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首页> 外文期刊>GSA Bulletin >Integration of macrofossil biostratigraphy and magnetostratigraphy for the Pacific Coast Upper Cretaceous (Campanian–Maastrichtian) of North America and implications for correlation with the Western Interior and Tethys
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Integration of macrofossil biostratigraphy and magnetostratigraphy for the Pacific Coast Upper Cretaceous (Campanian–Maastrichtian) of North America and implications for correlation with the Western Interior and Tethys

机译:北美太平洋海岸上白垩统(Campanian–Maastrichtian)的大化石生物地层学和磁性地层学的整合及其与西部内陆和特提斯山脉的联系

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New biostratigraphic data obtained from measured stratigraphic sections of Santonian through Maastrichtian age located along the west coast of North America necessitate changes to the currently accepted chronostratigraphic framework for this region of the North Pacific biotic province. We recognize and/or define 12 molluscan zones over this interval of the Upper Cretaceous and propose revisions to the currently accepted integration of ammonite zones with global Upper Cretaceous magnetochrons. Our findings demonstrate that there was significantly more faunal interchange between the North American Pacific Coast and both the Western Interior and Gulf Coast regions of North America during the Late Cretaceous than has previously been recognized, and because of this, novel and direct biostratigraphic correlations can be made. These new faunal correlations are augmented with the magnetostratigraphic record from Pacific Coast localities to arrive at better interregional correlation for the Upper Cretaceous globally. The new integration of the global polarity time scale with the local, west coast ammonite zonation now allows better correlation between sections both within the North Pacific province (but geographically far from our study areas) as well as to sections outside of the province itself. However, we note here that previous correlations between biostratigraphy and the top and bottom of magnetochron 33r in west coast North American sections appear to have been in error due to unrecognized, modern-day normal-field overprint of originally reversed polarity in Upper Cretaceous sections. We reinterpret the position of this chron based on this new information.
机译:从位于北美西海岸的Santonian到Maastrichtian年龄的测得地层剖面获得的新生物地层数据,需要对北太平洋生物省这一地区的目前公认的年代地层框架进行改变。我们认识到和/或定义了上白垩统这一间隔内的12个软体动物带,并提出了对目前公认的整合白垩纪带与全球上白垩统磁时差的修订建议。我们的发现表明,在白垩纪晚期,北美太平洋海岸与北美西部内陆地区和墨西哥湾沿岸地区之间的动物区系交换比以前认识到的要多得多,因此,可以发现新颖而直接的生物地层学相关性制作。太平洋沿岸地区的地磁记录增加了这些新的动物区系相关性,从而使全球上白垩统地区间的相关性更好。现在,全球极性时标与本地西海岸炸药地带的新整合使北太平洋省内(但地理上远离我们研究区域的地区)以及该省以外地区之间的相关性更好。然而,我们在这里注意到,由于上白垩纪地层原始反转极性的未认识的现代现代正场叠印,生物地层学与北美西海岸磁时差33r顶部和底部之间的先前相关性似乎是错误的。我们根据此新信息重新解释该计时的位置。

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    《GSA Bulletin》 |2012年第6期|p.957-974|共18页
  • 作者单位

    1Department of Earth and Space Sciences, The University of Washington, Seattle, Washington 98195, USA 2Geological Survey of Canada, 625 Robson Street, Vancouver, British Columbia V6B 5J3, Canada 3Geology and Geophysics Department, Yale University, P.O. Box 208109, New Haven, Connecticut 06520-8109, USA 4Division of Geological and Planetary Sciences, California Institute of Technology, Pasadena, California 91125, USA;

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