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Eksploracja głębin Morza Karaibskiego w rejonie wyspy Roatán (Honduras) przez polskich paleontologów : teraźniejszość kluczem do poznania przeszłości

Treść / Zawartość
Identyfikatory
Warianty tytułu
EN
Deep-sea exploration of the Caribbean Sea in the area of Roatán Island (Honduras) from the point of view of Polish palaeontologists : the present is the key to the past.
Języki publikacji
PL
Abstrakty
EN
The island margin of Isla de Roatán is a unique place of outstanding scientific and didactic values, with one of the longestcoral reef and an astonishing fauna inhabiting the deep sea zones. The unique geomorphological conditions enable to perform shore-based submersible operations at great depths. In this paper a short report from our dive down to about 650 m is presented. Our preliminary dive was used to document a diverse faunal assemblage, which allowed for a better understanding of the fossil record.
Rocznik
Strony
71--81
Opis fizyczny
Bibliogr. 28 poz., fot., rys.
Twórcy
  • Instytut Paleobiologii PAN, ul. Twarda 51/55, 00-818 Warszawa
  • Instytut Nauk o Ziemi, Wydział Nauk Przyrodniczych, Uniwersytet Śląski w Katowicach, ul. Będzińska 60, 41-200 Sosnowiec
Bibliografia
  • 1. BALDWIN C.C., TORNABENE L., ROBERTSON D.R. 2018 - Below the Mesophotic. Scientific Reports, 8: 4920.
  • 2. BAUCON A., FELLETII F. 2013 - Neoichnology of a barrier-island system: The Mula di Muggia (Grado lagoon, Italy). Palaeogeogr., Palaeoclim., Palaeoecol., 375: 112-124.
  • 3. BAUMILLER T.K., SALAMON M.A., GORZELAK P., MOOI R., MESSING CH.G., GAHN F.J. 2010 - Post-Paleozoic crinoid radiation in response to benthic predation preceded the Mesozoic marine revolution. Proc. National Academy of Sciences of the United States of America, 107: 5893-5896.
  • 4. CHERBONNIER G., GUILLE A. 1972 - Sur une espėce actuelle de crinoïde crétacique de la famille Holopidae: Cyathidium foresti nov. sp. Comptes Rendus de l'Académie de Sciences, Paris, 274: 2193-2196.
  • 5. ETNOYER P.J., MESSING C.G., STANLEYK.A., BAUMILLER T.K., LAVELLE K., SHIRLEYT.C. 2022 - Diversity and time-series analyses of Caribbean deep-sea coral and sponge assemblages on the tropical island slope of Isla de Roatán, Honduras. Marine Biodiversity, 52: 8.
  • 6. FALKOWSKI P.G., KNOLL A.H. 2007 - Evolution of primary producers in the sea. Elsevier Academic Press, Amsterdam.
  • 7. GŁUCHOWSKI E. 1987 - Jurassic and early Cretaceous Articulate Crinoidea from the Pieniny Klippen belt and the Tatra Mts, Poland. Studia Geol. Polon., 94: 6-102.
  • 8. GORZELAK P., SALAMON M.A., BAUMILLER T. 2012 - Predator-induced macroevolutionary trends in Mesozoic crinoids. Proc. National Academy of Sciences of the United States of America, 109: 7004-7007.
  • 9. HEINZELLER T., FRICKE H., BOURSEAU J.-P., AMÉZIANE-COMINARDI N., WELSCH U. 1996 - Cyathidium plantei sp.n., an extant cyrtocrinid (Echinodermata, Crinoidea) - morphologically identical to the fossil Cyathidium depressum (Cretaceous, Cenomanian). Scripta Zool., 25: 77-84.
  • 10. HESS H. 1999 - Recent. [W:]Hess H., Ausich W.I., Brett C.E., SimmsM.J. (red.), Fossilcrinoids. Cambridge University Press, Cambridge: 237-244. https://stanleysubmarines.com
  • 11. JAKUBOWICZ M., BERKOWSKI B., BEŁKA Z. 2014 - Cryptic coral-crinoid “hanging gardens” from the Middle Devonian of southern Morocco. Geology, 42: 119-122.
  • 12. JAMIESONA.J., MALKOCS T., PIERTNEYS.B., FUJII T., ZHANG Z. 2017 - Bioaccumulation of persistent organic pollutants in the deepest ocean fauna. Nature Ecology & Evolution, 1: 0051.
  • 13. LEE Z. P., WEIDEMANN A., KINDLE J., ARNONE R., CARDER K.L., DAVIS C. 2007 - Euphotic zone depth: Its derivation and implication to ocean-colorremote sensing. J. Geophysical Res.: Oceans,112: C03009.
  • 14. MACURDA D.B.JR., MEYER D.L. 1974 - Feeding posture of modern stalked crinoids. Nature, 247: 394-396.
  • 15. MESSING C.G., NEUMANN A.C., LANG J.C. 1990 - Biozonation of deep-water lithoherms and associated hardgrounds in the northeastern Straits of Florida. Palaios, 5: 15-33.
  • 16. ROSENCRANTZ E., MANN P. 1991 - SeaMARC II mapping of transform faults in the Cayman Trough. Caribbean Sea Geol., 19: 690-693.
  • 17. SALAMON M.A. 2008a - The Callovian (Middle Jurassic) crinoids from northern Lithuania. Paläont. Zeitschr., 82: 269-278.
  • 18. SALAMON M.A. 2008b - Jurassic cyrtocrinids (Cyrtocrinida, Crinoidea) from extra-Carpathian Poland. Palaeontographica Abt. A, 285: 77-99.
  • 19. SALAMON M.A. 2008c - The Callovian (Middle Jurassic) crinoids from the black clays of the Łuków area, eastern Poland. Neues Jahrb. für Geologie und Paläontologie Abh., 247: 133-146.
  • 20. SALAMON M.A. 2009 - Early Cretaceous (Valanginian) sea lilies (Echinodermata, Crinoidea) from Poland. Swiss J. Geosci., 102: 77-88.
  • 21. SALAMON M.A., FELDMAN-OLSZEWSKA A., JAIN S., FERRÉ B.B.M., PASZCZA K., PŁACHNO B.J. 2021 - Substrate type and palaeodepthdo not affect the Middle Jurassic taxonomic diversity of crinoids. Peer J, 9: e12017.
  • 22. SALAMON M.A., JAIN S., BRACHANIEC T., DUDA P., PŁACHNO B.J., GORZELAK P. 2022 - Ausichicrinites zelenskyyi gen. et sp. nov., a first nearly complete feather star (Crinoidea) from the Upper Jurassic of Africa. Royal Soc. Open Sci., 9: 220345.
  • 23. SOUTHWARD A.J., BLAXTER J.H.S. 1997 - Advances in marine biology. The biogeography of the oceans. Academic Press, London: 596.
  • 24. SUTTON S., GOTTARDI R., KINSLAND G.L. 2015 - Structural and geophysical analysis on Roatan Island, Honduras, Western Caribbean. Geol. Soc. America Ann. Meeting, Baltimore, Maryland.
  • 25. SYVERSON V.J., MESSING C.G., STANLEY K., BAUMILLER T.K. 2015 - Growth, injury, and population dynamics in the extant cyrtocrinid Holopus mikihe (Crinoidea, Echinodermata) near Roatán, Honduras. Bull. Marine Sci., 91: 47-61.
  • 26. TORNABENE L., ROBERTSON D.R., BALDWIN C.C. 2018 - Anew species of Lipogramma from deep reefs of Roatan, Honduras (Teleostei, Grammatidae). ZooKeys, 809: 79-95.
  • 27. VEITCH M.A. 2022 - Reflecting the Past in the Present: How Studying Living Crinoids Sheds Light on Their Fossil Record. PhD thesis. Earth and Environmental Sciences in the University of Michigan. Ann. Arbor.: 1-187.
  • 28. VEITCH M.A., BAUMILLER T.K. 2021 - Low predation intensity on the stalked crinoid Democrinus sp. (Echinodermata) in Roatán, Honduras reveals deep water as likely predation refuge. Bull. Marine Sci., 97: 107-128.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2024)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5d7fd4d8-468f-4e3d-a810-be8c09e8ec69
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