„Co żyje w polskich kranach”- przypisy

1)            Prawo wodne, Dz.U.2017.0.1121 t.j. – Ustawa z dnia 18 lipca 2001 r.

2)            NIK o ochronie jakości wód przeznaczonych do spożycia, 11 stycznia 2017

https://www.nik.gov.pl/…/nik-o-ochronie-jakosci-wod-przezna…

3)            Anna Grabińska-Łoniewska, Grazyna Wardzyńska, Elzbieta Pajor, Krystyna Boryń, Transmission of specific groups of bacteria through water distribution system, Polish journal of microbiology 56(2):129-38 · February 2007

4)            Paramonova, E., Krom, B.P., van der Mei, H.C., Busscher, H.J. and Sharma, P.K., 2009. Hyphal content determines the compression strength of Candida albicans biofilms. Microbiology, 155 (6): 1997-2003.

5)            Wimpenny, J., 2000. An overview of biofilms as functional communities. In Community structure and co-operation in biofilms, Allison, D.G., Gilbert, P., Lappin-Scott, H.M. and Wilson, M. (eds.), Fifty-ninth symposium for general microbiology, Cambridge University Press, Cambridge, UK.

6)            Hageskal, G., Knutsen, A.K., Gaustad, P., de Hoog, G.S. and Skaar, I., 2006. The diversity and significance of mold species in Norwegian drinking water. Applied Environmental Microbiology, 72 12): 7586-7593.

7)            Hageskal, G., Gaustad, P., Heier, B.T. and Skaar, I., 2007. Occurrence of moulds in drinking water. Journal of Applied Microbiology, 102 (3): 774-780.

8)            Hageskal, G., Lima, N. and Skaar, I., 2009. The study of fungi in drinking water. Mycological Research, 113: 165-172.

9)            Novak Babič M, Gunde-Cimerman N, Vargha M, et al. Fungal Contaminants in Drinking Water Regulation? A Tale of Ecology, Exposure, Purification and Clinical Relevance. Ahmed W, Beale DJ, eds. International Journal of Environmental Research and Public Health. 2017;14(6):636.

10)         Grabińska-Łoniewska, A., Sieć wodociągowa jako środowisko bytowania i przenoszenia mikroorganizmów, Technologia Wody, 2011, Tom 3

11)         Fleming H.C., Percival S .L., Walker J.T. Contamination potential of biofilm in water d istribution systems. W at. S ci. Techno. Water Supply, 2002, 2:271-280.

12)         Grabińska-Łoniewska A., Korniłłowicz- -Kowalska T., Wardzyńska G., Boryń K . Occurrence of fungi in water distribution system. Polish J. En. Studies, 2007, 16:539-547.

13)         Grabińska-Łoniewska A., Pajor E., Wardzyńska G., Korsak D., Boryń K . Transmission of specific groups of bacteria through water distribution system. Polish J. Microbiol. 2007, 56:128-137.

14)         Grabińska-Łoniewska A., Siński E. (2010) Mikroorganizmy chorobotwórcze i potencjalnie chorobotwórcze w ekosystemach wodnych i sieciach wodociągowych. Wydawnictwo „Seidel-Przywecki” sp. z o.o. Warszawa.

15)         Grabińska-Łoniewska A., Wardzyńska G., Korniłłowicz-Kowalska T., Boryń K. Occurrence of opportunistic pathogenic microbes in the sediments of drinking water distribution system. Proc. Int. Conf. „Biological and Chemical Contimination of ford. Eur. Centre of Exellence, 4-6 Dec. 2003, Warsaw University, Warsaw.

16)         DEFRA (Department for Environment, Food & Rural Affairs) A Review of Fungi in Drinking Water and the Implications for Human Health. 1st ed. BIO Intelligence Service; Paris, France: 2011. p. 107.

17)         World Health Organization (WHO) Guidelines for Drinking Water Quality. 3rd ed. World Health Organization; Geneva, Switzerland: 2004. p. 515.

18)         Clin Infect Dis. 2002 Mar 15;34(6):780-9. Epub 2002 Feb 11.

19)         Joanna Bąk, Bakterie Legionella w logistyce systemów zaopatrzenia w wodę, Logistyka 2015, nr 4

20)         Kręgiel, D. Rygała, A. Przemysł Spożywczy, Bakterie Aeromonas sp. – nowy wskaźnik mikrobiologiczny?

21)         Świderska-Bróż, M , Ochrona Środowiska, Skutki obecności biofilmu w systemach dystrybucji wody przeznaczonej do spożycia przez ludzi2012 Vol. 34, nr 1

22) J. YU, D. KIM, T. LEE: Microbial diversity in biofilm on water distribution pipes of different materials. Water Science and Technology 2010, Vol. 61, No. 1, pp. 163–171.

23) J.P. CHANDY, M.L. ANGLES: Determination of Nutrients limiting biofi lm formation and the subsequent impact on disinfectant decay. Water Research 2001, Vol. 35, No. 11, pp. 2677–2682.

24) Aleksandra Smyłła, Zakład Mikrobiologii i Biotechnologii, Akademia Jana Długosza Częstochow, Zagrożenia bakteryjne wód powierzchniowych

25) Park S. R., W.G Macay, D. C. Reid. Helicobacter sp. recovered from drinking water biofilm sampled from a water distribution system,Water Res., 2001, 35(6): 1624-1626

26) Anna Biedunkiewicz, Łukasz Schulz, Grzyby z rodzaju Exophiala w wodzie wodociągowej – potencjalni sprawcy feohyfomikoz, Mikologia Lekarska 2012r., tom19.

27) Heinrichs G., Hübner I., Schmidt K.C., de Hoog G.S., Haase G. Analysis of black fungal biofilms occurring at domestic water taps (I): Compositional analysis using Tag-encoded FLX amplicon pyrosequencing. Mycopathologia. 2013;175:387–397.

28) Doggett, M.S., 2000. Characterisation of fungal biofilms within a municipal water distribution system. Applied and Environmental Microbiology, 66 (3): 1249-1251.

29)   Anna Biedunkiewicz, Możliwości wykorzystania wybranych mikrogrzybów do oceny sanitarno-epidemiologicznej wód na tle różnorodności i fenologii gatunków potencjalnie chorobotwórczych dla człowieka, Int J Environ Res Public Health. 2017 Jun; 14(6): 636.

30) Paterson, R.R.M. and Lima, N., 2005. Fungal contamination of drinking water. In Water Encyclopedia, Lehr, J., Keeley, J., Lehr, J.

31) Warris, A., P. Gaustad, J. F. G. M. Meis, A. Voss, P. E. Verweij, and T. G. Abrahamsen. 2001. Recovery of filamentous fungi from water in a paediatric bone marrow transplantation unit. J. Hosp. Infect. 47:143-148.

32) Warris, A., Klaassen, C.H.W., Meis, J.F.G.M., de Ruiter, M.T., de Valk, H.A., Abrahamsen, T.G., Gaustad, P. and Verweij, P.E., 2003. Molecular epidemiology of Aspergillus fumigatus isolates recovered from water, air, and patients shows two clusters of genetically distinct strains. Journal of Clinical Microbiology, 41 (9): 4101-4106.

33) Warris, A., Voss, A. and Verweij, P.E., 2001.Hospital sources of Aspergillus species: New routes of transmission? Revista Iberoamericana de Micología, 18: 156-162.

34) Menotti, J., Waller, J., Meunier, O., Letscher-Bru, V., Herbrecht, R. and Candolfi, E., 2005. Epidemiological study of invasive pulmonary aspergillosis in a haematology unit by molecular typing of environmental and patient isolates of Aspergillus fumigatus. Journal of Hospital Infection, 60: 61-68

35)  Samson, R. A., E. S. Hoekstra, and J. C. Frisvad. 2004. Introduction to food- and airborne fungi. Centraalbureau voor Schimmelcultures, Utrecht, The Netherlands

36)Anaissie, E. J., R. T. Kuchar, J. H. Rex, A. Francesconi, M. Kasai, F. M. Muller, M. Lozano-Chiu, R. C. Summerbell, M. C. Dignani, S. J. Chanock, and T. J. Walsh. 2001. Fusariosis associated with pathogenic Fusarium species colonization of a hospital water system: a new paradigm for the epidemiology of opportunistic mold infections. Clin. Infect. Dis. 33:1871-1878.

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38) Arvanitidou, M., S. Spaia, A. Velegraki, M. Pezarloglou, D. Kanetidis, P. Pangidis, N. Askepidis, C. Katsinas, G. Vayonas, and V. Katsouyannopoulos. 2000. High level of recovery of fungi from water and dialysate in haemodialysis units. J. Hosp. Infect. 45:225-230.

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41) Muittari, A., P. Kuusisto, P. Virtanen, A. Sovijärvi, P. Grönroos, A. Harmoinen, P. Antila, and L. Kellomäki. 1980. An epidemic of extrinsic allergic alveolitis caused by tap water. Clin. Allergy 10:77-90.

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