Tytuł artykułu
Autorzy
Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
An integrated planktonic foraminifer and ammonoid biostratigraphy for the Oyubari area, Japan, provides new insights into the late Albian to early Cenomanian biochronology of the North Pacific province. The following foraminifers extend Tethyan zonation to the Oyubari area: Biticinella breggiensis (lower Upper Albian), Rotalipora subticinensis - Rotalipora ticinensis (middle Upper Albian), Rotalipora appenninica (upper Upper Albian), and Rotalipora globotruncanoides (Lower Cenomanian) zones. Co-occuring age-indicative ammonoids such as Mortoniceras rostratum, Mariella bergeri, and Mantelliceras saxbii, are in accord with these foraminifer ages. The base of the Cenomanian stage in Hokkaido is recognized as the first occurrence of Rotalipora globotruncanoides, which is close to the horizon of the occurrence of Mantelliceras. The first occurrence of Desmoceras (Pseudohligella) japonicum, regarded as a Cenomanian marker species in the North Pacific province, is of latest Albian age in the global biochronological scale.
Czasopismo
Rocznik
Tom
Strony
81--91
Opis fizyczny
Bibliogr. 46 poz., tabl., tab., wykr.
Twórcy
autor
- Department of Earth Sciences, School of Education, Waseda University, Shinjuku-ku, Tokyo, Japan
autor
- Department of Earth Science, Graduate School of Social and Cultural Studies, Kyushu University, Chuo-Ku, Fukuoka, Japan
autor
- Department of Geology, National Science Museum, Shinjuku-ku, Tokyo, Japan
autor
- Department of Earth Science, Graduate School of Social and Cultural Studies, Kyushu University, Chuo-Ku, Fukuoka, Japan
autor
- Department of Earth Science, Graduate School of Social and Cultural Studies, Kyushu University, Chuo-Ku, Fukuoka, Japan
Bibliografia
- 1. ALABUSHEV, A. 1995. Ammonite faunas and biostratigraphy of the Albian to Middle Cenomanian (Cretaceous) in western Korjak-Kamchatka, NE Russia. Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen, 196, 109-139.
- 2. ANDO, H. (in press) Stratigraphic correlation of Upper Cretaceous to Paleocene forearc basin sediments in Northeast Japan: cyclic sedimentation and basin evolution. Journal of Asian Earth Sciences.
- 3. AMÉDRO, F. 2002. Playdoyer pour un étage Vraconnien entre l’Albien sensu stricto et lé Cénomanien (systeme Crétacé). Académie Royale de Belgique, Publication de la Classe des Sciences Collection in-4o, 3e série Tome IV, 128 pp.
- 4. BENGTSON, P. 1983. The Cenomanian-Coniacian of the Sergipe Basin, Brazil. Fossils and Strata, 12, 1-78.
- 5. BIRKELUND, T., HANCOCK, J.M., HART, M.B., RAWSON, P.F., REMANE, J., ROBASZYNSKI, F., SCHMID, F. & SURLYK, F. 1984. Cretaceous stage boundaries-Proposals. Bulletin of the Geological Society of Denmark, 33, 3-20.
- 6. BRÉHÉRET, J.-G. 1988. Episodes de sédimentation riche en matiére organique dans les marnes bleues d’âge aptien et albien de la partie pélagique du bassin vocontien. Bulletin de la Société Géologique de France, Series 8, 4, 349-386.
- 7. CARON, M. 1985. Cretaceous planktic foraminifera. In: H.M. BOLLI, J.B. SAUNDERS & K. PERCH-NIELSEN (Eds), Plankton stratigraphy. pp. 17-86. Cambridge University Press; Cambridge.
- 8. CLARKE, L.J. & JENKYNS, H.C. 1999. New oxygen isotope evidence for long-term Cretaceous climatic change in the Southern Hemisphere. Geology, 27, 699-702.
- 9. ERBACHER, J. & THUROW, J. 1997. Influence of oceanic anoxic events on the evolution of mid-Cretaceous radiolaria in the North Atlantic and western Tethys. Marine Micropaleontology, 30, 139-158.
- 10. ERBACHER, J., THUROW, J. & LITTKE, R. 1996. Evolution patterns of radiolaria and organic matter variations: A new approach to identify sea-level changes in mid-Cretaceous pelagic environments. Geology, 24, 499-502.
- 11. GALE, A.S., KENNEDY, W.J., BURNETT, J.A., CARON, M. & KIDD, B.E. 1996. The Late Albian to Early Cenomanian succession at Mont Risou near Rosans (Drôme, SE France): an integrated study (ammonites, inoceramids, planktonic foraminifera, nannofossils, oxygen and carbon isotopes). Cretaceous Research, 17, 515-606.
- 12. GRADSTEIN, F.M., AGTERBERG, F.P., OGG, J.G., HARDENBOL, J., VAN VEEN, P., THIERRY, J. & HUANG, Z. 1995. A Triassic, Jurassic and Cretaceous time scale. In: W.A. BERGGREN, D.V. KENT, M.P. AUBRY & J. HARDENBOL (Eds.), Geochronology, Time Scale and Global Correlation. SEPM Special Publication, 54, 95-126.
- 13. HANCOCK, J.M. 1984. Some possible boundary-stratotypes for the base of the Cenomanian and Turonian Stages. Bulletin of the Geological Society of Denmark, 33, 123-128.
- 14. HARDENBOL, J., THIERRY, J., FARLEY, M.B., JAQUIN, T., DE GRACIANSKY, P-C & VAIL, P.R. 1998. Cretaceous chronostratigraphy. In: P-C DE GRACIANSKY, J. HARDENBOL, T. JAQUIN & P.R. VAIL (Eds.), Mesozoic and Cenozoic sequence chronostratigraphic framework of European basins. SEPM Special Publication, 60 (chart).
- 15. HASEGAWA, T. 1997. Cenomanian-Turonian carbon isotope events recorded in terrestrial organic matter from northern Japan. Palaeogeography, Palaeoclimatology, Palaeoecology, 130, 251-273.
- 16. JELETZKY, J.A. 1977. Mid-Cretaceous (Aptian to Coniacian) history of Pacific slope of Canada. Palaeontological Society of Japan, Special Papers, 21, 97-126.
- 17. JONES, D.L. 1967. Cretaceous ammonites from the lower part of the Matanuska Formation, southern Alaska. U.S. Geological Survey Professional Paper, 547, 1-49.
- 18. KAIHO, K., FUJIWARA, O. & MOTOYAMA, I. 1993. Mid-Cretaceous faunal turnover of intermediate-water benthic foraminifera in northwestern Pacific Ocean margin. Marine Micropaleontology, 23, 13-49.
- 19. KAWABE, F. 2000. Cretaceous stratigraphy in the Oyubari area, central Hokkaido, Japan. Bulletin of the National Science Museum, Tokyo, Series C, Geology, 26, 9-56.
- 20. KAWABE, F. & HAGGART, J.W. 2003. The ammonoid Desmoceras in the Upper Albian (Lower Cretaceous) of Japan. Journal of Paleontology, 77, 314-322.
- 21. KAWABE, F. HIRANO, H. & TAKAGI, K. 1996. Biostratigraphy of the Cretaceous System in the northern Oyubari area, Hokkaido. The Journal of the Geological Society of Japan, 102, 440-459. [In Japanese with English abstract]
- 22. LÓPEZ-HORGUE, M.A., OWEN, H.G., RODRÍGUEZ-LÁZARO, J., ORUE-ETXEBARRIA, X., FERNÁNDEZ-MENDIOLA, P.A. & GARCÍA-MONDÉJAR, J. 1999. Late Albian-Early Cenomanian stratigraphic succession near Estella-Lizarra (Navarra, central northern Spain) and its regional and interregional correlation. Cretaceous Research, 20, 369-402.
- 23. MANCINI, E.A. 1979. Late Albian and early Cenomanian Grayson ammonite biostratigraphy in north-central Texas. Journal of Paleontology, 53, 1013-1022.
- 24. MATSUMOTO, T. 1959. Upper Cretaceous ammonites of California, Part 2. Memoir of Faculty of Science, Kyushu University, Series D (Geology), Special Volume, 1, 1-172.
- 25. MATSUMOTO, T. 1960. Graysonites (Cretaceous Ammonites) from Kyushu. Memoir of Faculty of Science, Kyushu University, Series D (Geology), 10, 41-58.
- 26. MATSUMOTO, T. 1973. Late Cretaceous Ammonoidea. In: A. HALLAM (Ed.), Atlas of Palaeobiogeography. 421-429. Elsevier; Amsterdam.
- 27. MATSUMOTO, T. & NISHIDA, T. 2000. Biostratigraphy of the late Albian-early Cenomanian succession - the case in the Shuparo Valley of Hokkaido. Fossils (Kaseki), 68, 1-12. [In Japanese with English abstract]
- 28. MCLEARN, F.H. 1972. Ammonoids of the Lower Cretaceous Sandstone member of the Haida Formation, Skidegate Inlet, Queen Charlotte Islands, western British Columbia. Geological Survey of Canada, Bulletin, 188, 1-78.
- 29. MOTOYAMA, I., FUJIWARA, O., KAIHO, K. & MUROTA, T. 1991. Lithostratigraphy and calcareous microfossils biochronology of the Cretaceous strata in the Oyubari area, Hokkaido, Japan. The Journal of the Geological Society of Japan, 97, 507-527. [In Japanese with English abstract]
- 30. MURPHY, M.A. & RODDA, P.D. 1996. The Albian-Cenomanian boundary in northern California. Geological Society of America, Bulletin, 108, 235-250.
- 31. NEDERBRAGT, A.J., FIORENTINO, A. & KLOSOWSKA, B. 2001. Quantitative analysis of calcareous microfossils across the Albian-Cenomanian boundary oceanic anoxic event at DSDP Site 547 (North Atlantic). Palaeogeography, Palaeoclimatology, Palaeoecology, 166, 401-421.
- 32. NISHI, H., TAKASHIMA, R., HATSUGAI, T., SAITO, T., MORIYA, K., ENNYU, A. & SAKAI, T. (in press) Planktonic foraminifera zonation in the Cretaceous Yezo Group, central Hokkaido, Japan. Journal of Asian Earth Sciences.
- 33. NISHIDA, T., MATSUMOTO, T., YOKOI, K., KAWASHITA, Y., KYUMA, Y., EGASHIRA, N., AIZAWA, J., MAIYA, S., IKUJI, Y. & YAO, A. 1996. Biostratigraphy of the Cretaceous Middle Yezo Group in the Soeushinai area of Hokkaido – with special reference to the transitional part from Lower to Upper Cretaceous. Journal of the Faculty of Education, Saga University, 44, 65-149. [In Japanese with English abstract]
- 34. OWEN, H.G. 1999. Correlation of Albian European and Tethyan ammonite zonations and the boundaries of the Albian Stage and sudstages: some comments. Scripta Geologica, Special Issue, 3, 129-149.
- 35. ROBASZYNSKI, F. & CARON, M. 1995. Foraminifère planctoniques du Crétacé: commentarire de la zonation Europe-Méditerranée. Bulletin de la Société Géologique de France, 166, 681-692.
- 36. STOLL, H.M. & SCHRAG, D.P. 2000. High-resolution stable isotope records from the Upper Cretaceous rocks of Italy and Spain: Glacial episodes in a greenhouse planet? Geological Society of America, Bulletin, 112, 308-319.
- 37. STRASSER, A., CARON, M. & GJERMENI, M. 2001. The Aptian, Albian and Cenomanian of Roter Sattel, Romandes Prealps, Switzerland: a high-resolution record of oceanographic changes. Cretaceous Research, 22, 173-199.
- 38. TAKASHIMA, R. & NISHI, H. 1999. Re-evaluation of the intra-Yezo disturbance and Cretaceous tectonics in Hokkaido, Japan. The Journal of the Geological Society of Japan, 105, 711-728. [In Japanese with English abstract]
- 39. TAKASHIMA, R., NISHI, H., SAITO, T. & HAGESAWA, T. 1997. Geology and planktonic foraminiferal biostratigraphy of Cretaceous strata distributed along the Shuparo River, Hokkaido, Japan. The Journal of the Geological Society of Japan, 103, 543-563. [In Japanese with English abstract]
- 40. TAKASHIMA, R., YOSHIDA, T. & NISHI, H. 2001. Stratigraphy and sedimentary environments of the Sorachi and Yezo Groups in the Yubari-Ashibetsu area, Hokkaido, Japan. The Journal of the Geological Society of Japan, 107, 359-378. [In Japanese with English abstract]
- 41. TOSHIMITSU, S., MATSUMOTO, T., NODA, M., NISHIDA, T. & MAIYA, S. 1995. Integration of mega-, micro- and magneto-stratigraphy of the Upper Cretaceous in Japan. In: K-H. CHAN & S-O. PARK (Eds), Environmental and Tectonic History of East and South Asia with Emphasis on Cretaceous Correlation (IGCP350). 357-570. Kyungpook National University; Teagu.
- 42. TRÖGER, K.-A. & KENNEDY, W.J. 1996. The Cenomanian stage. Bulletin de l’Institut Royal des Science Naturelles de Belgique, Sciences de la Terre, 66 (Supplément), 57-68.
- 43. WIEDMANN, J. & KAUFFMAN, E.G. 1978. Mid-Cretaceous biostratigraphy of northern Spain. Annales du Museum d’Histoire Naturelle de Nice, 4, iii, 1-34. [for 1976]
- 44. WIEDMANN, J. & OWEN, H.G. 2001. Late Albian ammonite biostratigraphy of the Kirchrode I borehole, Hannover, Germany. Palaeogeography, Palaeoclimatology, Palaeoecology, 174, 161-180.
- 45. WILSON, P.A. & NORRIS, R.D. 2001. Warm tropical ocean surface and global anoxia during the mid-Cretaceous period. Nature, 412, 425-429.
- 46. YOUNG, K. 1986. The Albian-Cenomanian (Lower Cretaceous-Upper Cretaceous) boundary in Texas and northern Mexico. Journal of Paleontology, 60, 1212-1219.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-0638-3116
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.