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Ichnos
An International Journal for Plant and Animal Traces
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Research Articles

The Jurassic–Cretaceous boundary in the Kurovice section (Southern Moravia, Czech Republic): trace fossils, stable isotopes, and magnetic susceptibility

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References

  • Barragán, R., López-Martínez, R., Chávez-Vergara, B., Núñez-Useche, F., Salgado-Garrido, H., & Merino, A. (2020). Geochemical variations across the Jurassic/Cretaceous boundary in central Mexico. Insights for correlation with Tethyan areas. Journal of South American Earth Sciences 99, 102521.
  • Baucon, A., Bednarz, M., Dufour, S., Felletti, F., Malgesini, G., Neto de Carvalho, C., Niklas, K.J., Wehrmann, A., Batstone, R., Bernardini, F., Briguglio, A., Cabella, R., Cavalazzi, B., Ferretti, A., Zanzerl, H., & McIlroy, D. (2020). Ethology of the trace fossil Chondrites: Form, function and environment. Earth Science Review, 202,
  • Benešová, E., Eliáš, M., & Matějka, A. (1968). Geology of the Kurovice Klippe. Sborník Geologických Věd, Geologie 13: 7–33.
  • Benešová, E., Hanzlíková E., & Matějka, A. (1962). Příspěvek ke geologii kurovického bradla. Zprávy o geologických Výzkumech v Roce 1961: 185–186. (In Czech)
  • Bertling, M., Buatois, L. A., Knaust, D., Laing, B., Mángano, M. G., Meyer, N., Mikuláš, R., Minter, N. J., Neumann, C., Rindsberg, A. K., Uchman, A., Wisshak, M. (2022). Names for trace fossils 2.0: Theory and practice in ichnotaxonomy. Lethaia, 55, 3, 1-19.
  • Boyle, R. A., Dahl, T. W., Bjerrum, C. J., & Canfield, D. E. (2018). Bioturbation and directionality in Earth’s carbon isotope record across the Neoproterozoic–Cambrian transition. Geobiology, 16(3), 252–278.
  • Bromley, R. G. (1967). Some observations on burrows of thalassinidean Crustacea in chalk hardgrounds. Quarterly Journal of the Geological Society, 123(1-4), 157–177.
  • Bromley, R. G. (1996). Trace fossils. Biology, taphonomy and applications (2nd ed., pp. xvi + 361). Chapman & Hall.
  • Bromley, R. G., & D’Alessandro, A. (1987). Bioerosion of the Plio-Pleistocene transgression of southern Italy. Rivista Italiana Di Paleontologia e Stratigrafia, 93, 379–442.
  • Brongniart, A. (1828). Essai d‘une Flore du grès bigarré. Annales des sciences naturelles, 15, 435–460.
  • Buatois, L. A., & Mángano, M. G. (2011). Ichnology: Organism-Substrate interactions in space and time (pp. 366). Cambridge University Press.
  • Crimes, T. P., Legg, I., Marcos, A., & Arboleya, A. (1977). Late precambrian - low lower Cambrian trace fossils from Spain. In T. P. Crimes, & J. C. Harper (Eds.), Trace fossils 2. Geological Journal Special Issue (Vol. 9, pp. 91–138). The University of Liverpool.
  • Da Silva, A.C., Whalen, M.T., Hladil, J., Chadimova, L., Chen, D., Spassov, S., Boulvain, F., & Devleeschouwer, X. (Eds) (2015). Magnetic susceptibility application: A Window onto ancient environments and climatic variations (Vol. 414, pp. 1–13). Geological Society Special Publications.
  • Desai, B. G., & Saklani, R. D. (2014). Ichnofabric analysis of the Tithonian shallow marine sediments (Bhadasar Formation) Jaisalmer Basin, India. Journal of Earth System Science, 123(6), 1413–1431.
  • Droser, M. L., & Bottjer, D. J. (1986). A semiquantitative classification of ichnofabric. Journal of Sedimentary Petrology, 56(4), 558–559.
  • Ehrenberg, K. (1944). Ergänzende Bemerkungen zu den Seinerzeit aus dem Miozän von burgschleinitz Beschriebenen Gangkernen und Buten dekapoder Krebse. Paläontologische Zeitschrift, 23(3-4), 354–359.
  • Elbra, T., Bubík, M., Reháková, D., Schnabl, P., Čížková, K., Pruner, P., Kdýr, Š., Svobodová, A., & Švábenická, L. (2018). Magneto- and biostratigraphy across the Jurassic-Cretaceous boundary in the Kurovice section, Western Carpathians, Czech Republic. Cretaceous Research, 89, 211–223.
  • Eliáš, M., & Eliášová, H. (1985). Tlmačovské slieňovce. In D. Andrusov & O. Samuel (Eds.), Stratigrafický slovník Západných Karpát (2nd ed., pp. 272). Geologický Ústav Dionýza Štúra. (In Slovak)
  • Eliáš, M., Martinec, P., Reháková, D., & Vašíček, Z. (1996). Geologie a stratigrafie kurovických vápenců a tlumačovských slínovců v kurovickém lomu (svrchní jura, spodní křída, Vnější západní Karpaty, Česká republika. Věstník Českého geologického ústavu, 71, 259–275. (In Czech)
  • Frey, R. W. (1970). Trace fossils of fort hays limestone member of Niobrara chalk (upper cretaceous), west-central Kansas. University of Kansas Paleontological Contributions, 53, 1–41.
  • Gibert, J. D., & Ekdale, A. A. (1999). Trace fossil assemblages reflecting stressed environments in the middle Jurassic Carmel seaway of Central Utah. Journal of Paleontology, 73(4), 711–720.
  • Glocker, E. F. (1841). Über den Jurakalk von Kurowitz in Mähren und űber den darin vorkommenden Aptychus imbricatus. Verhandlungen der Kaiserlichen Leopoldinisch-Carolinischen Akademie der Naturforscher, 19, 1–36.
  • Grabowski, J., Bakhmutov, V., Kdýr, Š., Krobicki, M., Pruner, P., Reháková, D., Schnabl, P., Stoykova, K., & Wierzbowski, H. (2019). Integrated stratigraphy and palaeoenvironmental interpretation of the Upper Kimmeridgian to Lower Berriasian pelagic sequences of the Velykyi Kamianets section (Pieniny Klipen Belt, Ukraine). Palaeogeography, Palaeoclimatology, Palaeoecology, 532, 109216.
  • Grabowski, J., Haas, J., Stoykova, K., Wierzbowski, H., & Brański, P. (2017). Environmental changes around the Jurassic/Cretaceous transition: New nannofossil, chemo­stratigraphic and stable isotope data from the Lokút sec­tion (Transdanubian Range, Hungary). Sedimentary Geology, 360, 54–72.
  • Hall, J. (1852). Palaeontology of New York, II (pp. 338). Albany.
  • Hanken, N.-M., Uchman, A., Nielsen, J. K., Olaussen, S., Eggebø, T., & Steinsland, R. (2016). Late Ordovician trace fossils from offshore to shallow water mixed siliciclastic and carbonate facies in the Ringerike area, Oslo region, Norway. Ichnos, 23(3-4), 189–221.
  • Höck, V., Slaczka, A., & Uchman, A. (2006). New biostratigraphic and palaeoenvironmental data on metamorphosed limestones from the northern margin of the Tauern Window (Eastern Alps, Austria). Austrian Journal of Earth Sciences, 99, 42–56.
  • Jach, R., Reháková, D., & Uchman, A. (2012). Biostratigraphy and palaeoenvironment of the Kimmeridgian–Lower Tithonian pelagic deposits of the Krížna Nappe, Lejowa Valley, Tatra Mts. (southern Poland). Geological Quarterly, 56(4), 773–788.
  • Kędzierski, M., Uchman, A., Sawlowicz, Z., & Briguglio, A. (2015). Fossilized bioelectric wire – the trace fossil Trichichnus. Biogeosciences (Online), 12(8), 2301–2309.
  • Kennedy, W. J. (1975). Trace fossils in carbonate rocks. In R.W. Frey (Ed.), The study of trace fossils (pp. 562). Springer.
  • Knaust, D., & Bromley, R.G. (eds.) (2012). Trace fossils as indicators of sedimentary environments. In Developments in Sedimentology (Vol. 64, pp. 955). Elsevier Science, Oxford.
  • Knaust, D. (2008). Balanoglossites Mägdefrau, 1932 from the Middle Triassic of Germany: Part of a complex trace fossil probably produced by burrowing and boring polychaetes. Paläontologische Zeitschrift, 82(4), 347–372.
  • Knaust, D. (2021). Balanoglossites-burrowed firmgrounds – The most common ichnofabric on earth? Earth-Science Reviews, 220, 103747.
  • Knaust, D., & Dronov, A. V. (2013). Balanoglossites ichnofabrics from the Middle Ordovician Volkhov formation (St. Petersburg Region, Russia). Stratigraphy and Geological Correlation, 21(3), 265–279.
  • Košťák, M., Vaňková, L., Mazuch, M., Bubík, M., & Reháková, D. (2018). Stable isotope record (δ13C, δ18O), invertebrates and small vertebrate fauna from the Jurassic-Cretaceous transition of the Kurovice quarry (Czech Republic, Outer Western Carpathians). Cretaceous Research, 92, 43–65.
  • MacLeay, W. S. (1839). Note on the Annelida. In R. I. Murchison (Ed.), The Silurian system, part II: Organic remains (pp. 699–701). J. Murray.
  • Mägdefrau, K. (1932). Über einige Bohrgänge aus dem Unteren Muschelkalk von Jena. Paläontologische Zeitschrift, 14(3), 150–160.
  • Mángano, M. G., Buatois, L. A., Maples, C. G., & West, R. R. (2000). A new ichnospecies of Nereites from Carboniferous tidal-flat facies of eastern Kansas, USA: Implications for the Nereites–Neonereites debate. Journal of Paleontology, 74(1), 149–157.
  • Mángano, M.G., & Buatois, L.A. (Eds.) (2016a). The trace-fossil record of major evolutionary events. Volume 1: Precambrian and Paleozoic. Springer Topics in Geobiology (Vol. 39, pp. 358). Springer Dordrecht
  • Mángano, M.G., & Buatois, L.A. (Eds.) (2016b). The trace-fossil record of major evolutionary events. Volume 2: Mesozoic and Cenozoic. Springer Topics in Geobiology (Vol. 40, pp. 485). Springer Dordrecht
  • Michalík, J., Grabowski, J., Lintnerová, O., Reháková, D., Kdýr, Š., & Schnabl, P. (2021). Jurassic - Cretaceous boundary record in Carpathian sedimentary sequences. Cretaceous Research, 118, 104659. 10.1016/j.cretres.2020.104659
  • Mikuláš, R. (1992). Early Cretaceous borings from Štramberk (Czechoslovakia). Časopis pro mineralogii a geologii, 37(4), 297–312.
  • Mikuláš, R., Kadlecová, E., & Bruthansová, J. (2018). Interactions between ichnofossils, body fossils and lithology studied by computer tomography (Šárka Formation, Ordovician of the Barrandian area, Czech Republic). Geoscience Research Reports, 51, 189–193.
  • Neumann, C., Wisshak, M., & Bromley, R. G. (2008). Boring a mobile domicile: An alternative to the conchicolous life habit. In M. Wisshak, & L. Tapanila (Eds.), Current developments in bioerosion. Springer.
  • Nicholson, H. A. (1873). Contributions to the study of the errant annelids of the older Palaeozoic rock. Proceedings of the Royal Society of London, 21, 288–290.
  • Noffke, N. (2000). Extensive microbial mats and their influences on the erosional and depositional dynamics of a siliciclastic cold water environment (lower Arenigian, Montagne Noire, France). Sedimentary Geology, 136(3-4), 207–215.
  • Pemberton, S. G., & Frey, R. W. (1982). Trace fossil nomenclature and the Planolites – Palaeophycus dilemma. Journal of Paleontology, 56, 843–881.
  • Prantl, F. (1945). Dvě záhadné zkameněliny (stopy) z vrstev chrustenickch - dδ2. Rozpravy II. Třídy České Akademie, 55, 3–8.
  • Price, G. D., Főzy, I., & Pálfy, J. (2016). Carbon cycle history through the Jurassic–Cretaceous boundary: A new global δ13C stack. Palaeogeography, Palaeoclimatology, Palaeoecology, 451, 46–61.
  • Reháková, D. (2000). Evolution and distribution of the Late Jurassic and Early Cretaceous calcareous dinoflagellates recorded in the Western Carpathians pelagic carbonate facies. Mineralia Slovaca, 32, 79–88.
  • Reháková, D., & Michalı́k, J. (1997). Evolution and distribution of calpionellids - the most characteristic constituents of Lower Cretaceous Tethyan microplankton. Cretaceous Research, 18(3), 493–504.
  • Remane, J., Borza, K., Nagy, I., Bakalova-Ivanova, D., Knauer, J., Pop, G., & Tardi-Filácz, E. (1986). Agreement on the subdivision of the standard calpionellid zones defined at the 2nd Planktonic Conference Roma, 1970. Acta Geologica Hungarica, 29, 5–14.
  • Reolid, M., Rodriguez-Tovar, F. J., Nagy, J., & Olóriz, F. (2008). Foraminiferal assemblages as palaeoenvironmental bioindicators in Late Jurassic epicontinental platforms: Relation with trophic conditions. Acta Palaeontologica Polonica, 53(4), 705–722.
  • Richter, R. (1850). Aus der thuringischen Grauwacke. Deutsche Geologische Gesellschaft, 2, 198–206.
  • Rieth, A. (1932). Neue Funde spongeliomorpher Fucoiden aus dem Jura Schwabens. Geologische und palaeontologische Abhandlungen, 19, 257–294.
  • Savrda, C. E. (2012). Chalk and Related Deep-Marine Carbonates, 777-806. In D. Knaust & R.G. Bromley (Eds.), Trace Fossils as Indicators of Sedimentary Environments. Developments in Sedimentology (Vol. 64, pp. 955). Elsevier Science, Oxford.
  • Schafhäutl, K. F. E. (1851). Geognostiche Untersuchungen des Siidbayerischen Alpengebirges (pp. 206). Literatisch-artistische Anstalt.
  • Schlirf, M. (2000). Upper Jurassic trace fossils from the Boulonnais (northern France). Geologica et Palaeontologica, 34, 145–213.
  • Schobben, M., van de Velde, S., Gliwa, J., Leda, L., Korn, D., Struck, U., Ullmann, C. V., Hairapetian, V., Ghaderi, A., Korte, C., Newton, R. J., Poulton, S. W., & Wignall, P. B. (2017). Latest Permian carbonate carbon isotope variability traces heterogeneous organic carbon accumulation and authigenic carbonate formation. Climate of the Past, 13(11), 1635–1659.
  • Sternberg, K. V. (1833). Versuch einer geognostisch-botanischen Darstellung der Flora del Vorwelt. Prague, 5-6, 1–161.
  • Svobodová, A., Švábenická, L., Reháková, D., Svobodová, M., Skupien, P., Elbra, T., & Schnabl, P. (2019). The Jurassic/Cretaceous boundary and high resolution biostratigraphy of the pelagic sequences of the Kurovice section (Outer Western Carpathians, the northern Tethyan margin). Geologica Carpathica, 70(2), 153–182.
  • Tchoumatchenco, P., & Uchman, A. (2001). The oldest deep-sea Ophiomorpha and Scolicia and associated trace fossils from the Upper Jurassic-Lower Cretaceous deep-water turbidite deposits of SW Poland. Palaeogeography, Palaeoclimatology, Palaeoecology, 169(1-2), 85–99.
  • Tremolada, F., Bornemann, A., Bralower, T. J., Koeberl, C., & van de Schootbrugge, B. (2006). Paleoceanographic changes across the Jurassic/Cretaceous boundary: The calcareous phytoplankton response. Earth and Planetary Science Letters, 241(3-4), 361–371.
  • Uchman, A., Janbu, N. E., & Nemec, W. (2004). Trace fossils in the Cretaceous–Eocene flysch of the Sinop–Boyabat Basin, Central Pontides, Turkey. Annales Societatis Geologorum Poloniae, 74, 197–235.
  • Vaňková, L., Elbra, T., Pruner, P., Vašíček, Z., Skupien, P., Reháková, D., Schnabl, P., Košťák, M., Švábenická, L., Svobodová, A., Bubík, M., Mazuch, M., Čížková, K., & Kdýr, Š. (2019). Integrated stratigraphy and palaeoenvironment of the Berriasian peri-reefal limestones at Štramberk (Outer Western Carpathians, Czech Republic). Palaeogeography, Palaeoclimatology, Palaeoecology, 532, 109256.
  • Vašíček, Z. (1992). Aptychi from Kurovice Klippe and their stratigraphic value. Scripta Facultatis Scientiarum Naturalium Universitatis Masarykianae Brunensis Geology, 22, 65–66.
  • Weissert, H., & Erba, E. (2004). Volcanism, CO2 and palaeoclimate: A Late Jurassic-Early Cretaceous carbon and oxygen isotope record. Journal of the Geological Society, 161(4), 695–702.
  • Wetzel, A. (1989). Influence of heat flow on ooze/chalk cementation: Quantification from consolidation parameters in DSDP sites 504 and 505 sediments. Journal of Sedimentary Petrology, 59, 539–547.
  • Wetzel, A., & Uchman, A. (1998). Trophic level in the deep-sea recorded by ichnofabrics: An example from Palaeogene flysch in the Carpathians. PALAIOS, 13(6), 533–546.
  • Wilson, J. L. (1975). Carbonate facies in geologic history (pp. 471). Springer-Verlag.

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