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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Africa
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East Africa
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Ethiopia (1)
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Blue Mountains (1)
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Cascade Range (1)
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North America
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United States
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California
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Nevada
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Oregon
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fossils
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Plantae
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geochronology methods
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geologic age
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Wanapum Basalt (1)
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Paleogene
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igneous rocks
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andesites (1)
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Primary terms
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Africa
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carbon
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Paleogene
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Clarno Formation (4)
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middle Eocene (1)
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upper Eocene
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Tepee Trail Formation (1)
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Oligocene
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lower Oligocene (3)
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upper Oligocene (2)
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White River Group (1)
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Chordata
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Vertebrata
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Reptilia
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glasses
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volcanic glass (3)
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pyroclastics
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ash-flow tuff (1)
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rhyolite tuff (1)
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tuff (4)
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rhyodacites (1)
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Invertebrata
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North America
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oxygen
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O-18/O-16 (1)
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sedimentary petrology (4)
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sedimentary rocks
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sedimentation (3)
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soils
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stratigraphy (4)
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United States
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Oregon
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turbidite (1)
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soils
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paleosols (5)
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soils
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John Day Formation
Two Asian cricetodontine-like muroid rodents from the Neogene of western North America
A redescription and phylogenetic analysis based on new material of the fossil newts Taricha oligocenica Van Frank, 1955 and Taricha lindoei Naylor, 1979 (Amphibia, Salamandridae) from the Oligocene of Oregon
Statistical analysis of dental variation in the Oligocene equid Miohippus (Mammalia, Perissodactyla) of Oregon
New material of the marsupial (Mammalia, Metatheria) Herpetotherium merriami (Stock and Furlong, ) from the John Day Formation, late Oligocene, Oregon, USA
ABSTRACT The John Day Formation of central and eastern Oregon, contains a widespread assemblage of both ash-flow and airfall tuffs, yet only a few corresponding caldera sources have been identified in the region. Investigators have long speculated on the sources of tuffs in the John Day Formation and have suggested that these pyroclastic rocks were vented from now buried eruptive centers in or marginal to a nascent Cascade Range. Recent detailed geologic mapping in the John Day and Clarno Formations, however, indicates the presence of at least three large-scale rhyolite caldera complexes centered along the northeast-trending axis of the Blue Mountains. This field guide describes a three-day geologic transect, from the scenic high desert of central Oregon eastward across the axis of the Blue Mountains, that will examine the physical volcanology and geologic setting of the 41.50-39.35 Ma Wildcat Mountain caldera exposed along the crest of the Ochoco Mountains, the 29.56 Ma Crooked River caldera at Prineville, and the 29.8 to 28.1 Ma Tower Mountain caldera near Ukiah.
Revised Chronostratigraphy and Biostratigraphy of the John Day Formation (Turtle Cove and Kimberly Members), Oregon, with Implications for Updated Calibration of the Arikareean North American Land Mammal Age
Glacial-interglacial–scale paleoclimatic change without large ice sheets in the Oligocene of central Oregon
Ecological polarities of mid-Cenozoic fossil plants and animals from central Oregon
Fossil Andisols Identified with Mass-Balance Geochemistry (Oligocene John Day Formation, Oregon, U.S.A.)
Formation of Zeolites in Open Hydrologic Systems
Paleotemperature estimation from dicotyledonous wood anatomical characters
Late Eocene–early Oligocene tectonism, volcanism, and floristic change near Gray Butte, central Oregon
Alluvial terraces and Paleosols as indicators of early Oligocene climate change (John Day Formation, Oregon)
Late Eocene detrital laterites in central Oregon: Mass balance geochemistry, depositional setting, and landscape evolution
Plagiomenids (Mammalia: ?Dermoptera) from the Oligocene of Oregon, Montana, and South Dakota, and middle Eocene of northwestern Wyoming
Two new genera and species of plagiomenids (Mammalia, ?Dermoptera, Plagiomenidae) are described from the North American Uintan (middle Eocene) and Chadronian (early Oligocene). A third genus and species, Ekgmowechashala philotau, from the early and middle Arikareean (late Oligocene) of the northern United States, is removed from the primate family Omomyidae and placed in the Plagiomenidae. All three newly recognized plagiomenids are placed in the Ekgmowechashalinae, sister subfamily to the subfamily Plagiomeninae (new rank). Ekgmowechashaline plagiomenids are somewhat primate-like, as is the plagiomenine genus Worlandia, but the Plagiomenidae are usually considered to be allied to the living colugos of southeast Asia, order Dermoptera. Analysis of that relationship is placed outside the scope of this paper. Tarka stylifera, the earliest known ekgmowechashaline, occurs in the type section of the Tepee Trail Formation, early Uintan (Shoshonian: late medial Eocene) of northwestern Wyoming. This locality falls in paleomagnetic Chron C20R, interpreted to be close to 47.5 Ma in age. A second, more primitive but later-occurring ekgmowechashaline genus and species, Tarkadectes montanensis, is from a nominally early Oligocene level (Chadronian) in the Kishenehn Formation of northern Montana. Ekgmowechashala is known from lower dentitions from the early Arikareean Sharps Formation of South Dakota and probably from an upper dentition reported from middle Arikareean rocks in the John Day Formation of Oregon. Ekgmowechashala is placed with the other two genera because of lower cheek-tooth morphology, but it lacks the enlarged incisor of Tarka. Ekgmowechashalines are hypothesized here to be primarily frugivores, folivores, and nectar- and exudate-feeders. Until now, known undoubted plagiomenids were restricted to the Paleocene and early Eocene (Wasatchian). The newly recognized post-Wasatchian occurrences are all in the northern part of the United States and are in keeping with previously known plagiomenid geographic distribution, which ranged from northern Wyoming to the Canadian arctic and possibly beyond.