The Neolithic Invasion of Europe
Datos Bibliográficos
| ID | 7635247 |
|---|---|
| Autores | Martin B Richards (0000-0003-3118-0967, University of Huddersfield, autor de correspondencia), Martin Richards |
| Año | 2003 |
| Volumen | 32 |
| Número | 1 |
| Páginas | 135-162 |
| Fecha de publicación | 2003-10-01 |
| Peer Reviewed | Sí |
| Open Access | No |
| Tipo | ARTICLE |
| Revista | Annual Review of Anthropology (BOOK_SERIES) |
| Identificadores de la revista | ISSN: 0084-6570 • E-ISSN: 1545-4290 |
| Editorial | Annual Reviews (PUBLISHER • US) |
| DOI | 10.1146/annurev.anthro.32.061002.093207 |
| OpenAlex | W2126967618 |
| Idioma | EN |
| Citas recibidas | 53 |
| Referencias citadas | 75 |
Who are Europeans? Both prehistoric archaeology and, subsequently, classical population genetics have attempted to trace the ancestry of modern Europeans back to the first appearance of agriculture in the continent; however, the question has remained controversial. Classical population geneticists attributed the major pattern in the European gene pool to the demographic impact of Neolithic farmers dispersing from the Near East, but archaeological research has failed to uncover substantial evidence for the population growth that is supposed to have driven this process. Recently, molecular approaches, using non-recombining genetic marker systems, have introduced a chronological dimension by both allowing the tracing of lineages back through time and dating using the molecular clock. Both mitochondrial DNA and Y-chromosome analyses have indicated a contribution of Neolithic Near Eastern lineages to the gene pool of modern Europeans of around a quarter or less. This suggests that dispersals bringing the Neolithic to Europe may have been demographically minor and that contact and assimilation had an important role
Ancient DNA · Archaeological record · Archaeology · Biology · Ethnology · Evolutionary biology · Gene pool · Genealogy · Geography · Population · Prehistory · Archaeology and ancient environmental studies · Demography · Forensic and Genetic Research · Genetic diversity and population structure · History
Craniofacial morphometric variation and the biological history of the peopling of Sardinia
Human Migration
Selection Selection on mitochondrial DNA and the Neanderthal problem
Human Migration
Genographic Project
Parallel palaeogenomic transects reveal complex genetic history of early European farmers
Ancient DNA from European Early Neolithic Farmers Reveals Their Near Eastern Affinities
The Molecular Dissection of mtDNA Haplogroup H Confirms That the Franco-Cantabrian Glacial Refuge Was a Major Source for the European Gene Pool
Genomics at the origins of agriculture, part one
The 'Express Train from Taiwan to Polynesia'
Not just a Single Story
Mitochondrial DNA Sequence Variation in the Boyko, Hutsul, and Lemko Populations of the Carpathian Highlands
Genomics at the origins of agriculture, part two
Monuments néolithiques de la région de Lorient (Morbihan, Bretagne)
Human display and dispersal
Further notes on Mesolithic-Neolithic contacts in the Iron Gates Region and the Central Balkans
Gene-flows and social processes
Clash of cultures? Archaeology and genetics
A Time Series of Prehistoric Mitochondrial DNA Reveals Western European Genetic Diversity Was Largely Established by the Bronze Age
Mitochondrial DNA variation in Jordanians and their genetic relationship to other Middle East populations
New Kids on the Block? ” Reappraising Pottery Styles, aDNA, and Chronology from Western Iberia Early Neolithic
Comprehensive Site Chronology and Ancient Mitochondrial DNAAnalysis from Verteba Cave – a Trypillian Culture Site of Eneolithic Ukraine
Current Knowledge of the Neolithisation Process
Neolithic pots and potters in Europe
Farmers’ spatial behaviour, demographic density dependence and the spread of Neolithic agriculture in Central Europe
Neolitización y modo de vida. El aprovechamiento de moluscos en los primeros grupos neolíticos del este de la Península Ibérica
Process and Dynamics of Mediterranean Neolithization (7000–5500 bc)
Century-scale Holocene processes as a source of natural selection pressure in human evolution
Founder effect, drift, and adaptive change in domestic crop use in early Neolithic Europe
Holocene landscape intervention and plant food production strategies in island and mainland Southeast Asia
Understanding the rates of expansion of the farming system in Europe
Quids and Aprons
Comparing contact-period archaeologies
Participation in evolution and sustainability
Ancient DNA and bioarchaeological perspectives on European and African diversity and relationships on the colonial Delaware frontier
Middle Eastern and European mtDNA lineages characterize populations from eastern Crete
Haplotype Trees and Modern Human Origins
Origins and spread of agriculture in Italy
A Craniometric Perspective on the Transition to Agriculture in Europe
Evolutionary Demography and the Population History of the European Early Neolithic
What Have Genetics Ever Done for Us? The Implications of aDNA Data for Interpreting Identity in Early Neolithic Central Europe
Human paleogenetics of Europe – The known knowns and the known unknowns
Genetic relationships based on discrete dental traits
Kinship and mobility during the prehistoric spread of farming
European Neolithization and Ancient DNA
Demographic model of the Neolithic transition in Central Europe
Migration Concepts in Central Eurasian Archaeology
Early Neolithic Agriculture in the Iberian Peninsula
Kinship, Marriage, and the Genetics of Past Human Dispersals
Westward Ho
Archaeobotanical Evidence for the Spread of Farming in the Eastern Mediterranean
Intensified exploitation of animal products in the Mediterranean Copper Age
High‐resolution compound‐specific δ 15 N isotope dietary study of humans from the Scottish Mesolithic and Neolithic
Comments on Cavalli-Sforza and Otte
The Early Neolithic in Greece
The Origins And Spread Of Agriculture And Pastoralism In Eurasia
The Genetic Legacy of Paleolithic Homo sapiens sapiens in Extant Europeans
Sequence and organization of the human mitochondrial genome
Y chromosome sequence variation and the history of human populations
Southeastern Europe in the transition to agriculture in Europe
MtDNA Analysis Reveals a Major Late Paleolithic Population Expansion from Southwestern to Northeastern Europe
The Emerging Tree of West Eurasian mtDNAs
Radiocarbon evidence for maritime pioneer colonization at the origins of farming in west Mediterranean Europe
Genetic evidence for the spread of agriculture in Europe by demic diffusion
Tracing European Founder Lineages in the Near Eastern mtDNA Pool
Y-Chromosomal Diversity in Europe Is Clinal and Influenced Primarily by Geography, Rather than by Language
Phylogeography of mitochondrial DNA in western Europe
Classification of European mtDNAs From an Analysis of Three European Populations
Prehistoric farming in Europe
The Neolithic Transition and the Genetics of Populations in Europe
Europe's First Farmers
Post-Pleistocene Adaptations
Nationalism, Politics and the Practice of Archaeology
The Dawn of European Civilization
Nationalism, Politics, and the Practice of Archaeology
The Neolithic transition - fact or fiction? Palaeoecological evidence from the Balkans
Genetic and Cultural Diversity of Europe
Multivariate Pattern Searches, the Logic of Inference, and European Prehistory
On the Neolithic transition in Europe
On the transition to farming in Europe, or what was spreading with the Neolithic
Radiocarbon dating and the expansion of farming culture from the Near East over Europe
European Economic Prehistory
Radiocarbon evidence for the Lateglacial Human Recolonisation of Northern Europe
Spatial patterns of human gene frequencies in Europe
A Variation on a Basic Theme
The transition to farming in Southeast Europe
Prehistoric Migration in Europe
The earliest farmers in Europe
Congruent distribution of Neolithic painted pottery and ceramic figurines with Y-chromosome lineages
Uttermost ends of the earth
Agricultural transition and Indo-European dispersals
A History of Archaeological Thought
The Human Y Chromosome Haplogroup Tree
The archaeology of Indo-European
| Obras citantes distintas | 53 |
|---|---|
| Citas por año | 2,41 |
| Intervalo de citas | 2004 - 2026 (23) |
| Velocidad de citación | current |
| Altamente citado | No |
| Tipos de cita | Neutras: 52 |