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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Asia
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Central Asia
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Pamirs (3)
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Far East
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Burma (3)
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upper Oligocene (2)
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Primary terms
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Asia
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Pakistan
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Salt Range (1)
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Potwar Plateau (2)
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Indus-Yarlung Zangbo suture zone (10)
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Karakoram (4)
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Kopet-Dag Range (2)
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Iran
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atmosphere (1)
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carbon
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Cenozoic
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Siwalik System (4)
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middle Tertiary (2)
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Neogene
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Guantao Formation (1)
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lower Miocene
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Kasauli Series (1)
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middle Miocene (4)
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upper Miocene (1)
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Pliocene
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Cimmerian (1)
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lower Pliocene (1)
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Paleogene
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Dongying Formation (1)
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Eocene
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lower Eocene (1)
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middle Eocene (1)
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Subathu Formation (1)
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upper Eocene (2)
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Oligocene
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upper Oligocene (2)
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Paleocene (2)
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Paleocene-Eocene Thermal Maximum (1)
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Shahejie Formation (1)
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upper Tertiary (1)
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upper Cenozoic (4)
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Chordata
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Invertebrata
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Himalayan Orogeny
Zircon geochronology and Hf isotopic study from the Leo Pargil Dome, India: implications for the palaeogeographic reconstruction and tectonic evolution of a Himalayan gneiss dome
Origin of the Miocene Adakitic Rocks and Implication for Tectonic Transition in the Himalayan Orogen: Constraints from Kuday Granitoid Porphyry in Southern Tibet
Fluid Inclusion and Titanite U-Pb Age Constraints on the Yuanjiang Ruby Mineralization in the Ailao Shan-Red River Metamorphic Belt, Southwest China
Paleozoic–Mesozoic dispersal of Gondwana: Insights from detrital zircon geochronology of Lesser Himalaya strata, eastern Nepal
Understanding pre- and syn-orogenic tectonic evolution in western Himalaya through age and petrogenesis of Palaeozoic and Cenozoic granites from upper structural levels of Bhagirathi Valley, NW India
Construction of the Lesser Himalayan–Subhimalayan thrust belt: The primary driver of thickening, exhumation, and high elevations in the Himalayan orogen since the middle Miocene
The impact of a tear in the subducted Indian plate on the Miocene geology of the Himalayan-Tibetan orogen
Filling Provenance in Fracture Cavity Formation within Aksu Area, Tarim Basin, NW China: Indicators from Major and Trace Element, Carbon-Oxygen, and Strontium Isotope Compositions
Geomorphology and Neotectonics of Southwestern Crimea
Miocene high-temperature leucogranite magmatism in the Himalayan orogen
Development and growth of basement-involved structural wedges in the northwestern Qaidam Basin, China
Three-dimensional strain accumulation and partitioning in an arcuate orogenic wedge: An example from the Himalaya
From extension to tectonic inversion: Mid-Cretaceous onset of Andean-type orogeny in the Lhasa block and early topographic growth of Tibet
Discovery of Intracratonic Rift in the Upper Yangtze and Its Control Effect on the Formation of the Anyue Giant Gas Field
Characteristics of micropores, pore throats, and movable fluids in the tight sandstone oil reservoirs of the Yanchang Formation in the southwestern Ordos Basin, China
The architecture of organic matter and its pores in highly mature gas shales of the lower Silurian Longmaxi Formation in the upper Yangtze platform, south China
Ali Mehmet Celâl Şengör: A geologist who unravels the histories of continents and oceans
Inherited terrane properties explain enigmatic post-collisional Himalayan-Tibetan evolution
Crustal architecture and evolution of the Himalaya–Karakoram–Tibet Orogen: introduction
Abstract Indian basement faults, which bound three orogen-perpendicular palaeotopographic ridges of Precambrian Indian basement south of the Himalaya, extend to the base of the Indian lithosphere and to the northern extent of the Indian lithosphere underneath Tibet. In the eastern Himalaya, the active orogen-perpendicular Yadong–Gulu graben is aligned with an earthquake-generating strike-slip fault in the high Himalaya. We argue that the graben results from crustal necking during reactivation of the underplated basement fault. In the central Himalaya, along-strike diachronous deformation and metamorphism within the Himalayan metamorphic core, as well as lateral ramps in the foreland thrust belt, spatially correspond to the Lucknow and Pokhara lineaments that bound the subsurface Faizabad Ridge in the Indian basement. Analogue centrifuge modelling confirms that offset along such deep-seated basement faults can affect the location, orientation and type of structures developed at various stages of orogenesis and suggests that it is mechanically feasible for strain to propagate through a melt-weakened mid-crust. We suggest that inherited Indian basement faults affect the ramp-flat geometry of the basal Main Himalayan Thrust, partition the Himalayan range into distinct zones, localize east–west extension resulting in the Tibetan graben and, ultimately, contribute to lateral variability in tectonic evolution along the orogen's strike.