Proceedings of the 12th International INQUA meeting on paleoseismology, active tectonic and archaeoseismology

Di Vincenzo, G. & Skála, R., 2009. 40Ar–39Ar laser dating of tektites from the Cheb Basin (Czech Republic): evidence for coevality with moldavites and inf luence of the dating standard on the age of the Ries impact. Geochim Cosmochim Acta, 73, p. 493–513. http: //dx.doi.org/10.1016/j . gca.2008.10.002 Flašar, J. & Štěpančíková, P. (2022). Plio-Pleistocene paleodrainage reconstruction using moldavite-bearing and morphostratigraphically related deposits (Southern Bohemia, Czech Republic). Palaeogeography, Palaeoclimatology, Palaeoecology, 586,110783. https: //doi.org/10.1016/j . palaeo.2021.110783. Flašar J., Martínek K., Verner, K. & Kalinová, R. (2023). Neogene- Quaternary response of the Novohradské hory Mts. (Czech Republic) f luvial systems to tectonics – Analyses of morphotectonics, stream-length index and structural geology, Quaternary International, 656, p. 1-15. https: //doi.org/10.1016/j . quaint.2023.01.008. Hack, J.T. (1973). Stream-profile analysis and stream-gradient index. Journal of Research of the U.S. Geological Survey, vol. 1 (4), p. 421-429 Heidbach, O., Rajabi M., Cui X., Fuchs K., Müller B., Reinecker J., Reiter K., Tingay M., Wenzel F., Xie F & Ziegler M.O. (2018). The World Stress Map database release 2016: Crustal stress pattern across scales. Tectonophysics744:484-498. https: //doi.org/10.1016/j . tecto.2018.07.007 Keller, E. & Pinter, N. (2002). Active tectonics – Earthquakes, Uplift and Landscape. Prentice Hall, New Jersey, 362 p. Kopecký, A. (1970). Úloha kvartérní tektoniky při dotváření současné struktury a geomorfologie Českého masivu. Časopis pro mineralogii a geologii,vol.15, 1-4, p. 347-355 Malkovský, M., 1975. Paleogeography of the Miocene of the Bohemian Massif. Věstník Ústředního ústavu geologického, 50, , p. 27- 31 Novák V. (1983). Terasy řeky Malše. Dissertation thesis. UK Praha. 100 pp. Popotnig, A., Homolová, D. & Decker, K. (2013). Morphometric analysis of a reactivated Variscan fault in southern Bohemian Massif (Budějovice basin, Czech Republic). Geomorphology, 197, p. 108-122. https: //doi.org/10.1016/j . geomorph.2013.04.042 Přibyl, V., 1999. Vltava River Terrace System between Lipno and Rožmberk na Vltavou. Acta Universitatis Carolinae – Geographica, 2, p. 157-171 Ševčík, J., Kvaček, Z. & Mai, D.H., 2007. A new mastixioid f lorula from tektite-bearing deposits in South Bohemia, Czech Republic (Middle Miocene, Vrábče Member). Bulletin of Geosciences 82 (4), p. 429–426. https: //doi.org/10.3140/bull. geosci.2007.04.429 Štěpančíková, P., Štemberk, J., Vilímek, V. & Košťák, B. (2008). Neotectonic development of drainage networks in the East Sudeten Mountains and monitoring of recent fault displacements (Czech Republic). Geomorphology, 102, p. 68-80. https: //doi.org/10.1016/j . geomorph.2007.06.016 Štěpančíková, P., Fischer, T., Stemberk, J., Nováková, L., Hartvich, F. & Marques, F. P. (2019). Active tectonics in the Cheb basin: Youngest documented Holocene surface faulting in Central Europe? Geomorphology, vol. 327, p. 472-488 Trnka, M. & Houzar, S., 2002. Moldavites: a review. Bulletin of the Czech Geological Survey, 77 (4), p. 283–302 Tschegg, D. & Decker, K., 2013. Distinguishing Quaternary and Pre-Quaternary clastic sediments in the vicinity of České Budejovice (Southern Bohemian Massif, Czech Republic). Austrian Journal of Earth Sciences, 106, p. 72-89. Tyráček, J., Westaway, R. & Bridgland, D. (2004). River terraces of the Vltava and Labe (Elbe) system, Czech Republic, and their implications for the uplift history of the Bohemian Massif. Proceedings of the Geologists' Association, 115, p. 101-124. https://doi. org/10.1016/S0016- 7878(04)80022-1

RkJQdWJsaXNoZXIy Mzc3MTg=