INFORMAZIONI SU QUESTO ARTICOLO

Cita

Albano, P.G., Sabelli, B., 2012. The molluscan assemblages inhabiting the leaves and rhizomes of a deep water Posidonia oceanica settlement in the central Tyrrhenian Sea. Scientia Marina, 76/4, 721–732. https://doi.org/10.3989/scimar.03396.02C10.3989/scimar.03396.02CSearch in Google Scholar

Andrejeva-Grigorovic A., Halasova E., 2000. Calcareous Nannofossils biostratigraphy of the Early Miocene sediments in the Vienna Basin NE part (Slovakia) Slovak Geological Magazine, 6/2–3, 101–105.Search in Google Scholar

Bachmayer, F., Weinfurter, E., 1965. Bregmaceros-Skelette Pisces mit in situ erhaltenen Otolithen aus den tortonischen Ablagerungen von Walbersdorf. Senckenbergiana Lethaea, 46a, 19–33.Search in Google Scholar

Báldi, K., Hohenegger, J., 2008. Paleoecology of benthic foraminifera of the Baden-Sooss section Badenian, Middle Miocene, Vienna Basin, Austria. Geologica Carpathica, 59/5, 411–424. http://www.geologicacarpathica.com/browse-journal/volumes/59-5/article-455/Search in Google Scholar

Báldi, T. 1973. Mollusc fauna of the Hungarian Upper Oligocene Egerian. Akadémiai Kiadó, Budapest, 511 pp.Search in Google Scholar

Baráth, I., Nagy, A., Kováč, M., 1994. Sandberské vrstvy -vrchnobádenské marginálne sedimenty východného okraja Viedenskej panvy. Geologické práce, Správy, 99, 59–66.Search in Google Scholar

Bartek, V., 1989. Nové litostratigrafické členenie vrchného panónu a pontu v slovenskej časti Viedenskej panvy. Mineralia Slovaca, 21/3, 275–281.Search in Google Scholar

Bergen, J. A., de Kaenel, E., Blair, S., Boesiger, T., Browning, E., 2017. Oligocene-Pliocene taxonomy and stratigraphy of the genus Sphenolithus in the circum North Atlantic Basin: Gulf of Mexico and ODP Leg 154. Journal of Nannoplankton Research, 37 (2-3), 77–112.10.58998/jnr2016Search in Google Scholar

Brix, F., Plöchinger, B., 1988. Erläuterungen zu Blatt 76 Wiener Neustadt. Geologische Karte der Republik Österreich 1:50000. Verlag der Geologischen Bundesanstalt, Wien, 85 pp.Search in Google Scholar

Brzobohatý, R., Stráník, Z., 2012. Paleogeography of the Early Badenian connection between the Vienna Basin and the Carpathian Foredeep. Central European Journal of Geosciences, 4/1, 126–137, https://doi.org/10.2478/s13533-011-0045-z10.2478/s13533-011-0045-zSearch in Google Scholar

Buday, T., 1946. Nékolik poznámek k stratigrafii a paleogeografii tortonu v západní části dolnomoravského úvalu. Věstnik Státniho Geologického Ústavu Československé Republiky, Prague, 21/3–6, 145–152.Search in Google Scholar

Buday, T., Cicha, J., 1956. Nové názory na stratigrafii spodniho a stredniho miocenu Dolnomoravského úvalu a Pováži. Geologické práce, Zošit, 43, 5–56.Search in Google Scholar

Cicha, I., Rögl, F., Rupp, C. and Čtyroký, J., 1998. Oligocene-Miocene foraminifera of the Central Paratethys. Abhandlungen der Senckenbergischen Naturforschenden Gesellschaft, 549, 1–325.Search in Google Scholar

Ćorić, S., Rögl, F., 2004. Roggendorf-1 borehole, a key-section for Lower Badenian transgressions and the strati-graphic position of the Grund Formation Molasse Basin, Lower Austria. Geologica Carpathica, 55, 165–178.Search in Google Scholar

Ćorić, S., Hohenegger, J., 2008. Quantitative analyses of calcareous nannoplankton assemblages from the Baden-Sooss section Middle Miocene of Vienna Basin, Austria. Geologica Carpathica, 59, 447–460. http://www.geologicacarpathica.com/browse-journal/volumes/59-5/article-457/Search in Google Scholar

Csaszar, G., 1997. Basic lithostratigraphic units of Hungary, charts and short descriptions. Geological Institute of Hungary, Budapest, 114 pp.Search in Google Scholar

Čtyroký, P. 2000. Nové litostratigafické jednotky pannonu vídeòské pánve na Moravì. Vìstník Èeského geologického ústavu, 75, 159–170.Search in Google Scholar

Čtyroký, P., Havlíček, P., Stráník, Z., Pálenský, P., 1995. Geologická a přírodovědná mapa CHKO a BR Pálava. Geologische und naturwissenschaftliche Karte des Landschaftsschutzgebietes (CHKO) und des Biosphärenreservates (BR) Pálava. 1: 25.000. Český geologický ústav, Praha.Search in Google Scholar

De Leeuw, A., Mandic, O., Krijgsman, W., Kuiper, K., Hrvatović, H., 2011. A chronostratigraphy for the Dinaride Lake System deposits of the Livno-Tomislavgrad Basin: the rise and fall of a long-lived lacustrine environment. Stratigraphy, 8, 29–43.10.29041/strat.08.1.03Search in Google Scholar

Dellmour, R., Harzhauser, M., 2012. The Iván Canyon, a large Miocene canyon in the Alpine-Carpathian Fore-deep. Marine and Petroleum Geology, 38, 83–94. https://doi.org/10.1016/j.marpetgeo.2012.07.00110.1016/j.marpetgeo.2012.07.001Search in Google Scholar

Dlabač, M., 1971. Dvé studie o sedimentaci v badenu (torton) Vídeňské pánve na Slovensku. Geologické práce, Správy, 56, 89–108.Search in Google Scholar

Dullo, W.C., 1983. Diagenesis of fossils of the Miocene Leitha Limestone of the Paratethys, Austria: An example for faunal modifications due to changing diagenetic environments. Facies, 8, 1–112. https://doi.org/10.1007/BF0253674010.1007/BF02536740Search in Google Scholar

Elečko, M., Vass, D. 2001. Litostratigrafické jednotky usadenín sarmatského veku vo viedenskej panve. Mineralia Slovaca, 33, 1–6.Search in Google Scholar

Fencl, M., 2005. Sedimentologie der klastischen Miozän-Abfolge in Mannersdorf am Leithagebirge (Nieder-österreich). unpublished Master thesis, University Vienna. 54 pp., Vienna.Search in Google Scholar

Fodor, L., 1995. From transpression to transtension: Oligocene–Miocene structural evolution of the Vienna Basin and the East Alpine–Western Carpathian junction. Tectonophysics, 242, 151–182. https://doi.org/10.1016/0040-1951(94)00158-610.1016/0040-1951(94)00158-6Search in Google Scholar

Fordinál, K., Maglay, J., Elečko, M., Nagy, A., Moravcová, M., Vlačiky, M., Kohút, M., Németh, Z., Bezák, V., Polák, M., Plašienka, D., Olšavský, M., Buček, S., Havrila, M., Hók, J., Pešková, I., Kucharič, L., Kubeš, P., Malík, P., Baláž, P., Liščák, P., Madarás, J., Šefčík, P., Baráth, I., Boorová, D., Uher, P., Zlínska, A., Žecová, K., 2012. Explantions for the geological map of the Vienna Basin, 1:50 000. State Geological institute of Dionýz Štúr, Bratislava, 232 pp. (in Slovak).Search in Google Scholar

Friebe, J.G., 1990. Lithostratigraphische Neugliederung und Sedimentologie der Ablagerungen des Badeniens (Miozän) um die Mittelsteirische Schwelle (Steirisches Becken, Österreich). Jahrbuch der Geologischen Bundesanstalt, 133, 223–257.Search in Google Scholar

Friebe, J.G., 1991. Carbonate sedimentation within a siliciclastic environment: the Leithakalk of the Weißenegg Formation (Middle Miocene, Styrian Basin, Austria). Zentralblatt für Geologie und Paläontologie, 1990/11, 1671–1687.Search in Google Scholar

Fuchs, R., 1990. Multistratigraphische Untersuchungen in den Bockfliesser Schichten des Zentralen Wiener Beck-ens. OMV-Report, Vienna, 28 pp.Search in Google Scholar

Fuchs, R., Ramberger, R., Veit. C., 2001. Renaissance des größten Öl- und Gasfeldes in Österreich Wiener Becken. Erdöl, Erdgas, Kohle, 117, 528–540.Search in Google Scholar

Fuchs, T., 1894. Ueber abgerollte Blöcke von Nulliporen-Kalk im Nulliporen-Kalk von Kalsersteinbruch. Zeitschrift der Deutschen Geologischen Gesellschaft, 46/1, 126–130.Search in Google Scholar

Fuchs, W., Grill, F. 1984. Geologische Karte von Wien und Umgebung 1:200.000. Geologie der Österreichischen Bundesländer. Geologische Bundesanstalt, Wien.Search in Google Scholar

Gebhardt, H., Ćorić, S., Krenmayr, H.-G., Steininger, H. and Schweigl, J., 2013. Neudefinition von lithostratigraphischen Einheiten des oberen Ottnangium Untermiozän in der alpin-karpatischen Vortiefe Niederösterreichs: Pixendorf-Gruppe, Traisen-Formation und Dietersdorf-Formation. Jahrbuch der Geologischen Bundesanstalt Wien 153, 1–4, 15–32.Search in Google Scholar

Giacobbe, S., 2012. Biodiversity loss in Sicilian transitional waters: the molluscs of Faro Lake. Biodiversity Journal, 3/4, 501–510.Search in Google Scholar

Grill, R., 1941. Stratigraphische Untersuchungen mit Hilfe von Mikrofaunen im Wiener Becken und den benachbarten Molasse-Anteilen. Oel und Kohle, 37, 595–602.Search in Google Scholar

Grill, R., 1943. Über mikropaläontologische Gliederungsmöglichkeiten im Miozän des Wiener Beckens. Mitteilungen der Reichsanstalt für Bodenforschung, 6, 33–44.Search in Google Scholar

Grill, R., 1960. Untergrenze und Gliederung des Miozäns im Wiener Becken. Mitteilungen der Geologischen Gesellschaft in Wien (Verhandlungen des Comité du Néogène Méditerranéen, 1. Tagung in Wien, 10.-20 Juli 1959), 52 (1959), 15–132.Search in Google Scholar

Grill, R., 1968. Erläuterungen zur geologischen Karte des nord-östlichen Weinviertels und zu Blatt Gänserndorf. Geologische Bundesanstalt, Vienna, 155 ppSearch in Google Scholar

Grill, R., Janoschek, W., 1980. Erdöl und Erdgas. In: Ober-hauser, R., (Ed.), Der geologische Aufbau Österreichs, Springer Verlag, Wien-New York, pp. 556–574,Search in Google Scholar

Grunert, P., Tzanova, A., Harzhauser, M., Piller, W.E., 2014. Mid-Burdigalian Paratethyan alkenone record reveals link between orbital forcing, Antarctic ice-sheet dynamics and European climate at the verge to Miocene Climate Optimum. Global and Planetary Change, 123, 36–43. https://doi.org/10.1016/j.gloplacha.2014.10.01110.1016/j.gloplacha.2014.10.011437560725844022Search in Google Scholar

Grunert, P., Hinsch, R., Sachsenhofer, R.F., Bechtel, A., Ćorić, S., Harzhauser, M., Piller, W.E., Sperl, H., 2013. Early Burdigalian infill of the Puchkirchen Trough (North Alpine Foreland Basin, Central Paratethys): Facies development and sequence stratigraphy. Marine and Petroleum Geology, 39, 164–186. https://doi.org/10.1016/j.marpetgeo.2012.08.00910.1016/j.marpetgeo.2012.08.009Search in Google Scholar

Hamilton, W., Johnson, N. 1999. The Matzen Project; rejuvenation of mature field. Petroleum Geoscience, 5, 119–125, https://doi.org/10.1144/petgeo.5.2.119010.1144/petgeo.5.2.119Search in Google Scholar

Hamilton, W., Wagner, L., Wessely, G. 2000. Oil and Gas in Austria. Mitteilungen der Österreichischen Geologischen Gesellschaft, 92, 235–262.Search in Google Scholar

Haq, B.U., Hardenbol, J., Vail, P.R., 1988. Mesozoic and Ceno-zoic chronostratigraphy and cycles of sealevel changes. In: Wilgus, C.K., (ed.), Sea-level changes - an integrated approach. Society of Economic Paleontologists and Mineralogists, Special Publications, 42, pp. 71–108.10.2110/pec.88.01.0071Search in Google Scholar

Hardenbol, J., Thierry, J., Farley, M.B., Jacquin, T.,Graciansky, P.-C., Vail, P.R., 1998. Mesozoic and Cenozoic Sequence Chronostratigraphic Framework of European Basins. In: Graciansky, C.-P., Hardenbol, J., Jacquin, T. and Vail, P.R., (eds.), Mesozoic and Cenozoic sequence stratigraphy of European basins. Society for Sedimentary Geology Special Publication, 6, 3–13.10.2110/pec.98.02.0003Search in Google Scholar

Harzhauser, M., 2002. Marine und brachyhaline Gastropoden aus dem Karpatium des Korneuburger Beck-ens und der Kreuzstettener Bucht Österreich, Untermiozän. Beiträge zur Paläontologie, 27, 61–159.Search in Google Scholar

Harzhauser, M., Mandic, O., 2009. Neogene dreissenids in Central Europe: evolutionary shifts and diversity changes. Chapter 2. In: van der Velde, G., Rajagopal, S. and bij de Vaate, A. (Eds.), The Zebra Mussel in Europe. Backhuys Publishers, Leiden/Margraf Publishers, Weikersheim. pp. 11–29.Search in Google Scholar

Harzhauser, M., Piller, W.E., 2004. Integrated stratigraphy of the Sarmatian Upper Middle Miocene in the western Central Paratethys. Stratigraphy, 1/1, 65–86.10.29041/strat.01.1.04Search in Google Scholar

Harzhauser, M., Piller, W.E., 2007. Benchmark data of a changing sea. – Palaeogeography, Palaeobiogeography and Events in the Central Paratethys during the Miocene. Palaeogeography, Palaeoclimatology, Palaeoecology, 253, 8–31. https://doi.org/10.1016/j.palaeo.2007.03.03110.1016/j.palaeo.2007.03.031Search in Google Scholar

Harzhauser, M., Daxner-Höck, G., Piller, W.E., 2004. An integrated stratigraphy of the Pannonian Late Miocene in the Vienna Basin. Austrian Journal of Earth Sciences, 9596, 6–19.Search in Google Scholar

Harzhauser, M., Piller, W.E., Müllegger, S., Grunert, P., Micheels, A., 2010. Changing seasonality patterns in Central Europe from Miocene Climate Optimum to Miocene Climate Transition deduced from the Crassostrea isotope archive. Global and Planetary Change, 76, 77–84. https://doi.org/10.1016/j.gloplacha.2010.12.00310.1016/j.gloplacha.2010.12.003Search in Google Scholar

Harzhauser, M., Theobalt, D., Strauss, P., Mandic, O., Piller, W. E. 2019. Seismic-based lower and middle Miocene stratigraphy in the northwestern Vienna Basin Austria. Newsletter on Stratigraphy, 52, 221–224. https://doi:10.1127/nos/2018/049010.1127/nos/2018/0490Search in Google Scholar

Harzhauser, M., Mandic, O., Büyükmeriç, Y., Neubauer, T.A., Kadolsky, D., Landau, B.M., 2016. A Rupelian mangrove swamp mollusc fauna from the Thrace Basin in Turkey. Archiv für Molluskenkunde, 145, 23–58.10.1127/arch.moll/1869-0963/145/023-058Search in Google Scholar

Harzhauser, M., Theobalt, D., Strauss, P., Mandic, O., Carne-vale, G., and Piller, W. E., 2017. Miocene biostratigraphy and paleoecology of the Mistelbach Halfgraben in the northwestern Vienna Basin Lower Austria. Jahrbuch der Geologischen Bundesanstalt, 157, 57–108.Search in Google Scholar

Harzhauser M., Grunert P., Mandic O., Lukeneder P., García Gallardo Á., Neubauer T.A., Carnevale G., Landau B.M., Sauer R., Strauss P., 2018. Middle and Late Badenian palaeoenvironments in the northern Vienna Basin and their potential link to the Badenian Salinity Crisis. Geologica Carpathica, 69, 129–168. https://doi.org/10.1515/geoca-2018-000910.1515/geoca-2018-0009Search in Google Scholar

Haunold, T.G., 1995. Zur Taxonomie, Systematik und stratigraphischen Bedeutung uvigerinider Foraminiferen im Neogen des Wiener Beckens und benachbarter Gebiete – 40 Jahre nach Papp & Turnovsky (1953). Jahrbuch der Geologischen Bundesanstalt, 138, 67–87.Search in Google Scholar

Häusler, H., Scheibz, J., Chwatal, W., Kohlbeck, F., 2014. Coeval Lower Miocene subsidence of the Eisenstadt Basin and relative updoming of its Austroalpine frame: implications from high-resolution geophysics at the Oslip section (Northern Burgenland, Austria). International Journal of Earth Science, 104, 475–493. https://doi.org/10.1007/s00531-014-1084-810.1007/s00531-014-1084-8Search in Google Scholar

Hedberg, H.D., 1976. International stratigraphic guide. John Wiley, New York, 200 pp.Search in Google Scholar

Hilgen, F.J., Lourens, L.J., Van Dam, J.A., 2012. The Neo-gene Period. In: Gradstein, F.M., Ogg, J.G., Schmitz, M.D. and Ogg, G.M. (eds.), The Geologic Time Scale 2012, Volume 1. Elsevier, Amsterdam, pp. 923–978.10.1016/B978-0-444-59425-9.00029-9Search in Google Scholar

Hinsch, R., Decker K., Peresson, H., 2005. 3-D seismic interpretation and structural modeling in the Vienna Basin: implications for Miocene to recent kinematics. Austrian Journal of Earth Sciences, 97, 38–51.Search in Google Scholar

Hladecek, K., 1965. Zur Schichtfolge und Lagerung des Helvets von Matzen. PhD-Thesis, University of Vienna, 106 pp.Search in Google Scholar

Hofmayer, F., Kirscher, U., Sant, K., Krijgsman, W., Fritzer, Th., Jung, D., Weissbrodt, W., Reichenbacher, B., 2019. Three dimensional geological modeling supports a revised Burdigalian chronostratigraphy in the North Alpine Foreland Basin. International Journal of Earth Sciences, 108, 2627–2651. https://doi.org/10.1007/s00531-019-01780-010.1007/s00531-019-01780-0Search in Google Scholar

Hohenegger, J., 2005. Estimation of environmental paleogradient values based on presence/absence data: a case study using benthic foraminifera for paleodepth estimation. Palaeogeography, Palaeoclimatology, Palaeoecology, 217, 115–130. https://doi.org/10.1016/j.palaeo.2004.11.02010.1016/j.palaeo.2004.11.020Search in Google Scholar

Hohenegger, J., Wagreich, M., 2012. Time calibration of sedimentary sections based on insolation cycles using combined cross-correlation: dating the gone Badenian stratotype Middle Miocene, Paratethys, Vienna Basin, Austria as an example. International Journal of Earth Sciences, 101, 339–349. https://doi.org/10.1007/s00531-011-0658-y10.1007/s00531-011-0658-ySearch in Google Scholar

Hohenegger, J, Ćorić, S., Wagreich, M., 2014. Timing of the Middle Miocene Badenian Stage of the Central Paratethys. Geologica Carpathica, 65/1, 55–66. https://doi.org/10.2478/geoca-2014-000410.2478/geoca-2014-0004Search in Google Scholar

Hohenegger, J., Andersen, N., Báldi, K., Ćorić, S., Pervesler, P., Rupp, C., Wagreich, M., 2008. Paleoenvironment of the Early Badenian Middle Miocene in the southern Vienna Basin Austria – multivariate analysis of the Baden-Sooss section. Geologica Carpathica, 59, 461–487. http://www.geologicacarpathica.com/browse-journal/volumes/59-5/article-458/Search in Google Scholar

Hohenegger J., Rögl F., Ćorić S., Pervesler P., Lirer F., Roetzel R.,Scholger R., Stingl K., 2009. The Styrian Basin: a key to the Middle Miocene (Badenian/Langhian) Central Paratethys transgressions. Austrian Journal of Earth Sciences, 102, 102–132.Search in Google Scholar

Hohenegger, J., Ćorić, S., Khatun, M., Pervesler, P., Rögl, F., Rupp, C., Selge, A., Uchman, A., Wagreich, M., 2009a. Cyclostratigraphic dating in the Lower Badenian Middle Miocene of the Vienna Basin Austria: the Baden-Sooss core. International Journal of Earth Sciences, 98, 915–930. https://doi.org/10.1007/s00531-007-0287-710.1007/s00531-007-0287-7Search in Google Scholar

Hohenegger, J., Pervesler, P., Uchman, A. and Wagreich, M., 2009b. Upper bathyal trace fossils document palaeoclimate changes. Terra Nova, 21, 229–236. https://doi.org/10.1111/j.1365-3121.2009.00878.x10.1111/j.1365-3121.2009.00878.xSearch in Google Scholar

Hölzel, M., Wagreich, M., Faber, R., Strauss, P., 2008. Regional subsidence analysis in the Vienna Basin (Austria). Austrian Journal of Earth Sciences, 101, 88–98.Search in Google Scholar

Hölzel, M., Decker, K., Zámolyi, A., Strauss, P., Wagreich, M., 2010. Lower Miocene structural evolution of the central Vienna Basin (Austria). Marine and Petroleum Geology 27, 666–681. https://doi.org/10.1016/j.marpetgeo.2009.10.00510.1016/j.marpetgeo.2009.10.005Search in Google Scholar

Hrabovský, J., 2013. Negenikulátne koralinné riasy (Corallinales, Sporolithales, Rhodophyta) z litotamniových vápencov lokality Vrchná hora pri Stupave (Viedenská panva, Slovensko). Mineralia Slovaca, 45, 23–34.Search in Google Scholar

Hrabovský, J., Fordinál, K., 2013. Paleoekologické zhodnotenie riasových vápencov z lokality Stupava-Vrchná hora (Viedenská panva, Slovensko). Mineralia Slovaca, 45, 11–22.Search in Google Scholar

Hyžný, M., Hudáčková, N., Biskupič, R., Rybár, S., Fuksi, T., Halásová, E., Zágoršek, K., Jamrich, M., Ledvák P., 2012. Devínska Kobyla – a window into the Middle Miocene shallow-water marine environments of the Central Paratethys (Vienna Basin, Slovakia). Acta Geologica Slovaca, 4/2, 95–111.Search in Google Scholar

Iaccarino, S.M., Di Stefano, A., Foresi, L.M., Turco, E., Baldassini, N., Cascella, A., Da Prato, S., Ferraro, L., Gennari, R., Hilgen, F.J., Lirer, F., Maniscalco, R., Mazzei, R., Riforgiato, F., Russo, B., Sagnotti, L., Salvatorini, G., Speranza, F., Verducci, M., 2011. High-resolution integrated stratigraphy of the upper Burdigalian-lower Langhian in the Mediterranean: the Langhian historical stratotype and new candidate sections for defining its GSSP. Stratigraphy, 8/2–3, 199–215.10.29041/strat.08.2.08Search in Google Scholar

Jamrich, M., Halásová, E., 2010. Vývoj spoločenstiev vápnitých nanofosílií Viedenskej panvy ako odraz paleoenvironmentálnych zmien počas vrchného bádenu (Devínska Nová Ves – tehelňa). Acta Geologica Slovaca, 2, 2, 123–140.Search in Google Scholar

Janoschek, R., 1942. Die bisherigen Ergebnisse der erdölgeologischen Untersuchungen im inneralpinen Wiener Becken. Oel und Kohle, 38, 125–150.Search in Google Scholar

Janoschek, R., 1943. Das Inneralpine Wiener Becken. In: Schaffer, F.X. (ed.), Geologie der Ostmark, Franz Deuticke, Wien, pp. 427–514.Search in Google Scholar

Janoschek, R., 1951. Das Inneralpine Wiener Becken. In: Schaffer, F.X. (ed.), Geologie von Österreich, 2. Auflage, Franz Deuticke, Wien, pp. 525–693.Search in Google Scholar

Jiříček, R., 2002. The evolution of the Molasse in the Alpine-Carpathian Foredeep and the Vienna Basin. Exploration Geophysics, Remote sensing and environment, 9, 179 p.Search in Google Scholar

Jiříček, R., Seifert, P., 1990. Palaeogeography of the Neo-gene in the Vienna Basin and the adjacent part of the foredeep. In: Minaříková, D. and, Lobitzer, H., (eds.), Thirty Years of Geological Cooperation between Austria and Czechoslovakia. Cesky Geologicky Ustav, Praha, pp. 89–105.Search in Google Scholar

Jiříček, R., Tomek, Č., 1981. Sedimentary and structural evolution of the Vienna Basin. Earth Evolution Science, 3–4, 195–204.Search in Google Scholar

Kapounek, J., Papp, A., 1969. Der Vulkanismus in der Bohrung Orth 1 und die Verbreitung von Grobschüttungen zwischen dem Spannberger Rücken und der Donau. Verhandlungen der Geologischen Bundesanstalt, 1969, 114–123.Search in Google Scholar

Kapounek, J., Kröll, A., Papp, A., Turnovsky, K., 1965. Die Verbreitung von Oligozän, Unter- und Mittelmiozän in Niederösterreich. Erdoel-Erdgas-Zeitschrift, 81/4, 109–115.Search in Google Scholar

Keferstein, C., 1828. Beobachtungen und Ansichten über die geognostischen Verhältnisse der nördlichen Kalk-Alpenkette in Oesterreich und Baiern. Teutschland, geognostisch-geologisch dargestellt und mit Charten und Durchscnittszeichnungen. Verlag des Landes-Industrie-Comptoirs. Weimar, 5/3, 425 pp.Search in Google Scholar

Kern, A., Harzhauser, M., Mandic, O., Roetzel, R., Ćorić, S., Bruch, A.A., Zuschin, M., 2010. Millennial-scale vegetation dynamics in an estuary at the onset of the Miocene Climate Optimum. Palaeogeography, Palaeoclimatology, Palaeoecology, 304, 247–261. https://doi.org/10.1016/j.palaeo.2010.07.01410.1016/j.palaeo.2010.07.014Search in Google Scholar

Kölbl, L., 1959. Art und Verteilung der Sedimentkörper im Torton des Erdölfeldes Matzen Wiener Becken. Eclogae Geologicae Helvetiae, 51/3, 999–1009.Search in Google Scholar

Kölbl, L., 1966. Geologische Studie über die Bildung der tortonen Zwischenhorizonte von Matzen und die Entstehung ihrer Lagerstätten. Erdöl-Erdgas Zeitschrift, 82, 45–65.Search in Google Scholar

Košťák, M., Schlögl, J., Culkac, A., Tomašových, A., Mazucha, M., Hudáčková, N., 2018. The unique preservation of Sepia soft tissues in the Miocene deposits Serravallian, Vienna Basin: Implications for the origin of microbodies in the fossil record. Palaeogeography Palaeoclimatology Palaeoecology, 493, 111–118. https://doi.org/10.1016/j.palaeo.2018.01.00510.1016/j.palaeo.2018.01.005Search in Google Scholar

Kováč, M., Baráth, I., Harzhauser, M., Hlavatý, I., Hudáčková, N., 2004. Miocene depositional systems and sequence stratigraphy of the Vienna Basin. Courier des Forschungs-Instituts Senckenberg, 246, 187–212.Search in Google Scholar

Kováčová, P., Hudáčkova, N., 2009. Late Badenian foraminifers from the Vienna Basin Central Paratethys: stable isotope study and paleoecological implications. Geologica Carpathica, 60/1, 59–70. https://doi.org/10.2478/v10096-009-0006-310.2478/v10096-009-0006-3Search in Google Scholar

Kreutzer, K., 1971. Mächtigkeitsuntersuchungen im Neogen des Ölfeldes Matzen, Nieder-Österreich. Erdöl-Erdgas-Zeitschrift, 87, 38–49.Search in Google Scholar

Kreutzer, N., 1974. Lithofazielle Gliederung einiger Sand-und Schotter-Komplexe des Sarmatien und obersten Badenien im Raume von Matzen und Umgebung (Wiener Becken). Erdoel-Erdgas-Zeitschrift, 90, 114–127.Search in Google Scholar

Kreutzer, N., 1978. Die Geologie der Nulliporen (Lithothamnien)-Horizonte der miozänen Badener Serie des Ölfeldes Matzen (Wiener Becken). Erdoel-Erdgas-Zeitschrift, 94, 129–145.Search in Google Scholar

Kreutzer, N., 1986. Die Ablagerungssequenzen der miozänen Badener Serie im Feld Matzen und im zentralen Wiener Becken. Erdöl, Erdgas, Kohle, 102/11, 492–503.Search in Google Scholar

Kreutzer, N., 1992. Matzen Field – Austria. Vienna Basin. A field study for the Treatise of Petroleum Geology. AAPG, Tulsa, pp. 57–97.Search in Google Scholar

Kreutzer, N., 1993. Das Neogen des Wiener Beckens. In: Brix, F. and Schultz, O. eds., Erdöl und Erdgas in Öster-reich. Naturhistorisches Museum Wien und F. Berger, Horn., pp. 232–248.Search in Google Scholar

Kreutzer, K., Hlavatý, V., 1990. Sediments of the Miocene mainly Badenian in the Matzen area in Austria and in the southern part of the Vienna Basin in Czechoslovakia. In: Minarikove, D. and Lobitzer, H. (eds.): Thirty years of geological cooperation between Austria and Czechoslovakia. UUG, Praha, pp. 110–123.Search in Google Scholar

Kroh, A., Harzhauser, M., Piller, W.E., Rögl, F., 2003. The Lower Badenian Middle Miocene Hartl Formation Eisenstadt-Sopron Basin, Austria. Österreichische Akademie der Wissenschaften, Schriftenreihe Erdwissenschaftliche Kommissionen, 16, 87–109.Search in Google Scholar

Kröll, A., 1984. Die Erdöl- und Erdgasregion Matzen/Schönkirchen aus geologischer Sicht. Erdöl-Erdgas, 100, 185–195.Search in Google Scholar

Kröll A., Wessely G., 1993. Strukturkarte - Basis der tertiären Beckenfüllung 1:200.000. Erläuterung zu den Karten über den Untergrund des Wiener Beckens und der angrenzenden Gebiete. Geologische Bundesanstalt, Wien.Search in Google Scholar

Lankreijer, A., Kováč, M., Cloetingh, S., Pitoňák, P., Hlôška, P., Biermann, C., 1995. Quantitative subsidence analysis and forward modelling of the Vienna and Danube basins: thin-skinned versus thick-skinned extension. Tectonophysics, 252, 433–451. https://doi.org/10.1016/0040-1951(95)00099-210.1016/0040-1951(95)00099-2Search in Google Scholar

Lee, E.J., Wagreich, M., 2017. Polyphase tectonic subsidence evolution of the Vienna Basin inferred from quantitative subsidence analysis of the northern and central parts. International Journal of Earth Sciences, 106, 687–705. https://doi.org/10.1007/s00531-016-1329-910.1007/s00531-016-1329-9Search in Google Scholar

Mandic, O., 2004. Foraminiferal paleoecology of a submarine swell - the Lower Badenian (Middle Miocene) of the Mailberg Formation at the Buchberg in the Eastern Alpine Foredeep: initial report. Annalen des Naturhistorischen Museums in Wien, 105A, 161–173.Search in Google Scholar

Mandic, O., Harzhauser, M., 2003. Molluscs from the Bade-nian Middle Miocene of the Gaindorf Formation Alpine Molasse Basin, NE Austria - taxonomy, paleoecology and biostratigraphy. Annalen des Naturhistorischen Museums Wien, 104A, 85–127.Search in Google Scholar

Mandic, O., Sant, K., Kallanxhi, M.-E., Ćorić, S., Theobalt, D., Grunert, P., De Leeuw, A., Krijgsman, W., 2019. Integrated bio-magnetostratigraphy of the Badenian reference section Ugljevik in southern Pannonian Basin - implications for the Paratethys history (middle Miocene, Central Europe). Global and Planetary Change, 172, 374–395. https://doi.org/10.1016/j.gloplacha.2018.10.01010.1016/j.gloplacha.2018.10.010Search in Google Scholar

Marquet, R. 2004. Ecology and evolution of Pliocene bivalves from the Antwerp Basin. Bulletin de l’Institut Royal des Sciences Naturelles de Belgique, Sciences de la Terre, 74 Supplementum, 205–212.Search in Google Scholar

Mayer, A., Pavuza, R., Wirth, J., 1989. Die Höhlen des Steinberges im Weinviertel (Niederösterreich). Die Höhle. Zeitschrift für Karst- und Höhlenkunde, 40/2, 37–49.Search in Google Scholar

Palzer-Khomenko, M., Wagreich, M., Knierzinger, W., Meszar, M.-E., Gier, S., Kallanxhi, M.-E., Soliman, A., 2018a. A calcite crisis unravelling Early Miocene (Ottnangian) stratigraphy in the North Alpine-Carpathian Foreland Basin: A litho- and chemostratigraphic marker for the Rzehakia Lake System. Geologica Carpathica, 69/4, 315–334. https://doi.org/10.1515/GEOCA-2018-001910.1515/geoca-2018-0019Search in Google Scholar

Palzer-Khomenko, M., Wagreich, M., Kallanxhi, M.-E., So-liman, A., Knierzinger, W., Meszar, M.-E., Gier, S., 2018b. Facies, palaeogeography and stratigraphy of the lower Miocene Traisen Formation and Wildendürnbach Formation (former “Oncophora Beds”) in the Molasse Zone of Lower Austria. Austrian Journal of Earth Sciences, 111/1, 75–091. https://doi.org/10.17738/ajes.2018.000610.17738/ajes.2018.0006Search in Google Scholar

Papp, A., 1963. Die biostratigraphische Gliederung des Neogens im Wiener Becken. Mitteilungen der Geologischen Gesellschaft Wien, 56, 1, 225–317.Search in Google Scholar

Papp, A., 1967. Mollusken aus dem Aderklaaer Schlier. Annalen des Naturhistorischen Museums in Wien. 71, 341–346.Search in Google Scholar

Papp, A., Küpper, K., 1952. Über die Entwicklung der Heterosteginen im Torton des Wiener Beckens. – Anzeiger der mathematisch-naturwissenschaftlichen Klasse der Österreichischen Akademie der Wissenschaften, 89/10, 110–118.Search in Google Scholar

Papp, A., Turnovsky, K., 1952. Die Entwicklung der Uvigerinen im Vindobon (Helvet und Torton) des Wiener Beckens. – Jahrbuch der Geologischen Bundesanstalt, 96, 117–142.Search in Google Scholar

Papp, A., Steininger, F. 1978. Holostratotypus des Bade-nien. In: Papp, A., Cicha, I., Senes, J. and Steininger, F., (eds.), M4 Badenien (Moravien, Wielicien, Kosovien). Chronostratigraphie und Neostratotypen: Miozän der zentralen Paratethys. Verlag der Slowakischen Akademie der Wissenschaften, Bratislava, 6, pp. 138–145.Search in Google Scholar

Papp A., Rögl F., Seneš J., 1973. M2, Ottnangien: Die Innviertler, Salgótarjáner, Bántapusztaer Schichtengruppe und die Rzehakia Formation. Chronostratigraphie und Neostratotypen: Miozän der zentralen Paratethys. Verlag der Slowakischen Akademie der Wissenschaften, 3, 841 pp.Search in Google Scholar

Papp, A., Cicha, I., Senes, J., Steininger, F., 1978. M4, Bade-nien Moravien, Wielicien, Kosovien. Chronostratigraphie und Neostratotypen: Miozän der zentralen Paratethys. Verlag der Slowakischen Akademie der Wissenschaften, Bratislava, 6, 594 pp.Search in Google Scholar

Papp, A., Grill, R., Janoschek, R., Kapounek, J., Kollmann, K., Turnovsky, K., 1968a. Zur Nomenklatur des Neogens in Österreich (Mit einer stratigraphischen Tabelle). Verhandlungen der Geologischen Bundesanstalt, 1968/1-2, 9–18.Search in Google Scholar

Papp, A., Grill, R., Janoschek, R., Kapounek, J., Kollmann, K., Turnovsky, K., 1968b: Nomenclature of the Neogene of Austria (With a Stratigraphic Chart). Verhandlungen der Geologischen Bundesanstalt, 1968/1-2, 19–27.Search in Google Scholar

Pascher, G.A., Brix, F., 1994. Geologische Karte der Republik Österreich ÖK 77 Eisenstadt 1:50.000. Geologische Bundesanstalt, Wien.Search in Google Scholar

Picha, F.J., Stráník, Z., Krejčí, O., 2006. Geology and hydro-carbon resources of the Outer Western Carpathians and their foreland, Czech Republic. In: Golonka, J. and Picha, F.J. (eds.), The Carpathians and their foreland: Geology and hydrocarbon resources. AAPG Memoir, 84, 49–175.10.1306/985607M843067Search in Google Scholar

Piller, W.E., 1994. Nullipara ramosissima Reuss, 1847 - a re-discovery. Beiträge zur Paläontologie, 19, 181–189.Search in Google Scholar

Piller, W.E., Kleemann, K., 1991. Middle Miocene Reefs and related fades in Eastern Austria. I) Vienna Basin. VI. International Symposium on Fossil Cnidaria including Archaeocyatha and Porifera. Excursion-Guidebook, Excursion B4, Geologisch-Paläontologisches Institut und Museum Münster, Münster, 28 pp.Search in Google Scholar

Piller, W.E., Vavra, N. 1991. Das Tertiär im Wiener- und Eisenstädter Becken. In: Roetzel, R. and Nagel, D., (eds.), Exkursionen im Tertiär Österreichs, Molassezone – Waschberg Zone – Korneuburger Becken – Wiener Becken – Eisenstädter Becken. Österreichische Paläontologische Gesellschaft, Wien, pp. 161–216.Search in Google Scholar

Piller, W.E., Decker, K., Haas, M., 1996. Sedimentologie und Beckendynamik des Wiener Beckens. Exkursionsführer SEDIMENT’96, 11. Sedimentologentreffen Wien, Exkursion A1. Berichte der Geologischen Bundesanstalt, 33, 41 pp.Search in Google Scholar

Piller, W.E., Harzhauser, M., Mandic, O., 2007. Miocene Central Paratethys stratigraphy - current status and future directions. Stratigraphy, 4, 2/3, 151–168.10.29041/strat.04.2.09Search in Google Scholar

Piller, W.E., Kroh, A., Mandic, O., 2007. Der Rauchstallbrunngraben – ein alter Exkursionspunkt. In. Hoffmann, T. (Ed.), Wanderungen in die Erdgeschichte 22 – Wien, Niederösterreich, Burgenland Friedrich Pfeil, München, 141–143.Search in Google Scholar

Piller, W. E., Egger, H., Erhart, C.W., Gross, M., Harzhauser, M., Hubmann, B., Van Husen, D., Krenmayr, H.G., Krystyn, L., Lein, R., Lukeneder, A., Mandl, G.W., Rögl, F., Roetzel, R., Rupp, C., Schnabel, W., Schönlaub, H.P., Summesberger, H., Wagreich, M., Wessely, G., 2004. Die stratigraphische Tabelle von Österreich 2004 sedimentäre Schichtfolgen. Poster, Österreichische Stratigraphische Kommission; Österreichische Akademie der Wissenschaften, Kom-mission für die paläontologische und stratigraphische Erforschung Österreichs.Search in Google Scholar

Pippérr, M., Reichenbacher, B., Kirscher, U., Sant, K. and Hanebeck, H., 2018. The middle Burdigalian in the North Alpine Foreland Basin (Bavaria, SE Germany) – a lithostratigraphic, biostratigraphic and magnetostratigraphic re-evaluation. Newsletters on Stratigraphy, 51/3, 285–309.10.1127/nos/2017/0403Search in Google Scholar

Raffi, I., Backman, J., Fornaciari, E., Pälike, H., Rio, D., Lourens, L., Hilgen, F., 2006. A review of calcareous nannofossil astrobiochronology encompassing the past 25 million years. Quaternary Science Reviews, 25/23–24, 3113–3137. https://doi.org/10.1016/j.quascirev.2006.07.00710.1016/j.quascirev.2006.07.007Search in Google Scholar

Reuss, A.E., 1847. Die fossilen Polyparien des Wiener Tertiärbeckens. Ein monographischer Versuch. Naturwissenschaftliche Abhandlungen (ed. Haidinger, W.), 2,1-109.Search in Google Scholar

Riegl, B., Piller, W.E., 2000. Biostromal Coral Facies: a Miocene Example from the Leitha Limestone (Austria) and its actualistic Interpretation. Palaios, 15, 399–413. https://doi.org/10.1669/0883-1351(2000)015<0399:BC-FAME>2.0.CO;210.1669/0883-1351(2000)015<0399:BCFAME>2.0.CO;2Search in Google Scholar

Roetzel, R., 2009. Erläuterungen zu Blatt 23 Hadres. Geologische Karte der Republik Österreich 1 : 50000. Geologische Bundesanstalt, Wien, 150 pp.Search in Google Scholar

Roetzel, R., De Leeuw, A., Mandic, O., Márton, E., Nehyba, S., Kuiper, K.F., Scholger, R., Wimmer-Frey, I., 2014. Lower Miocene (upper Burdigalian, Karpatian) volcanic ash-fall at the south-eastern margin of the Bohemian Massif in Austria – New evidence from 40Ar/39Ar-dating, palaeomagnetic, geochemical and mineralogical investigations. Austrian Journal of Earth Sciences, 107, 2–22.Search in Google Scholar

Rögl, F., Müller, C., 1976. Das Mittelmiozän und die Baden-Sarmat Grenze in Walbersdorf (Burgenland). Annalen des Naturhistorischen Musuems in Wien, 80, 221–232.Search in Google Scholar

Rögl, F., Ćorić, S., Hohenegger, J., Pervesler, P., Roetzel, R., Scholger, R., Spezzaferri, S., Stingl, K. 2007. The Styrian Tectonic Phase – A Series of Events at the Early/Middle Miocene Boundary Revised and Stratified (Styrian Basin, Central Paratethys). Joannea Geolgie, Paläontologie, 9, 89–91.Search in Google Scholar

Rögl, F., Ćorić, S., Harzhauser, M., Jimenez-Moreno, G., Kroh, A., Schultz, O., Wessely, G., Zorn, I., 2008. The Middle Miocene Badenian stratotype at Baden-Sooss, Lower Austria. Geologica Carpathica, 59, 367–374. http://www.geologicacarpathica.com/browse-journal/volumes/59-5/article-452/Search in Google Scholar

Royden, L.H., 1985. The Vienna Basin: a thin-skinned pull-apart basin. In: Biddle, K.T. and Christie-Blick, N. (Eds.), SEPM Special Publications 37, pp 319–338.10.2110/pec.85.37.0319Search in Google Scholar

Rybár, S., Šarinová, K., Sant, K., Kuiper, K.F., Kováčová, M., Vojtko, R., Reiser, M.K., Fordinál, K., Teodoridis, V., Nováková, P., Vlček, T., 2019. New 40Ar/39Ar, fission track and sedimentological data on a middle Miocene tuff occurring in the Vienna Basin: Implications for the north-western Central Paratethys region. Geologica Carpathica, 70/5, 386–404. https://doi.org/10.2478/geoca-2019-002210.2478/geoca-2019-0022Search in Google Scholar

Salvador, A., 1994. The International Stratigraphic Guide: A guide to stratigraphic classification terminology, and procedure. John Wiley, New York, 214 pp.Search in Google Scholar

Sant, K., Kuiper, K.F., Rybár, S., Grunert, P., Harzhauser, M., Mandic, O., Jamrich, M., Šarinová, K., Hudáčková, N., Krijgsman, W., 2020. 40Ar/39Ar geochronology using high sensitivity mass spectrometry: Examples from middle Miocene horizons of the Central Paratethys. Geologica Carpathica, 71/ 2, 166–182. https://doi.org/10.31577/GeolCarp.71.2.510.31577/GeolCarp.71.2.5Search in Google Scholar

Sauer, R., Seifert, P., Wessely, G., 1992. Guidebook to excursions in the Vienna Basin and the adjacent Alpine-Carpathian thrustbelt in Austria. Mitteilungen der Geologischen Gesellschaft, 85, 264 pp.Search in Google Scholar

Schmid, H.P., Harzhauser, M., Kroh, A. 2001. Hypoxic Events on a Middle Miocene Carbonate Platform of the Central Paratethys Austria, Badenian, 14 Ma. Annalen des Naturhistorischen Museums in Wien, 102A, 1–50.Search in Google Scholar

Schmieder, M., Kennedy, T., Jourdan, F., Buchner, E., Rei-mold, W.U., 2018. A high-precision 40Ar/39Ar age for the Nördlinger Ries impact crater, Germany, and implications for the accurate dating of terrestrial impact events. Geochimica et Cosmochimica Acta, 220, 146–157. https://doi.org/10.1016/j.gca.2017.09.03610.1016/j.gca.2017.09.036Search in Google Scholar

Schultz, O., 2005. Bivalvia neogenica Solenoidea – Clavagelloidea. Catalogus Fossilium Austriae, Österreichische Akademie der Wissenschaften, Wien, 1/3, pp. 691–1212.Search in Google Scholar

Schultz, O., Brzobohatý, R., Kroupa., O., 2010. Fish teeth from the Middle Miocene of Kienberg at Mikulov, Czech Republic, Vienna Basin. Annalen des Naturhistorischen Museums in Wien, 112, 489–506.Search in Google Scholar

Špička, V., 1966. Palaeogeografie a tektonogeneze Vídeňské pánve a příspěvek k její naftově-geologické problematice. Rozpravy Československé Akademie Věd, Řada matematickýchpřírodopisných Věd, 76, 12, 3–118.Search in Google Scholar

Špička V., Zapletalova I., 1964. Nástin korelace karpatu v československé části vídeňské pánve. Sborník geologických ved, Geologie, 8, 125–160.Search in Google Scholar

Steininger, F., Papp, A., 1978. 9. Faziostratotypus: Gross Höflein NNW, Steinbruch “Fenk”, Burgenland, Österreich. In: Papp, A., Cicha, I., Senes, J. and Steininger, F., (eds.), M4 Badenien (Moravien, Wielicien, Kosovien). Chronostratigraphie und Neostratotypen: Miozän der zentralen Paratethys. Verlag der Slowakischen Akademie der Wissenschaften, Bratislava, 6, pp. 194–203.Search in Google Scholar

Steininger, F.F., Piller, W.E., 1999. Empfehlungen (Richtlinien) zur Handhabung der stratigraphischen Nomenklatur. Courierier des Forschungs-Institutes Senckenberg, 209, 1–19.Search in Google Scholar

Stenzel, H.B., 1971. Oysters. Treatise on Invertebrate Pale-ontology, N/3, pp. 953–1224.10.17161/dt.v0i0.5598Search in Google Scholar

Stille, H. 1924. Grundfragen vergleichender Tektonik. Borntraeger, Berlin, 1–443.Search in Google Scholar

Strauss, P., Harzhauser, M., Hinsch, R., Wagreich, M., 2006. Sequence stratigraphy in a classic pull-apart basin Neo-gene, Vienna Basin. A 3D seismic based integrated approach. Geologica Carpathica, 57/3, 185–197.Search in Google Scholar

Studencki, W., 1988. Facies and sedimentary environment of the Pinczow Limestones (Middle Miocene; Holy Cross Mountains, Central Poland. Facies, 18, 1–26.10.1007/BF02536793Search in Google Scholar

Talman, S.G., Keough, M.J., 2001. Impact of an exotic clam, Corbula gibba, on the commercial scallop, Pecten fumatus, in Port Phillip Bay, south-east Australia: evidence of resource-restricted growth in a subtidal environment. Marine Ecology Progress Series, 221, 135–143. https://doi.org/10.3354/meps22113510.3354/meps221135Search in Google Scholar

Tollmann, A., 1955. Das Neogen am Nordwestrand der Eisenstädter Bucht. Wissenschaftliche Arbeiten aus dem Burgenland, 10, 75 pp.Search in Google Scholar

Tollmann, A., 1985. Geologie von Österreich. Band II. Außerzentralalpiner Anteil. Deuticke, Wien, 710 pp.Search in Google Scholar

Vass, D., 2002. Litostratigrafia Západných Karpát: neogén a budínsky paleogén. Štátny geologický ústav D. Štúra, Bratislava, 202 pp.Search in Google Scholar

Vass, D., Nagy, A., Kohút, M., Kraus, I., 1988. Devínskonovoveské vrstvy: Hruboklastické sedimenty na juhovýchodnom okraji Viedenskej panvy. Minerlia Slovaka, 20/2, 109–122.Search in Google Scholar

Wagreich, M., Pervesler, P., Khatun, M., Wimmer-Frey, I., Scholger, R., 2008. Probing the underground at the Badenian type locality: geology and sedimentology of the Baden-Sooss section (Middle Miocene, Vienna Basin, Austria). Geologica Carpathica, 59, 375–394.Search in Google Scholar

Weber, K., Zuschin, M., 2013. Delta-associated molluscan life and death assemblages in the northern Adriatic Sea: implications for paleoecology, regional diversity and conservation. Palaeogeography, Palaeoclimatology, Palaeoecology, 370, 77–91. https://doi.org/10.1016/j.palaeo.2012.11.02110.1016/j.palaeo.2012.11.021356868723407873Search in Google Scholar

Weissenbäck, M., 1995. Ein Sedimentationsmodell für das Unter- bis Mittelmiozän Karpatien-Badenien des zentralen Wiener Beckens. Dissertation am Geologischen Institut der Universität Wien, 154 pp.Search in Google Scholar

Weissenbäck, M., 1996. Lower to Middle Miocene sedimentation model of the central Vienna Basin. In: Wessely, G. and Liebl, W. (Eds.), Oil and Gas in alpidic thrustbelts and basins of Central and Eastern Europe. European Association of Geoscientists and Engineers EAGE, Special Publications 5, pp. 355–363.Search in Google Scholar

Wessely, G., 1983. Zur Geologie und Hydrodynamik im südlichen Wiener Becken und seiner Randzone: Mitteilungen der Österreichischen Geologischen Gesellschaft, 76, 27–68.Search in Google Scholar

Wessely, G., 2000. Sedimente des Wiener Beckens und seiner alpinen und subalpinen Unterlagerung. Mitteilungen der Gesellschaft für Geologie und Bergbaustudenten Österreichs, 44, 191–214.Search in Google Scholar

Wessely, G., 2006. Niederösterreich. Geologie der Österreichischen Bundesländer. Geologische Bundesanstalt Wien, 416 pp.Search in Google Scholar

Wessely, G., Ćorić, S., Rögl, F., Zorn, I., 2007a. Stratigraphy of the Thermal Water Area Baden - Bad Vöslau at the Western Border of the Southern Vienna Basin. Scripta Facultatis Scientiarum Naturalium Universitatis Masarykianae Brunensis, Geology, 36, 39–44.Search in Google Scholar

Wessely, G., Ćorić, S., Rögl, F., Draxler, I., Zorn, I., 2007b. Geologie und Paläontologie von Bad Vöslau (Niederöster-reich). Jahrbuch der Geologischen Bundesanstalt, 147, 419–448.Search in Google Scholar

Wiedl, T., Harzhauser, M., Piller, W.E., 2012. Facies and synsedimentary tectonics on a Badenian carbonate platform in the southern Vienna Basin Austria, Central Paratethys. Facies, 58, 523–548. https://doi.org/10.1007/s10347-011-0290-010.1007/s10347-011-0290-0Search in Google Scholar

Wiedl, T., Harzhauser, M., Kroh, A., Ćorić, S., Piller, W.E., 2013. Ecospace variability along a carbonate platform at the northern boundary of the Miocene reef belt Upper Langhian, Austria Palaeogeography, Palaeoclimatology, Palaeoecology, 370, 232–246, http://dx.doi.org/10.1016/j.palaeo.2012.12.01510.1016/j.palaeo.2012.12.015Search in Google Scholar

Wiedl, T., Harzhauser, M., Kroh, A., Ćorić, S., Piller, W.E., 2014. From biologically to hydrodynamically controlled carbonate production by tectonically induced palaeogeographic rearrangement Middle Miocene, Pannonian Basin. Facies, 60, 865–881. https://doi.org/10.1007/s10347-014-0408-210.1007/s10347-014-0408-2Search in Google Scholar

Zuschin, M., Harzhauser, M., Mandic, O., 2007. The strati-graphic and sedimentologic framework of fine-scale faunal replacements in the Middle Miocene of the Vienna Basin Austria. Palaios, 22, 285–295. https://doi.org/10.2110/palo.2005.p05-023r10.2110/palo.2005.p05-023rSearch in Google Scholar

Zuschin, M., Harzhauser, M., Hengst, B., Mandic, O., Roetzel, R., 2014. Long-term ecosystem stability in an Early Miocene estuary. Geology, 42, 1–4. https://doi.org/10.1130/G34761.110.1130/G34761.1Search in Google Scholar

eISSN:
2072-7151
Lingua:
Inglese
Frequenza di pubblicazione:
Volume Open
Argomenti della rivista:
Geosciences, Geophysics, Geology and Mineralogy, other