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Department of Archaeology

 
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: In Africa: The role of East Africa in the evolution of human diversity

In Africa: The role of East Africa in the evolution of human diversity

In Africa is a five-year research programme to investigate the origins of our species - Homo sapiens - and its diversity in Africa, and aims at making new discoveries of early human fossils, archaeological sites and their environmental context.

Read more at: NEMO-ADAP Project

NEMO-ADAP Project

A project investigating Modern human dispersal into Eurasia and its relation to Neanderthal extinction during the Middle to Upper Paleolithic transition.


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: Shanidar Cave Project

Shanidar Cave Project

Shanidar cave viewed from the south (Photograph: Graeme Barker) 

The Shanidar Cave Project


Read more at: The role of traumatic mortality in late human evolution from an integrated non-invasive bioarchaeological and taphonomic perspective

The role of traumatic mortality in late human evolution from an integrated non-invasive bioarchaeological and taphonomic perspective

Traumatic death affects our daily life, but how did traumatic mortality affect human behaviour from an evolutionary perspective? TRAUMOBITA aims to understand how traumatic mortality among prehistoric humans shaped our behaviour during the Late Pleistocene to the Middle Holocene. Confirming that how we died had an enormous influence on our ancestors and represents an enormous change in how we understand human societies.