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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Collision structures of the Prince William terrane and Chugach terrane docking along the Shumagin and Unimak convergent margins, Alaska, USA Open Access
Interchangeable Use of GNSS and Seismic Data for Rapid Earthquake Characterization: 2021 Chignik, Alaska, Earthquake Available to Purchase
Two‐Staged Rupture of the 19 October 2020 M w 7.6 Strike‐Slip Earthquake Illuminated the Boundary of Coupling Variation in the Shumagin Islands, Alaska Available to Purchase
Sensitivity of Tsunami Data to the Up‐Dip Extent of the July 2021 M w 8.2 Alaska Earthquake Available to Purchase
Anisotropy-revealed change in hydration along the Alaska subduction zone Available to Purchase
AutoCoulomb: An Automated Configurable Program to Calculate Coulomb Stress Changes on Receiver Faults with Any Orientation and its Application to the 2020 M w 7.8 Simeonof Island, Alaska, Earthquake Available to Purchase
The Alaska Amphibious Community Seismic Experiment Available to Purchase
Connections between subducted sediment, pore-fluid pressure, and earthquake behavior along the Alaska megathrust Available to Purchase
Modern Salt-Marsh and Tidal-Flat Foraminifera From Sitkinak and Simeonof Islands, Southwestern Alaska Available to Purchase
Observation and modeling of source effects in coda wave interferometry at Pavlof volcano Available to Purchase
Stratigraphic framework and estuarine depositional environments of the Miocene Bear Lake Formation, Bristol Bay Basin, Alaska: Onshore equivalents to potential reservoir strata in a frontier gas-rich basin Available to Purchase
Dinosaurs of Alaska: Implications for the Cretaceous origin of Beringia Available to Purchase
Fossils within accreted terranes are typically used to describe the age or origin of the exotic geologic blocks. However, accretion may also provide new pathways for faunal exchange between previously disconnected landmasses. One such landmass, the result of accretion, is Beringia, that entity encompassing northeastern Asia and northwestern North America and the surmised land connection between the two regions. The present concept of Beringia as a Quaternary subcontinent includes a climatic component in the form of glacial advances and retreats driving changes in sea level. These changes may have facilitated exchanges of marine biota between the Pacific Ocean and Arctic Basin, or exchanges of terrestrial faunas and floras between Asia and North America. The Beringian ecosystem includes specializations of the flora and fauna, especially in the vertebrate fauna. A review of tectonic reconstructions and the striking taxon-free parallel patterns in data on the Cretaceous and Quaternary fauna and flora suggest that a generalized concept of Beringia should be formally extended back in time to the Cretaceous. A significant shift in emphasis of defining variables occurs with this extension. Climate, in the form of meteorological phenomena, and geologic history are important variables in the previously recognized definition of Beringia. The extension of Beringia into the Cretaceous implies that Beringia is rooted in its accretionary rather than its climatic history; in other words, the geographic pattern as the result of tectonics is the defining parameter for Beringia.