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Research/review articles

Palaeoenvironments and palaeoceanography changes across the Jurassic/Cretaceous boundary in the Arctic realm: case study of the Nordvik section (north Siberia, Russia)

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Article: 19714 | Published online: 25 Mar 2014

References

  • Abbink O., Targarona J., Brinkhuis H., Visscher H. Late Jurassic to earliest Cretaceous palaeoclimatic evolution of the Northern Sea. Global and Planetary Change. 2001; 30: 231–256.
  • Anderson T.F., Popp B.N., William A.C., Ho L.Z., Hudson J.D. The stable isotopic records of fossils from the Peterborough Member, Oxford Clay Formation (Jurassic), UK: palaeoenvironmental considerations. Journal of the Geological Society. 1994; 151: 125–138.
  • Batten D.J. Jansonius J., McGregor D.C. Palynofacies and palaeoenvironmental interpretation. Palynology: principles and applications. 1996; Dallas: American Association of Stratigraphic Palynologists Foundation. 1011–1064.
  • Below R., Kirsch K.H. Die Kerogen-Fazies der Tonstein-Blättertonstein-Rhytmite des Ober-Barreme/ Unter-Apt im Niedersächsischen Becken (Norddeutschland) am Beispiel der Bohrung Hoheneggelsen KB50. (The kerogen facies of Tonstein-Blättertonstein Rhytmite of the Upper Barremian/Lower Aptian in the Lower Saxony Basin [northern Germany]) using the example of the Hoheneggelsen KB50 Borehole.). Palaeontographica Series B. 1997; 242: 1–90.
  • Bogolepov K.V. Paleogeographija severa SSSR v jurskom periode. (Palaeogeography of the northern USSR in the Jurassic.). 1983; Novosibirsk: Nauka.
  • Bragin V.Y., Dzyuba O.S., Kazansky A.Y., Shurygin B.N. New data on the magnetostratigraphy of the Jurassic–Cretaceous boundary interval, Nordvik Peninsula (northern East Siberia). Russian Geology and Geophysics. 2013; 54: 329–342.
  • Dera G., Brigaud B., Monna F., Laffont R., Pucéat E., Deconinck J.-F., Pellenard P., Joachimski M.M., Durlet C. Climatic ups and downs in a disturbed Jurassic world. Geology. 2011; 39: 215–218.
  • Dypvik H., Zakharov V. Late Jurassic–Early Cretaceous fine-grained epicontinental Arctic sedimentation—mineralogy and geochemistry of shales from the Late Jurassic–Early Cretaceous transition. Norwegian Journal of Geology. 2012; 92: 65–87.
  • Dzûba O.S. [Dzyuba O.S.]. Belemnity (Cylindroteuthidae) i biostratigrafija srednej i verhnej jury Sibiri. (Belemnites [Cylindroteuthidae] and biostratigraphy of the Middle and Upper Jurassic of Siberia.). 2004; Novosibirsk: Geo.
  • Dzûba O.S. [Dzyuba O.S.]. Podsemejstva v sostave Cylindroteuthididae (Belemnitida). (Subfamily classification within the Cylindroteuthididae [Belemnitida].). Novosti paleontologii i stratigrafii. 2011; 16–17: 103–108.
  • Dzûba O.S., Dzyuba O.S., Igol‘nikov A.E., Alifirov A.S., Urman O.S. Dzyuba O.S., Pestchevitskaya E.B. Osnovnye tendencii v razvitii soobščestv molljuskov v pozdnejurskih morjah na severe Sibiri. (Main tendencies in the development of molluscan assemblages in the Late Jurassic seas of northern Siberia.). Paleontologija, biostratigraphija i paleobiogeografija boreal'nogo mezozoja. (Palaeontology, biostratigraphy and palaeobiogeography of the boreal Mesozoic.). 2006; Novosibirsk: Geo. 22–25.
  • Dzyuba O.S. Belemnites and biostratigraphy of the Jurassic–Cretaceous boundary deposits of northern East Siberia: new data on the Nordvik Peninsula. Stratigraphy and Geological Correlation. 2012; 20: 53–72.
  • Dzyuba O.S. Belemnites in the Jurassic–Cretaceous boundary interval of the Maurynya and Yatriya Rivers sections, western Siberia: biostratigraphic significance and dynamics of taxonomic diversity. Stratigraphy and Geological Correlation. 2013; 21: 189–214.
  • Dzyuba O.S., Izokh O.P., Shurygin B.N. Carbon isotope excursions in boreal Jurassic–Cretaceous boundary sections and their correlation potential. Palaeogeography, Palaeoclimatology, Palaeoecology. 2013; 381–382: 33–46.
  • Dzyuba O.S., Zakharov V.A., Košt’ák M. Belemnites of the Jurassic/Cretaceous boundary interval from Nordvik Peninsula (northern Siberia). 2007; Japan: Sapporo. Paper presented at 7th International Symposium Cephalopods—Present and Past. 14–16 September.
  • Gasiński M.A. Tethyan–Boreal connection: influence on the evolution of mid-Cretaceous planktonic foraminiferids. Cretaceous Research. 1997; 18: 505–514.
  • Götz A.E., Ruckwied K., Pálfy J., Haas J. Palynological evidence of synchronous changes within the terrestrial and marine realm at the Triassic/Jurassic boundary (Csővár section, Hungary). Review of Palaeobotany and Palynology. 2009; 156: 401–409.
  • Grabowski J. Magnetostratigraphy of the Jurassic/Cretaceous boundary interval in the western Tethys and its correlations with other regions: a review. Volumina Jurassica. 2011; IX: 105–128.
  • Grabowski J., Haas J., Márton E., Pszczólkowski P. Magneto- and biostratigraphy of the Jurassic/Cretaceous boundary in the Lókút section (Transdanubian Range, Hungary). Studia Geophysica et Geodaetica. 2010; 54: 1–26.
  • Gustomesov V.A. Belemnity v sootnošenii s facijami i razvitiem bassejna obitanija. (Belemnites and their relationships with facies and habitat basin development.). Bjulleten’ Moskovskogo obščestva ispytatelej prirody, otdel geologičeskij. 1976; 51(6): 107–117.
  • Hallam A. Wilgus C.K. A reevaluation of Jurassic eustasy in the light of new data and the revised Exxon curve. Sea-level changes—an integrated approach. SEPM Special Publication 42. 1988; Tulsa: Society of Economic Paleontologists and Mineralogists. 261–273.
  • Hallam A., Wignall P.B. Mass extinctions and their aftermath. 1997; Oxford: Oxford University Press.
  • Haq B.U., Hardenbol J., Vail P.R. Wilgus C.K., etal. Mesozoic and Cenozoic chronostratigraphy and cycles of sea-level change. Sea-level changes—an integrated approach. 1988; Tulsa: Society of Economic Paleontologists and Mineralogists. SEPM Special Publication 42. Pp. 71–108.
  • Houša V., Pruner P., Zakharov V.A., Košt’ák M., Chadima M., Rogov M.A., Šlechta S., Mazuch M. Boreal–Tethyan correlation of the Jurassic–Cretaceous boundary interval by magneto- and biostratigraphy. Stratigraphy and Geological Correlation. 2007; 15: 297–309.
  • Keller G. Cretaceous climate, volcanism, impacts, and biotic effects. Cretaceous Research. 2008; 29: 754–771.
  • Kuz'michev A.B., Zakharov V.A., Danukalova M.K. New data on the stratigraphy and formation conditions for Upper Jurassic and Lower Cretaceous deposits of the Stolbovoi Island (New Siberian Islands). Stratigraphy and Geological Correlation. 2009; 17: 396–414.
  • Lister J.K., Batten D.J. Stratigraphic and palaeoenvironmental distribution of Early Cretaceous dinoflagellate cysts in the Hurlands Farm borehole, West Sussex, England. Palaeontographica Series B. 1988; 210: 9–89.
  • Lukeneder A., Halásová E., Kroh A., Mayrhofer S., Pruner P., Reháková D., Schnabl P., Sprovieri M., Wagreich M. High resolution stratigraphy of the Jurassic–Cretaceous boundary interval in the Gresten Klippenbelt (Austria). Geologica Carpathica. 2010; 61: 365–381.
  • Mitchell S.F. Eight belemnite biohorizons in the Cenomanian of northwest Europe and their importance. Geological Journal. 2005; 40: 363–382.
  • Mizera J., Řanda Z., Košt'ák M. Neutron activation analysis in geochemical characterization of Jurassic–Cretaceous sedimentary rocks from the Nordvik Peninsula. Journal of Radioanalytical and Nuclear Chemistry. 2010; 284: 211–219.
  • Mutterlose J. Phylogenie und Biostratigraphie der Unterfamilie Oxytheutinae (Belemnitida) aus dem Barrême (Unter-Kreide) NW-Europas. (Phylogeny and biostratiraphy of the Oxytheutinae Subfamily from the Barremian (Lower Cretaceous) of NW Europe.). Palaeontographica Series A. 1983; 180: 1–90.
  • Nikitenko B.L., Knyazev V.G., Lebedeva N.K., Peshchevitskaya E.B., Kutygin R.V. Problems of Oxfordian and Kimmeridgian stratigraphy in northern central Siberia (Nordvik Peninsula section). Russian Geology and Geophysics. 2011; 52: 963–978.
  • Nikitenko B.L., Pestchevitskaya E.B., Lebedeva N.K., Ilyina V.I. Micropalaeontological and palynological analyses across the Jurassic–Cretaceous boundary on Nordvik Peninsula, northeast Siberia. Newsletters on Stratigraphy. 2008; 42: 181–222.
  • Nunn E.V., Price G.D., Hart M.B., Page K.N., Leng M.J. Isotopic signals from the Callovian–Kimmeridgian (Middle–Upper Jurassic) belemnites and bulk organic carbon, Staffin Bay, Isle of Skye, Scotland. Journal of the Geological Society. 2009; 166: 633–641.
  • Odum E.P. Fundamentals of ecology. 1971; 3rd edn, Philadelphia: Saunders.
  • Ogg J.G. Gradstein F.M. The Jurassic Period. A geologic time scale 2004. 2004; Cambridge: Cambridge University Press. 307–343.
  • Ogg J.G., Hinnov L., Huang C. Gradstein F.M. Jurassic. The geologic time scale 2012. 2012; Amsterdam: Elsevier. 731–791.
  • Oschmann W., Röhl R., Schmid-Röhl A., Seilacher A. Der Posidonienschiefer (Toarcium, Unterer Jura) von Dotternhausen. (Posidonia shales [Toarcian, Lower Jurassic] of the Dotternhausen.). Jahresberichte und Mitteilungen des Oberrheinischen Geologischen Vereins. 1999; 81: 231–255.
  • Parakecov K.V., Parakecova G.V. Stratigrafija i fauna verhnejurskih i nižnemelovyh onloženij severo-sovtoka SSSR. (Stratigraphy and fauna of the Upper Jurassic and Lower Cretaceous deposits of the north-east USSR.). 1989; Moscow: Nedra.
  • Podlaha O.G., Mutterlose J., Veizer J. Preservation of δ18O and δ13C in belemnite rostra from the Jurassic/Early Cretaceous successions. American Journal of Science. 1998; 298: 324–347.
  • Prauss M., Riegel W. Evidence from phytoplankton associations for causes of black shale formation in epicontinental seas. Neues Jahrbuch für Geologie und Paläontologie Monatshefte. 1989; 11: 671–682.
  • Price G.D., Page K.N. A carbon and oxygen isotopic analysis of molluscan faunas from the Callovian–Oxfordian boundary at Redcliff Point, Weymouth, Dorset: implications for belemnite behaviour. Proceedings of the Geologists' Association. 2008; 119: 153–160.
  • Price G.D., Rogov M.A. An isotopic appraisal of the Late Jurassic greenhouse phase in the Russian Platform. Palaeogeography, Palaeoclimatology, Palaeoecology. 2009; 273: 41–49.
  • Pruner P., Houša V., Olóriz F., Košt'ák M., Krs M., Man O., Schnabl P., Venhodová D., Tavera J.M., Mazuch M. High-resolution magnetostratigraphy and biostratigraphic zonation of the Jurassic/Cretaceous boundary strata in the Puerto Escaño section (southern Spain). Cretaceous Research. 2010; 31: 192–206.
  • Raup D., Sepkoski J. Mass extinctions in the marine fossil record. Science. 1982; 215: 1501–1503. [PubMed Abstract].
  • Rexfort A., Mutterlose J. The role of biogeography and ecology on the isotope signature of cuttlefishes (Cephalopoda, Sepiidae) and the impact on belemnite studies. Palaeogeography, Palaeoclimatology, Palaeoecology. 2009; 284: 153–163.
  • Riboulleau A., Baudin F., Daux V., Hantzpergue P., Renar M., Zakharov V. Evolution de la paléotempérature des eaux de la Plateforme Russe du cours du Jurassic supérieur. (Evolution of the water palaeotemperature of the Russian Platform during the Late Jurassic.). Comptes Rendus de l'Academie des Sciences Series IIA. 1998; 326: 239–246.
  • Rogov M.A. New data on ammonites and stratigraphy of the Volgian Stage in Spitzbergen. Stratigraphy and Geological Correlation. 2010; 18: 505–531.
  • Rogov M.A. Latitudinal gradient of taxonomic richness of ammonites in the Kimmeridgian–Volgian in the Northern Hemisphere. Paleontological Journal. 2012; 46: 148–156.
  • Rogov M.A. MacLeod N. The end-Jurassic extinction. Grzimek's animal life encyclopedia: extinction. 2013; Detroit: Cengage Learning. 487–495.
  • Rogov M.A., Igol'nikov A.E. Leonova T.B. Ammonity roda Bochianites iz nižnego mela Panboreal'noj nadoblasti i ih značenie dlja paleobiogeografičeskih rekonstrukcij. (Bochianites (Ammonoidea) in the Lower Cretaceous of the Panboreal Superrealm and their significance for palaeobiogeographical reconstructions.). Sovremennye problemy izučenija golovonogih molljuskov. Morfologija, sistematika i biostratigrafija. (Contributions to current cephalopod research: morphology, systematics, evolution, ecology and biostratigraphy.). 2009; Moscow: Paleontological Institute of Russian Academy of Sciences. 124–126.
  • Rogov M., Schepetova E., Ustinova M., Price G.D., Guzhikov A., Pimenov M., Dzyuba O. Multi-proxy study of the Kimmeridgian–Volgian boundary beds in the Gorodischi section (Middle Volga area, Russia), the lectostratotype of the Volgian Stage. Volumina Jurassica. 2006; 4: 208–210.
  • Rogov M., Wierzbowski A. The succession of the ammonites genus Amoeboceras in the Upper Oxfordian–Kimmeridgian of the Nordvik section in northern Siberia. Volumina Jurassica. 2009; 7: 147–156.
  • Rogov M.A., Zakharov V.A. Ammonite- and bivalve-based biostratigraphy and Panboreal correlation of the Volgian Stage. Science in China Series D. 2009; 52: 1890–1909.
  • Sahagian D., Pinous O., Olferiev A., Zakharov V. Eustatic curve for the Middle Jurassic–Cretaceous based on Russian platform and Siberian stratigraphy: zonal resolution. Bulletin of the American Association of Petroleum Geologists. 1996; 80: 1433–1458.
  • Saks V.N. Paleogeografija hatangskogo bassejna i smežnyh regionov v jurskom i melovom periodah. (Palaeogeography of the Khatanga basin and adjacent regions in the Jurassic and Cretaceous periods.). Sbornik Statej po Geologii Arktiki. 1958; 9: 70–89.
  • Saks V.N. Opornyj razrez verhnejurskih otloženij bassejna reki Hety Hatangskaja vpadina. (Reference section of the Upper Jurassic deposits of the Kheta river basin, Khatanga depression.). 1969; Leningrad: Nauka.
  • Saks V.N., Basov V.A., Dagis A.A., Dagis A.S., Zaharov V.A., [Zakharov V.A.], Ivanova E.F., Meledina S.V., Mesežnikov M.S., Nal'nyayeva T.I., Šul'gina N.I. Bogolepov K.V. Paleozoogeografija morej boreal'nogo pojasa v jure i neokome. (Palaeozoogeography of seas of the Boreal Belt during Jurassic and Neocomian time.). Problemy obščej i regional'noj geologii (Problems of general and regional geology.). 1971; Novosibirsk: Nauka. 179–211.
  • Saks V.N., Gramberg I.S., Ronkina Z.Z., Aplonova E.N. Mezozojskie otloženija hatangskoj vpadiny. (Mesozoic deposits of Khatanga depression.). Trudy Instituta Geologii Arktiki. 1959; 99: 1–225.
  • Saks V.N., Nalnjaeva T.I. Belemnite assemblages from the Jurassic–Cretaceous boundary beds in the Boreal Realm. Geological Journal Special Issue. 1973; 5: 393–400.
  • Saks V.N., Nalnjaeva T.I. Osobennosti rasselenija boreal'nyh belemnoidej. (Peculiarities of distribution of the boreal belemnoids.). Trudy Instituta Geologii i Geofiziki Sibirskogo Otdelenija Akademii nauk SSSR. 1979; 411: 9–23.
  • Savary B., Cecca F., Bartolini A. Étude stratigraphique du Rosso Ammonitico du Monte Inici (domaine Trapanais, Sicile occidentale): événements biosédimentaires au Jurassique moyen–Crétacé inférieur. (Stratigraphic study of the Ammonitico Rosso of the Monte Rosso [Trapanais area, western Sicily]: biosedimentary events in the Middle Jurassic –Lower Cretaceous.). Geodiversitas. 2003; 25: 217–235.
  • Seilacher A., Reif W.-E., Westphal F. Sedimentological, ecological and temporal patterns of Fossillagerstätten. Philosophical Transactions of the Royal Society London B. 1985; 311: 5–24.
  • Sepkoski J. A compendium of fossil marine animal genera. 2002; Ithaca, NY: Paleontological Research Institution.
  • Skupien P., Smaržová A. Palynological and geochemical response to environmental changes in the Lower Cretaceous in the Outer Western Carpathians; a record from the Silesian unit, Czech Republic. Cretaceous Research. 2011; 32: 538–551.
  • Skupien P., Vašíček Z. Lower Cretaceous ammonite and dinocysts biostratigraphy and paleoenvironment of the Silesian basin (Outer Western Carpathians). Geologica Carpathica. 2002; 53: 179–189.
  • Smelror M., Dypvik H., Mørk A. Buffetaut E., Koeberl C. Phytoplankton blooms in the Jurassic–Cretaceous boundary beds of the Barents Sea possibly induced by the Mjølnir meteorite impact. Geological and biological effects of impact events. 2001; Berlin: Springer. 69–81.
  • Smelror M., Leereveld H. Dinoflagellate and acritarch assemblages from the Late Bathonian to Early Oxfordian of Montagne Crussol, Rhone Valley, southern France. Palynology. 1989; 13: 121–141.
  • Smith A.B., McGowan A. The shape of the Phanerozoic marine paleodiversity curve: how much can be predicted from the sedimentary rock record of western Europe?. Palaeontology. 2007; 50: 765–774.
  • Surlyk F. Sequence stratigraphy of the Jurassic–lowermost Cretaceous of East Greenland. Bulletin of the American Association of Petroleum Geologists. 1991; 75: 1468–1488.
  • Tappan H. The paleobiology of plant protists. 1980; San Francisco: W.H. Freeman & Co.
  • Tremolada F., Bornemann A., Bralower T., Koeberl C., van de Schootbrugge B. Paleoceanographic changes accros the Jurassic/Cretaceous boundary: the calcareous phytoplankton response. Earth and Planetary Science Letters. 2006; 241: 361–371.
  • Tucker M.E. Wright W.P. Carbonate diagenesis and sequence stratigraphy. Sedimentology review. 1993; Oxford: Blackwell Scientific Publications. 51–73.
  • Turpaeva E.P. Pitanie i piščevye gruppirovki morskih donnyh bespozvonočnyh. (Feeding and feeding grouping of bottom marine invertebrates.). Trudy Instituta Okeanologii Akademii Nauk SSSR. 1953; 7: 259–299.
  • Van de Schootbrugge B., Tremolada F., Rosenthal Y., Bailey T.R., Feist-Burkhardt S., Brinkhuis H., Pross J., Kent D. V., Falkowski P. G. End-Triassic calcification crisis and blooms of organic-walled disaster species. Palaeogeography, Palaeoclimatology. Palaeoecology. 2007; 244: 126–141.
  • Weissert H., Channell J.E.T. Tethyan carbonate carbon isotope stratigraphy across the Jurassic–Cretaceous boundary: an indicator of decelerated global carbon cycling?. Paleoceanography. 1989; 4: 483–494.
  • Westermann G.E.G. Marine faunal realms of the Mesozoic: review and revision under the new guidelines for biogeographic classification and nomenclature. Palaeogeography, Palaeoecology, Palaeoclimatology. 2000; 163: 49–68.
  • Wierzbowski H. Carbon and oxygen isotope composition of Oxfordian–Early Kimmeridgian belemnite rostra: palaeoenvironmental implications for Late Jurassic seas. Palaeogeography, Palaeoclimatology, Palaeoecology. 2004; 203: 153–168.
  • Wierzbowski H., Joachimski M. Stable isotopes, elemental distribution, and growth rings of belemnopsid belemnite rostra: proxies for belemnite life habitat. Palaios. 2009; 24: 377–386.
  • Wierzbowski H., Rogov M. Oxygen and carbon isotope records of cephalopod shells from the Middle–Upper Jurassic boundary at Dubki (Volga Basin, Russian Platform): paleonvironmental implications. Palaeogeography, Palaeoclimatology, Palaeoecology. 2011; 299: 250–264.
  • Wiese F., Košt'ák M., Wood C.J. The Upper Cretaceous belemnite Praeactinocamax plenus (Blainville 1827) from Lower Saxony (Upper Cenomanian, northwest Germany) and its distribution pattern in Europe. Paläontologische Zeitschrift. 2009; 83: 309–321.
  • Zaharov V.A., [Zakharov V.A.], Judovnyj E.G. Uslovija osadkonakoplenija i suščestvovanija fauny v rannemelovom more Hatangskoj vpadiny. (Conditions of sediment deposition and fauna existence in the Early Cretaceous sea in the Khatanga depression.). Trudy Instituta Geologii i Geofiziki Sibirskogo Otdelenija Akademii Nauk SSSR. 1974; 80: 127–174.
  • Zaharov V.A., [Zakharov V.A.], Nalnyaeva T.I., Šul'gina N.I. Novye dannye po biostratigrafii verhnejurskih i nižnemelovyh otloženij na posuostrove Paksa, Anabarskij zaliv. (New data on the biostratigraphy of the Upper Jurassic and Lower Cretaceous deposits on Paksa peninsula, Anabar embayment.). Trudy Instituta Geologii i Geofiziki Sibirskogo Otdelenija Akademii Nauk SSSR. 1983; 528: 56–99.
  • Zaharov V.A., [Zakharov V.A.], Šurygin B.N., [Shurygin B.N.]. Geografičeskaja differenciacija morskih dvustvorčatyh molljuskov v jure i rannem melu Arktičeskoj zoogeografičeskoj oblasti. (Geographical differentiation of the marine bivalves of the Jurassic and Early Cretaceous Arctic Zoogeographical Realm.). Trudy Instituta Geologii i Geofiziki Sibirskogo Otdelenija Akademii Nauk SSSR. 1983; 555: 72–88.
  • Zakharov V.A., Baudin F., Dzyuba O.S., Daux V., Zverev V.V., Renard M. Isotopic and faunal record of high paleotemperatures in the Kimmeridgian of the subpolar Urals. Russian Geology and Geophysics. 2005; 46: 1–19.
  • Zakharov V.A., Lapukhov A.S., Shenfil O.V. Iridium anomaly at the Jurassic–Cretaceous boundary in northern Siberia. Russian Journal of Geology and Geophysics. 1993; 34: 83–90.
  • Zakharov V.A., Rogov M.A. The Upper Volgian Substage in northeast Siberia (Nordvik Peninsula) and its Panboreal correlation based on ammonites. Stratigraphy and Geological Correlation. 2008; 16: 423–436.
  • Zakharov V.A., Shurygin B.N., Kurushin N.I., Meledina S.V., Nikitenko B.L. A Mesozoic Ocean in the Arctic: paleontological evidence. Russian Geology and Geophysics. 2002; 43: 143–170.
  • Žák K., Košták M., Man O., Zakharov V.A., Rogov M.A., Pruner P., Dzyuba O.S., Rohovec J., Mazuch M. Comparison of carbonate C and O stable isotope records across the Jurassic/Cretaceous boundary in the Boreal and Tethyan realms. Palaeogeography, Palaeoclimatology, Palaeoecology. 2011; 299: 83–96.