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Journal ArticleDOI

Evolution of Asian monsoons and phased uplift of the Himalaya–Tibetan plateau since Late Miocene times

TLDR
The results of a numerical climate-model experiment support the argument that the stages in evolution of Asian monsoons are linked to phases of Himalaya–Tibetan plateau uplift and to Northern Hemisphere glaciation.
Abstract
The climates of Asia are affected significantly by the extent and height of the Himalayan mountains and the Tibetan plateau1,2,3,4 Uplift of this region began about 50 Myr ago, and further significant increases in altitude of the Tibetan plateau are thought to have occurred about 10–8 Myr ago4,5, or more recently However, the climatic consequences of this uplift remain unclear Here we use records of aeolian sediments from China6,7 and marine sediments from the Indian8,9,10 and North Pacific oceans11 to identify three stages of evolution of Asian climates: first, enhanced aridity in the Asian interior and onset of the Indian and east Asian monsoons, about 9–8 Myr ago; next, continued intensification of the east Asian summer and winter monsoons, together with increased dust transport to the North Pacific Ocean11, about 36–26 Myr ago; and last, increased variability and possible weakening of the Indian and east Asian summer monsoons and continued strengthening of the east Asian winter monsoon since about 26 Myr ago The results of a numerical climate-model experiment, using idealized stepwise increases of mountain–plateau elevation, support the argument that the stages in evolution of Asian monsoons are linked to phases of Himalaya–Tibetan plateau uplift and to Northern Hemisphere glaciation

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Citations
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Journal ArticleDOI

Magnetostratigraphic dating of early humans in China

TL;DR: A review of magnetostratigraphic studies of some early Pleistocene strata bearing hominin remains and/or artifact stone tools from northern to southern China is presented in this paper.
Journal ArticleDOI

Miocene rise of the Shillong Plateau and the beginning of the end for the Eastern Himalaya

TL;DR: In this paper, the authors suggest that the formation of the Shillong Plateau may be linked to a number of kinematic changes within the Himalayan and Burman collision zones that occur at the same time.
Journal ArticleDOI

A smart microfluidic affinity chromatography matrix composed of poly(N-isopropylacrylamide)-coated beads.

TL;DR: This work has used stimuli-responsive polymers to construct "smart" beads that can be reversibly immobilized on microfluidic channel walls to capture and release targets, and this temperature-responsive affinity chromatography matrix can be flowed into a column and aggregated via temperature change, followed by the controlled release of affinity-captured targets back into the microfluidity flow stream.
Journal ArticleDOI

Plio-Quaternary stepwise drying of Asia: Evidence from a 3-Ma pollen record from the Chinese Loess Plateau

TL;DR: A 3-Ma pollen record was obtained from a continuous red clay-loess-paleosol sequence at Chaona in the central Chinese Loess Plateau (CLP).
Journal ArticleDOI

Temperature-induced switching of enzyme activity with smart polymer-enzyme conjugates.

TL;DR: Kinetic studies demonstrated that the switching activity was due to the blocking of substrate association by the collapsed polymers, and mechanistic insight is provided that can be utilized to design molecular switches for a variety of stimuli-responsive polymer-protein conjugates.
References
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Journal ArticleDOI

Global vegetation change through the Miocene/Pliocene boundary

TL;DR: For example, this paper found that between 8 and 6 million years ago, there was a global increase in the biomass of plants using C4 photosynthesis as indicated by changes in the carbon isotope ratios of fossil tooth enamel in Asia, Africa, North America and South America.
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Mantle dynamics, uplift of the Tibetan Plateau, and the Indian Monsoon

TL;DR: For example, Hou et al. as mentioned in this paper show that a small increase in the mean elevation of the Tibetan Plateau of 1000 m or more in a few million years is required by abrupt tectonic and environmental changes in Asia and the Indian Ocean.
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Surface Deformation and Lower Crustal Flow in Eastern Tibet

TL;DR: This model predicts east-west extension on the high plateau without convective removal of Tibetan lithosphere and without eastward movement of the crust east of the plateau.
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Correlation between climate events in the North Atlantic and China during the last glaciation

TL;DR: The authors examined grain-size data from Chinese loess and intercalated accretionary palaeosols of last-glacial age for evidence of similar climate signals remote from the North Atlantic region.
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Finite strain calculations of continental deformation .2. comparison with the india-asia collision zone

TL;DR: In this article, a thin viscous sheet model for deformation of continental lithosphere subjected to an indenting boundary condition yield distributions of crustal thickness, of stress and strain rate, and of latitudinal displacements that may be compared with observations in the India-Asia collision zone.
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