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Revised geochronology, correlation, and dinosaur stratigraphic ranges of the Santonian-Maastrichtian (Late Cretaceous) formations of the Western Interior of North America

机译:修订后的北美西部内陆的晚白垩世-马斯特里赫特(白垩纪晚期)地层的地质年代学,相关性和恐龙地层范围

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摘要

Interbasinal stratigraphic correlation provides the foundation for all consequent continental-scale geological and paleontological analyses. Correlation requires synthesis of lithostratigraphic, biostratigraphic and geochronologic data, and must be periodically updated to accord with advances in dating techniques, changing standards for radiometric dates, new stratigraphic concepts, hypotheses, fossil specimens, and field data. Outdated or incorrect correlation exposes geological and paleontological analyses to potential error. The current work presents a high-resolution stratigraphic chart for terrestrial Late Cretaceous units of North America, combining published chronostratigraphic, lithostratigraphic, and biostratigraphic data. 40Ar / 39Ar radiometric dates are newly recalibrated to both current standard and decay constant pairings. Revisions to the stratigraphic placement of most units are slight, but important changes are made to the proposed correlations of the Aguja and Javelina formations, Texas, and recalibration corrections in particular affect the relative age positions of the Belly River Group, Alberta; Judith River Formation, Montana; Kaiparowits Formation, Utah; and Fruitland and Kirtland formations, New Mexico. The stratigraphic ranges of selected clades of dinosaur species are plotted on the chronostratigraphic framework, with some clades comprising short-duration species that do not overlap stratigraphically with preceding or succeeding forms. This is the expected pattern that is produced by an anagenetic mode of evolution, suggesting that true branching (speciation) events were rare and may have geographic significance. The recent hypothesis of intracontinental latitudinal provinciality of dinosaurs is shown to be affected by previous stratigraphic miscorrelation. Rapid stepwise acquisition of display characters in many dinosaur clades, in particular chasmosaurine ceratopsids, suggests that they may be useful for high resolution biostratigraphy.
机译:基层间地层相关性为所有随后的大陆规模地质和古生物学分析提供了基础。相关性需要综合岩性地层学,生物地层学和地球年代学数据,并且必须定期更新以符合测年技术的进步,不断变化的放射日期标准,新的地层概念,假设,化石标本和野外数据。过时或不正确的相关性使地质和古生物学分析暴露出潜在的错误。当前的工作结合了已发布的年代地层,岩层地层和生物地层数据,为北美陆相晚白垩纪单元提供了高分辨率地层图。 40 Ar / 39 Ar辐射日期已重新校准为当前的标准配对和衰变常数配对。对大多数单元的地层位置进行的修改很小,但是对德克萨斯州Aguja和Javelina地层的拟议相关性进行了重要更改,并且重新校准校正尤其影响了亚伯达省Belly River Group的相对年龄位置;蒙大拿州朱迪思河形成;犹他州Kaiparowits组;以及新墨西哥州的Fruitland和Kirtland地层。在时间地层学框架上绘制了选定的恐龙种类进化枝的地层范围,其中一些进化枝包含短时物种,它们在地层上没有与先前或后续形态重叠。这是由无正电子的进化模式产生的预期模式,表明真正的分支(物种形成)事件很少发生,并且可能具有地理意义。恐龙的洲际纬度省份的最新假说受到以前的地层不相关性的影响。快速逐步获取许多恐龙进化枝中的显示字符,尤其是Chasmosaurine ceratopsids,表明它们可能对高分辨率生物地层学有用。

著录项

  • 期刊名称 PLoS Clinical Trials
  • 作者

    Denver Warwick Fowler;

  • 作者单位
  • 年(卷),期 2011(12),11
  • 年度 2011
  • 页码 e0188426
  • 总页数 20
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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