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Department of Archaeology

 
Read more at: Anthropogenic Wetlands and the Long Transition to Agriculture in the Levant (Anthropogenic Wetlands)

Anthropogenic Wetlands and the Long Transition to Agriculture in the Levant (Anthropogenic Wetlands)

The project will develop an innovative new model to examine the pivotal role of anthropogenic wetlands in the long transition to agriculture in the Levant. Remarkably, while this transition has been explored in some detail, we still do not have a good grasp on the long-term developments and causes of the origins of agriculture, mainly due to a lack of direct botanical evidence.


Read more at: ArchBiMod – Agent-Based Modelling to assess the quality and bias of the archaeological record

ArchBiMod – Agent-Based Modelling to assess the quality and bias of the archaeological record

Archaeological data is often biased and incomplete. This is a well-known issue for most archaeologists. Although studies of specific sites and small regions can have this into account, the effect of this problem increases exponentially as archaeologists expand their chronological and geographic frame, and try to answer questions related to general dynamics and broad human processes.


Read more at: Buckbee Project

Buckbee Project

A multidisciplinary project investigating the interrelations between crop plants, insect pollinators, and human management in prehistory.


Read more at: Chromatin 3D Structure of Archaic Human Populations and Its Impact on Modern Human Genomes

Chromatin 3D Structure of Archaic Human Populations and Its Impact on Modern Human Genomes

Most people in Eurasia today carry fragments of DNA inherited from ancient hominins such as Neanderthals and Denisovans. This genetic legacy has influenced traits such as immunity, skin pigmentation, and susceptibility to certain diseases, but the ways in which archaic DNA continues to shape human biology are still not fully understood.


Read more at: EHSCAN-Exploring Early Holocene Saharan Cultural Adaptation and Social Networks through socio-ecological inferential modelling

EHSCAN-Exploring Early Holocene Saharan Cultural Adaptation and Social Networks through socio-ecological inferential modelling

EHSCAN is a Horizon-MSCA-2022-PF scheme Fellowship Funded by UKRI and hosted by the McDonald Institute for Archaeological Research, University of Cambridge. 


Read more at: ENCOUNTER

ENCOUNTER

ENCOUNTER investigates the Jomon-Yayoi transition, a demic and cultural diffusion event that led the predominantly hunting, gathering, and fishing-based communities of the Japanese islands to adopt rice and millet farming during the 1st millennium BC.


Read more at: Experiencing monuments. Visualization of Western European prehistoric megalithic structures

Experiencing monuments. Visualization of Western European prehistoric megalithic structures

In Western Europe the main use for artificial monuments out of stone, wood or earthy materials extends from the Late Neolithic to Early Bronze Age (4th and 3rd millennium BCE).  This unique period of landscape adaptation has a lasting, visible imprint on the present. However, as monuments are by definition visual landmarks, there is currently a lack of research regarding the perceptive clues offered by these structures to the people who built and frequented them.


Read more at: Exploring locomotor and biomechanical diversity in the hominin fossil record based on long bone external morphology

Exploring locomotor and biomechanical diversity in the hominin fossil record based on long bone external morphology

Our knowledge of human evolution is limited by several factors. One is tightly linked to the nature of the fossil record, as bones of our extinct human relatives and other primate species rarely appear in archaeological and paleontological sites, and when they do, they very commonly appear in an isolated fashion and/or are highly fragmented. These factors more severely affect studies of limb bones, which have been vaguely analysed or even ignored in certain cases.


Read more at: How to build a hominin: predictive simulations of locomotion in human evolution

How to build a hominin: predictive simulations of locomotion in human evolution

How did our ancestors walk? Perhaps the greatest challenge that this question has posed in the past, is the lack of methodological applications in which no study has previously reconstructed how our ancestors moved using biomechanical modelling techniques. We need to consider not just individual bones when reconstructing movement, but to look at the full body to begin to tell the story of our ancestors’ movement. Muscles animate our body, permitting us to walk, run and even dance. We must reconstruct the muscles of the body to understand ancestral locomotion.


Read more at: Increasingly Anthropogenic Landscapes and the Evolution of Plant-Food Production (HE-Interactions)

Increasingly Anthropogenic Landscapes and the Evolution of Plant-Food Production (HE-Interactions)

The aim of H-E Interactions is to investigate how increasingly anthropogenic wetland landscapes, and the reliable resources within those environments, influenced the evolution of plant-food production and the origins of agriculture through the Final Pleistocene and into the Early Holocene (ca. 23-8 ka cal. BP).


Read more at: Mapping Africa’s Endangered Archaeological Sites and Monuments

Mapping Africa’s Endangered Archaeological Sites and Monuments

The Mapping Africa’s Endangered Archaeological Sites and Monuments (MAEASaM) project, funded by Arcadia charitable foundation, is documenting and compiling a trans-national inventory of Africa’s rich archaeological heritage, including many previously unidentified sites and monuments. Particular emphasis is being given to mapping and recording sites under threat, whether from urban growth, conflict, sea-level change or infrastructure development, among other adverse impacts.


Read more at: Mapping Archaeological Heritage in South Asia

Mapping Archaeological Heritage in South Asia

The Mapping Archaeological Heritage in South Asia (MAHSA) project, now in its Phase 2, will continue to document the endangered archaeology and cultural heritage of the Indus River Basin and the surrounding areas and publish this information in an Open Access Arches geospatial database. Over the course of Phase 2, the project will expand its scope to include the Ganges River Basin, Baluchistan and the coastal areas of India and Pakistan.


Read more at: MedAfrica Project - Archaeological deep history and dynamics of Mediterranean Africa, ca.9600-700 BC

MedAfrica Project - Archaeological deep history and dynamics of Mediterranean Africa, ca.9600-700 BC

This project sets out to produce a comprehensive, problematised synthesis and interpretation of long-term social and economic dynamics along Mediterranean Africa during the Holocene (9600-700 BC).


Read more at: Neanderthals as engineers? Investigating the link between tool design, functionality and use

Neanderthals as engineers? Investigating the link between tool design, functionality and use

Stone tool artefacts represent the only continuous material record from early hominins across a period of three million years. Lithics provide information about early human technological adaptations and innovations, and in turn, understanding these technologies allows insights into early human behaviour. This assessment is based on the fact that lithic artefacts reflect (un-)conscious decision-making. Tool design, for instance, is characterised by the selection of the raw material and choices about overall tool morphology, edge retouch, and other factors.


Read more at: Palaeoanalytics

Palaeoanalytics

Human evolution is a central research area in biology and anthropology and has a history of research going back more than 150 years. For most of that time, evidence has come from digging up fossils and archaeological remains. Research in human evolution has been transformed by the impact of genomics and the development of ancient DNA methodologies, producing new insights into past demography, dispersal and admixture patterns, social behaviour, selection, disease history, and more.


Read more at: Science @ Tarquinia

Science @ Tarquinia

The project Science @ Tarquinia aims to provide the complementary scientific support for the long-standing study of the ancient Etruscan city of Tarquinia by the University of Milan. This Unesco World Heritage site is well known for its magnificent painted tombs, its city walls, the Temple of Ara Regina and the monumental zone where the University of Milan has worked for over 30 years. The collaborative work (which started in September 2019) includes flotation, micromorphology, AMS dating, isotopic analysis and aDNA.


Read more at: The Cambridge Heritage Science Hub Initiative (CHERISH)

The Cambridge Heritage Science Hub Initiative (CHERISH)

Cambridge is home to world-leading researchers across archaeological science, technical art history and heritage science, based at Department of Archaeology, the Fitzwilliam Museum, and the Hamilton Kerr Institute, among others. There are multiple synergies across these institutions in terms of research methodologies, goals and ambitions in the field of technical and scientific investigation of works of art and archaeological objects.


Read more at: Transitions in early stone tool technologies: a computer vision and machine learning approach

Transitions in early stone tool technologies: a computer vision and machine learning approach

The transition from Oldowan to Acheulean technologies are hypothesised to be concomitant with advances in cognition and behaviour. However, the nature of these shifts, and their cultural and evolutionary implications are poorly defined and understood. While extensive literature exists on these technologies, significant differences in research methods and traditions make comparative and comprehensive analyses problematic.


Read more at: TwoRains

TwoRains

An international and interdisciplinary investigation of the interplay and dynamics of winter and summer rainfall systems and human adaptation to the ecological conditions created by those systems.