À propos de cet article

Citez

Zhang, Z. L., Sun, J., Dong, J. Y., Tian, H. L., Xue, L., Qin, L. Q., & Tong, J. (2012). Residental radon and lung cancer risk: An updated metaanalysis do case-control studies. Asian-Pac. J. Cancer Prev., 13, 2459–2465. 10.7314/APJCP.2012.13.6.2459.ZhangZ. L.SunJ.DongJ. Y.TianH. L.XueL.QinL. Q.TongJ.2012Residental radon and lung cancer risk: An updated metaanalysis do case-control studiesAsian-Pac. J. Cancer Prev.132459246510.7314/APJCP.2012.13.6.245922938404Open DOISearch in Google Scholar

Al-zoughool, M., & Krewski, D. (2009). Health effects of radon: a review of the literature. Int. J. Radiat. Biol., 85, 57–69. 10.1080/09553000802635054.Al-zoughoolM.KrewskiD.2009Health effects of radon: a review of the literatureInt. J. Radiat. Biol.85576910.1080/0955300080263505419205985Open DOISearch in Google Scholar

Fornalski, K. W., & Dobrzyński, L. (2011). Pooled Bayesian analysis of twenty-eight studies on radon induced lung cancer. Health Phys., 101(3), 265–273. 10.1097/HP.0b013e31821115bf.FornalskiK. W.DobrzyńskiL.2011Pooled Bayesian analysis of twenty-eight studies on radon induced lung cancerHealth Phys.101326527310.1097/HP.0b013e31821115bf21799343Open DOISearch in Google Scholar

Fornalski, K. W., Adams, R., Allison, W., Corrice, L. E., Cuttler, J. M., Davey, C., Dobrzyński, L., Esposito, V. J., Feinendegen, L. E., Gomez, L. S., Lewis, P., Mahn, J., Miller, M. L., Pennington, C. W., Sack, B., Sutou, S., & Welsh, J. S. (2015). The assumption of radon-induced cancer risk. Cancer Causes Control, 26(10), 1517–1518. 10.1007/s10552-015-0638-9.FornalskiK. W.AdamsR.AllisonW.CorriceL. E.CuttlerJ. M.DaveyC.DobrzyńskiL.EspositoV. J.FeinendegenL. E.GomezL. S.LewisP.MahnJ.MillerM. L.PenningtonC. W.SackB.SutouS.WelshJ. S.2015The assumption of radon-induced cancer riskCancer Causes Control26101517151810.1007/s10552-015-0638-926223888Open DOISearch in Google Scholar

Deetjen, P., Falkenbach, A., Harder, D., Jöckel, H., Kaul, A., & Philipsborn, H. V. (2005). Radon als Heilmittel. Terapeutische Wirksamkeit, biologischer Wirkungsmechanismus und vergleichende Risikobewertung. Hamburg: Verlag Dr. Kovac.DeetjenP.FalkenbachA.HarderD.JöckelH.KaulA.PhilipsbornH. V.2005Radon als Heilmittel. Terapeutische Wirksamkeit, biologischer Wirkungsmechanismus und vergleichende RisikobewertungHamburgVerlag Dr. KovacSearch in Google Scholar

Franke, A., Reiner, L., & Resch, K. L. (2007). Long-term benefit of radon spa therapy in the rehabilitation of rheumatoid arthritis: a randomised, double-blinded trial. Rheumatol. Int., 27(8), 703–713. DOI: 10.1007/s00296-006-0293-2.FrankeA.ReinerL.ReschK. L.2007Long-term benefit of radon spa therapy in the rehabilitation of rheumatoid arthritis: a randomised, double-blinded trialRheumatol. Int.27870371310.1007/s00296-006-0293-217203297Open DOISearch in Google Scholar

Žák, J., Verner, K., Sláma, J., Kachlík, V., & Chlupáčová, M. (2013). Multistage magma emplacement and progressive strain accumulation in the shallow-level Krkonoše-Jizera plutonic complex, Bohemian Massif. Tectonics, 32, 1493–1512. 10.1002/tect.20088.ŽákJ.VernerK.SlámaJ.KachlíkV.ChlupáčováM.2013Multistage magma emplacement and progressive strain accumulation in the shallow-level Krkonoše-Jizera plutonic complex, Bohemian MassifTectonics321493151210.1002/tect.20088Open DOISearch in Google Scholar

Černík, T., & Goliáš, V. (2014). Radioactivity of granitoids of the Krkonoše-Jizera pluton: Statistical analysis of archival data. Geosci. Res. Rep., 2013, 103–106. http://www.geology.cz/zpravy/en/detail/Zpr2013D-2 (in Czech).ČerníkT.GoliášV.2014Radioactivity of granitoids of the Krkonoše-Jizera pluton: Statistical analysis of archival dataGeosci. Res. Rep.2013103106http://www.geology.cz/zpravy/en/detail/Zpr2013D-2 (in Czech)Search in Google Scholar

Kohn, P. (2015). Springs of the radioactive mineral waters on Tanvald granite. Unpublished M.Sc. thesis, Charles University in Prague, Faculty of Science, Prague, Czech Republic.KohnP.2015Springs of the radioactive mineral waters on Tanvald graniteUnpublished M.Sc. thesisCharles University in Prague, Faculty of SciencePrague, Czech RepublicSearch in Google Scholar

International Atomic Energy Agency. (2003). Guidelines for radioelement mapping using gamma ray spectrometry data. Vienna: IAEA. (IAEA-TECDOC-1393).International Atomic Energy Agency2003Guidelines for radioelement mapping using gamma ray spectrometry dataViennaIAEA. (IAEA-TECDOC-1393)Search in Google Scholar

Ondruš, P., Veselovský, F., Gabašová, A., Hloušek, J., & Šrein, V. (2003). Geology and hydrothermal vein system of the Jáchymov (Joachimsthal) ore district. J. Czech Geol. Survey, 48(3/4), 3–18. http://www.jgeosci.org/content/JCGS2003_3-4__ondrus1.pdf.OndrušP.VeselovskýF.GabašováA.HloušekJ.ŠreinV.2003Geology and hydrothermal vein system of the Jáchymov (Joachimsthal) ore districtJ. Czech Geol. Survey483/4318http://www.jgeosci.org/content/JCGS2003_3-4__ondrus1.pdfSearch in Google Scholar

Mochnacka, K., Oberc-Dziedzic, T., Mayer, W., & Pieczka, A. (2015). Ore mineralization related to geological evolution of the Karkonosze-Jizera Massif (the Sudetes, Poland) – towards a model. Ore Geol. Rev., 64, 215–238. 10.1016/j.oregeorev.2014.07.001.MochnackaK.Oberc-DziedzicT.MayerW.PieczkaA.2015Ore mineralization related to geological evolution of the Karkonosze-Jizera Massif (the Sudetes, Poland) – towards a modelOre Geol. Rev.6421523810.1016/j.oregeorev.2014.07.001Open DOISearch in Google Scholar

Nieć, M. (2009). Occurrences of uranium ore in Poland and possibilities for prospecting for uranium deposits. Polityka Energetyczna, 12(2/2), 435–451. https://www.min-pan.krakow.pl/se/pelne_teksty23/k23z_pe/k23_niec_z.pdf (in Polish).NiećM.2009Occurrences of uranium ore in Poland and possibilities for prospecting for uranium depositsPolityka Energetyczna122/2435451https://www.min-pan.krakow.pl/se/pelne_teksty23/k23z_pe/k23_niec_z.pdf (in Polish)Search in Google Scholar

Veselý, T. (1982). Small uranium deposit of crystalline of the Bohemian Massif. Part III: North and northwest Bohemian area. Geol. Hydrometal. Uranium, 6(3), 3–46 (in Czech).VeselýT.1982Small uranium deposit of crystalline of the Bohemian Massif. Part III: North and northwest Bohemian areaGeol. Hydrometal. Uranium63346(in Czech)Search in Google Scholar

Plášil, J., Sejkora, J., & Goliáš, V. (2008). Bismuth mineralization from the Medvědín uranium deposit near Špindlerův Mlýn. Opera Corcontica, 45, 5–11. http://opera.krnap.cz/_pdf/45/OC-45-1.pdf (in Czech).PlášilJ.SejkoraJ.GoliášV.2008Bismuth mineralization from the Medvědín uranium deposit near Špindlerův MlýnOpera Corcontica45511http://opera.krnap.cz/_pdf/45/OC-45-1.pdf (in Czech)Search in Google Scholar

Plášil, J., Sejkora, J., Čejka, J., Škoda, R., & Goliáš, V. (2009). Supergene mineralization of the Medvědín uranium deposit. J. Geosci., 54, 15–56. 10.3190/jgeosci.029.PlášilJ.SejkoraJ.ČejkaJ.ŠkodaR.GoliášV.2009Supergene mineralization of the Medvědín uranium depositJ. Geosci.54155610.3190/jgeosci.029Open DOISearch in Google Scholar

Kadlčíková, E. (1975). The geological structure and perspectives for uranium exploration in the West-Sudeten area. Unpublished report, DIAMO State Enterprise Archive, Liberec (in Czech).KadlčíkováE.1975The geological structure and perspectives for uranium exploration in the West-Sudeten areaUnpublished report,DIAMO State Enterprise ArchiveLiberec(in Czech)Search in Google Scholar

Neznal, M., Neznal, M., Matolín, M., Barnet, I., & Mikšová, J. (2004). The new method for assesing the radon risk of building sites (Spec. Pap. 16). Praha: Czech Geological Survey. .NeznalM.NeznalM.MatolínM.BarnetI.MikšováJ.2004The new method for assesing the radon risk of building sites(Spec. Pap. 16)PrahaCzech Geological SurveySearch in Google Scholar

Selinus, O., Alloway, B., Centeno, J. A., Finkelman, R. B., Fuge, R., Lindh, U., & Smedley, P. (Eds.). (2013). Essentials of medical geology: Revised edition. The Netherlands: Springer. 10.1007/978-94-007-4375-5.SelinusO.AllowayB.CentenoJ. A.FinkelmanR. B.FugeR.LindhU.SmedleyP.2013Essentials of medical geology: Revised editionThe NetherlandsSpringer10.1007/978-94-007-4375-5Open DOISearch in Google Scholar

eISSN:
0029-5922
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Chemistry, Nuclear Chemistry, Physics, Astronomy and Astrophysics, other