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Paleoaltimetry incorporating atmospheric physics and botanical estimates of paleoclimate
Using fossil leaves as paleoprecipitation indicators: An Eocene example: Comment and Reply
Paleobotanical evidence of Eocene and Oligocene paleoaltitudes in midlatitude western North America
Stable isotope study of fluid inclusions in fluorite from Idaho: Implications for continental climates during the Eocene: Comment and Reply
Late Tertiary floral assemblage from upland gravel deposits of the southern Maryland Coastal Plain
Paleoecologic, paleoclimatic, and evolutionary significance of the Oligocene Creede flora, Colorado
Late Cretaceous-Cenozoic history of deciduousness and the terminal Cretaceous event
Plant taphonomy of late Holocene deposits in Trinity (Clair Engle) Lake, Northern California
Alaskan Cretaceous-Tertiary floras and Arctic origins
Comments and Replies on “Model for the origin of the Yakutat block, an accreting terrane in the northern Gulf of Alaska”: COMMENT
A chronologic framework for Cenozoic megafossil floras of northwestern North America and its relation to marine geochronology
Collection and analysis of fossil plants in several stratigraphic sections have produced a chronologic framework for plant-bearing rocks of the northwestern North American province. The geographic extent of this province varied during the Cenozoic, but the stage framework can generally be applied to the region west of the Rocky Mountains (including Alaska) during the Paleogene and Miocene. The occurrence of some plant megafossils in dominantly marine sections of Paleogene age provides only a general concept of relation to the marine geochronology. Numerous Neogene floras have been radiometrically dated and can thus be more accurately related to the marine geochronology. The changes in the floral assemblages are largely the result of major climatic changes. If these changes are assumed to represent secular phenomena, the provincial chronology can also be related to the Cenozoic terminology in those Northern Hemisphere regions where paleobotanical data indicate that a similar series of climatic changes occurred. Inferences based on a combination of radiometric ages, correlations of West Coast benthic foraminiferal stages to the planktonic chronologies, and marine-nonmarine correlations of West Coast units indicate that the Eocene/Oligocene boundary may be as young as 32 m.y.