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NARROW
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Primary terms
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Ordovician conodont biostratigraphy of northwestern Baffin Island, Nunavut, Canada, with new insights into the age and diachronism of the Ship Point Formation in the Foxe Basin
Lower and Upper Ordovician conodont biostratigraphy and revised lithostratigraphy in the fault and fold zones of the Boothia Uplift, south-western Boothia Peninsula, Nunavut
Upper Cambrian and Lower Ordovician conodont biostratigraphy and revised lithostratigraphy, Boothia Peninsula, Nunavut
The stratigraphic position and the age of the Ordovician organic-rich intervals in the northern Hudson Bay, Hudson Strait, and Foxe basins—evidence from graptolites
Upper Ordovician conodont biostratigraphy and revised lithostratigraphy and geological map, Akpatok Island, Ungava Bay, Nunavut
Hirnantian (Ordovician) through Wenlock (Silurian) conodont biostratigraphy, bioevents, and integration with graptolite biozones, Cape Phillips Formation slope facies, Cornwallis Island, Canadian Arctic Islands
Upper Ordovician – Upper Silurian conodont biostratigraphy, Devon Island and southern Ellesmere Island, Canadian Arctic Islands, with implications for regional stratigraphy, eustasy, and thermal maturation
New insights into the stratigraphy and petroleum potential of the Baffin shelf’s Cretaceous rocks
Discovery of organic-rich black shale xenolith from kimberlite on the Hall Peninsula, Nunavut and its implication for petroleum potential in Cumberland Sound
Conodonts recovered from the carbonate xenoliths in the kimberlites confirm the Paleozoic cover on the Hall Peninsula, Nunavut
Ordovician conodont biostratigraphy and redefinition of the age of lithostratigraphic units on northeastern Melville Peninsula, Nunavut
Upper Ordovician conodont biostratigraphy and the age of the Collingwood Member, southern Ontario, Canada 1 Earth Science Sector (ESS) Contribution 20100302.
Late Ordovician conodont biostratigraphy and redefinition of the age of oil shale intervals on Southampton Island Earth Science Sector Contribution 20100054.
New insights into Ordovician oil shales in Hudson Bay Basin: their number, stratigraphic position, and petroleum potential
Late Ordovician–Early Silurian conodont biostratigraphy and thermal maturity, Hudson Bay Basin
LATE ORDOVICIAN TO EARLY SILURIAN CONODONT FAUNAS FROM THE KOLYMA TERRANE, OMULEV MOUNTAINS, NORTHEAST RUSSIA, AND THEIR PALEOBIOGEOGRAPHIC AFFINITY
Evolution of the early Paleozoic Cordilleran margin of Laurentia: tectonic and eustatic events interpreted from sequence stratigraphy and conodont community patterns ,
Arenigian (Early Ordovician) sea-level history and the response of conodont communities, western Newfoundland
Abstract Twelve conodont communities and assemblages in the Cambrian-Ordovician interval of western Newfoundland are recognized by four cluster analyses, which include 18 468 identifiable conodont specimens recovered from 230 conodont-bearing samples from four stratigraphic sections. Each section represents a different facies: platform, upper proximal slope, lower proximal slope, and distal slope. The 12 conodont communities and assemblages were differentiated into pelagic and nektobenthic communities as well as both the assemblages with a mixture of pelagic and nektobenthic communities and transported assemblage. The distribution of conodont communities along the platform-to-slope environmental gradient shows some gradational relationships. Relative sea-level curves derived in part from the distribution pattern of conodont communities reveal a major sea-level drop in the latest Cordylodus proavus Zone time, and two major sea-level rises in the early Iapetognathus fluctivagus Zone time and early Cordylodus angulatus Zone time, respectively.
Abstract Conodont diversity was severely reduced during the terminal Ordovician mass extinction. Few species, mainly coniform taxa, survived across the Ordovician-Silurian boundary. The nature and timing of the post-extinction recovery and diversification have previously been difficult to assess, due to limited knowledge and preservation of the earliest Silurian faunas. Recent documentation of early Llandovery conodont faunas from a complete stratigraphic succession on Anticosti Island, Québec, along with the data re-examined from earlier detailed studies, provides the basis for a new analysis. Five evolutionary cycles are recognized through the Llandovery, together with a distinct set of bio-events that are interpreted as immigration, emigration, origination, and extinction events through consideration of global occurrence data for Llandovery conodonts. These events are supported by the detailed sampling and stratigraphic range data, as well as the first cladistic analysis of the four key genera: Oulodus, Ozarkodina, Pterospathodus , and Rexroadus . The Anticosti Basin may have been an important centre of evolutionary radiation, given that several genera and species have first appearances in this region and that initial evolutionary lineages can be established for many taxa. Many faunal variations appear to be correlated to eustatic events as well as the changing ocean-climate state through this boundary interval.