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Encyclopedia of geology, five volume set, volume 1 5 (encyclopedia of geology series) ( PDFDrive ) 3057

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520 TRACE FOSSILS Record of the Plio Pleistocene, Wanganui Basin, New Zealand Folio Series Lower Hutt, NZ: Institute of Geological and Nuclear Sciences Gradstein FM, Agterberg FP, Ogg JG, Hardenbol J, van Veen P, Thierry J, and Huang Z (1995) A Triassic, Juras sic, and Cretaceous time scale SEPM Special Publication 54: 95 126 Gradstein FM, Ogg JG, Smith AG, et al (2004) A Geologic Time Scale 2004 Cambridge, UK: Cambridge University Press Harland WB, Armstrong RL, Cox AV, Craig LE, Smith AG, and Smith DG (1990) A Geologic Time Scale 1989 New York: Cambridge University Press Herbert TD, D’Hondt SL, Premoli Silva I, Erba E, and Fischer AG (1995) Orbital chronology of Cretaceous Early Palaeocene marine sediments In: Berggren WA, Kent DV, and Hardenbol J (eds.) Geochronology, Time Scales and Global Stratigraphic Correlations: A Unified Temporal Framework for a Historical Geology, SEPM Special Volume, No 54, pp 81 94 Tulsa, OK: SEPM Hilgen FJ, Krijgsman W, Langereis CG, and Lourens LJ (1997) Breakthrough made in dating of the geological record Eos (Transactions of the American Geophysical Union) 78(28): 285, 288 289 Holmes A (1947) The construction of a geological time scale Transactions Geological Society of Glasgow 21: 117 152 Holmes A (1960) A revised geological time scale Transac tions of the Edinburgh Geological Society 17: 183 216 Kamo SL, Czamanske GK, Amelin Y, Fedorenko VA, Davis DW, and Trofimov VR (2003) Rapid eruption of Siberian flood volcanic rocks and evidence for coincidence with the Permian Triassic boundary and mass extinction at 251 Ma Earth and Planetary Science Letters 214: 75 91 Lourens L, Hilgen F, Shackleton NJ, Laskar L, and Wilson D (2004) The Neogene Period In: Gradstein FM, et al (eds.) A Geologic Time Scale 2004 Cambridge, UK: Cambridge University Press Martinsson A (ed.) (1977) The Siluro Devonian boundary International Union of Geological Sciences, Series A, vol Vienna: International Union of Geological Sciences Obradovich JD (1993) A Cretaceous time scale In: Caldwell WGE (ed.) Evolution of the Western Interior Basin, Geological Association of Canada Special Paper 39, pp 379 396 St John’s, NL: Geological Association of Canada Ogg JG (2004) The Triassic, Jurassic and Cretaceous In: Gradstein FM, et al (eds.) A Geologic Time Scale 2004 Cambridge, UK: Cambridge University Press Renne PR, Deino AL, Walther RC, Thurrin BD, Swisher CC, Becker TA, Curtis GH, Sharp WD, and Jaouni AR (1994) Intercalibration of astronomical and radio isotopic time Geology 22: 783 Roă hl U, Ogg JG, Geib TL, and Wefer G (2001) Astronom ical calibration of the Danian time scale Geological Society, Special Publication 183: 163 184 Shackleton NJ, Crowhurst SJ, Weedon GP, and Laskar J (1999) Astronomical calibration of Oligocene Miocene time Philosophical Transactions of the Royal Society of London, Series A 357: 1907 1929 Villeneuve M (2004) Radiogenic isotope chronology In: Gradstein FM, et al (eds.) A Geologic Time Scale 2004 Cambridge UK: Cambridge University Press Weedon GP, Jenkyns HC, Coe AL, and Hesselberg SP (1999) Astronomical calibration of the Jurassic time scale from cyclostratigraphy in British mudrock forma tions Philosophical Transactions of the Royal Society of London, Series A 357: 1787 1813 TRACE FOSSILS P J Orr, University College Dublin, Dublin, Ireland ß 2005, Elsevier Ltd All Rights Reserved Introduction Trace fossils and ichnofabrics offer an alternative source of data on the ecology of any palaeoecosystem to that provided by the body fossil record Different preservational biases apply to the trace and body fossil records ‘Soft-bodied’ organisms, i.e., those lacking biomineralized tissues, can produce trace fossils, yet their fossilization potential is minimal Most trace fossils are emplaced into unconsolidated sediment, cannot survive reworking, and are thus autochthonous (in marked contrast to the vast majority of body fossils) The study of trace fossils and ichnofabrics has made a fundamental and growing contribution to our understanding of the evolutionary palaeoecology of the Earth’s biosphere Furthermore, bioturbation impacts on the physical and chemical properties of sediments, including their diagenesis Key terms employed in the taxonomic, preservational, and ethological classification of trace fossils are defined; how trace fossils and ichnofabrics are used in palaeoenvironmental and community reconstructions is discussed ‘Trace fossil’ is used herein to describe any discrete structure produced by the reworking of sediment or the bioerosion of lithic (rock) or xylic (wood) substrates by infauna or epifauna Eggs and sedimentary structures produced by physical processes not represent trace fossils Some authorities include stromatolites within this term, on which basis

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