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Research Publication

Mid-Pleistocene aridity and landscape shifts promoted Palearctic hominin dispersals.

Zan Jinbo, J Louys, Julien J et al.

39604451 PubMed ID
12 Authors
2024-11-27 Published
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Chapter I

Publication Details

Comprehensive information about this research publication

Authors

ZJ
Zan Jinbo
JL
J Louys
JJ
Julien J
DR
Dennell Robin
RP
R Petraglia
MM
Michael M
NW
Ning Wenxiao
WF
W Fang
XX
Xiaomin X
ZW
Zhang Weilin
WH
W Hu
ZZ
Zhe Z
Chapter II

Abstract

Summary of the research findings

Population expansions and contractions out of and into Africa since the early Pleistocene have influenced the course of human evolution. While local- and regional-scale investigations have provided insights into the drivers of Eurasian hominin dispersals, a continental-scale and integrated study of hominin-environmental interactions across Palearctic Eurasia has been lacking. Here, we report high-resolution (up to ∼5-10 kyr sample interval) carbon isotope time series of loess deposits in Central Asia and northwest China, a region dominated by westerly winds, providing unique paleoecological and paleoclimatic records for over ~3.6 Ma. These data, combined with further syntheses of Pleistocene paleontological and archaeological records and spatio-temporal distributions of Eurasian eolian deposits and river terraces, demonstrate a pronounced transformation of landscapes around the Mid-Pleistocene Climate Transition. Increased climate amplitude and aridity fluctuations over this period led to the widespread formation of more open habitats, river terraces, and desert-loess landscapes, pushing hominins to range more widely and find solutions to increasingly challenging environments. Mid-Pleistocene climatic and ecological transitions, and the formation of modern desert and loess landscapes and river networks, emerge as critical events during the dispersal of early hominins in Palearctic Eurasia.

Chapter III

Analysis

Comprehensive review of ancestry and genetic findings

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Summary

Key Findings

Ancestry Insights

Traits Analysis

Historical Context

Scientific Assessment