epidemiologic studies, Environment International, 88 (2016), 36-43
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-9f34b417-c81b-4b52-b654-37bfa68b23bd
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.