A.G. Plint
Integrated, high-resolution allostratigraphic, biostratigraphic and carbon-isotope correlation of Coniacian strata (Upper Cretaceous), western Alberta and northern Montana
Plint, A.G.; Hooper, E.A.; Grifi, M.D.; Walaszczyk, I.; Landman, N.; Gröcke, D.R.; Jarvis, I.
Authors
E.A. Hooper
M.D. Grifi
I. Walaszczyk
N. Landman
Professor Darren Grocke d.r.grocke@durham.ac.uk
Professor
I. Jarvis
Contributors
Neil H. Landman
Editor
A. Guy Plint
Editor
Ireneus Walaszczyk
Editor
Abstract
Inoceramid bivalves are the dominant invertebrate fauna of the Coniacian and basal Santonian of the Western Canada Foreland Basin in western Alberta. In the upper lower Coniacian through to basal Santonian, six successive faunas are recognized, which provide the basis for corresponding, formally defined inoceramid zones. From bottom upward these are the zones of: Cremnoceramus crassus crassus /C. deformis deformis, Inoceramus gibbosus, Volviceramus koeneni, Volviceramus involutus, Sphenoceramus subcardissoides, and Sphenoceramus ex gr. pachti. Particular faunas represent assemblages known widely from the Euramerican biogeographic region, although they characterize mostly its northern, boreal area. The inoceramid-based biostratigraphic scheme allows correlation with other parts of the North American Western Interior and with parts of the Euramerican biogeographic region. The studied succession provides a good record of the Inoceramus gibbosus Zone, which characterizes the topmost lower Coniacian. This zone, first recognized from northern Germany, is usually absent, both in Europe and in North America, due to a stratigraphic gap resulting from a eustatic lowstand. The base of the middle Coniacian is marked by the abrupt appearance of the taxonomically variable Volviceramus fauna (V. koeneni (Müller), V. exogyroides (Meek and Hayden)), with associated Inoceramus undabundus Meek and Hayden and Volviceramus cardinalensis, newly described herein. Scaphites (Scaphites) ventricosus Meek and Hayden, the ammonite marker of the base of the middle Coniacian first appears in the late early Coniacian. The base of the upper Coniacian marks the first appearance of the characteristic northern inoceramid species Sphenoceramus subcardissoides (Schlüter), the appearance of which coincides with Scaphites (Scaphites) depressus Reeside, the ammonite marker of this boundary. Close to this boundary Volviceramus stotti also appears, which is newly described from the Canadian sections. The base of the Santonian corresponds to the abrupt appearance of Sphenoceramus ex gr. pachti (Arkhangelsky). The studied sections demonstrate that the appearance of new inoceramid faunas (lowest occurrence of Cremnoceramus crassus crassus (Petrascheck), of various species of Volviceramus, Sphenoceramus subcardissoides (Schlüter) and of S. ex gr. pachti) takes place immediately above major marine flooding surfaces, suggesting a close correspondence between evolutionary and/or migration events and episodes of relative sea-level rise.
Citation
Plint, A., Hooper, E., Grifi, M., Walaszczyk, I., Landman, N., Gröcke, D., & Jarvis, I. (2017). Integrated, high-resolution allostratigraphic, biostratigraphic and carbon-isotope correlation of Coniacian strata (Upper Cretaceous), western Alberta and northern Montana. In N. H. Landman, A. G. Plint, & I. Walaszczyk (Eds.), Allostratigraphy and biostratigraphy of the Upper Cretaceous (Coniacian-Santonian) Western Canada Foreland Basin (9-52). American Museum of Natural History
Online Publication Date | Jun 26, 2017 |
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Publication Date | Jun 26, 2017 |
Deposit Date | Jun 19, 2017 |
Publicly Available Date | Jun 29, 2017 |
Pages | 9-52 |
Series Title | Bulletin of the American Museum of Natural History. |
Series Number | 414 |
Book Title | Allostratigraphy and biostratigraphy of the Upper Cretaceous (Coniacian-Santonian) Western Canada Foreland Basin. |
Public URL | https://durham-repository.worktribe.com/output/1668378 |
Publisher URL | http://digitallibrary.amnh.org/handle/2246/6722 |
Contract Date | May 1, 2017 |
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Copyright Statement
Copyright © American Museum of Natural History 2017. This is an open access article under the CC BY-NC license.
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