Three-dimensional surface morphometry differentiates behaviour on primate percussive stone tools

Author:

Proffitt Tomos1ORCID,Reeves Jonathan S.1ORCID,Benito-Calvo Alfonso2,Sánchez-Romero Laura3,Arroyo Adrián45,Malaijivitnond Suchinda67ORCID,Luncz Lydia V.1

Affiliation:

1. Technological Primates Research Group, Max Planck Institute for Evolutionary Anthropology, Deutscher Platz 6, 04103 Leipzig, Germany

2. CENIEH, Paseo Sierra de Atapuerca 3, 09002 Burgos, Spain

3. Human Evolution Research Center, University of California, 3101 Valley Life Sciences Building, Berkeley, CA 94720, USA

4. Institut Català de Paleoecologia Humana i Evolució Social (IPHES-CERCA), Zona Educacional 4, Campus Sescelades URV (Edifici W3), 43007 Tarragona, Spain

5. Departament d'Història i Història de l'Art, Universitat Rovira i Virgili, Avinguda de Catalunya 35, 43002 Tarragona, Spain

6. Faculty of Science, Chulalongkorn University, Bangkok, Thailand

7. National Primate Research Centre of Thailand, Chulalongkorn University, Saraburi, Thailand

Abstract

The Early Stone Age record preserves a rich behavioural signature of hominin stone tool making and use. The role of percussive technology in the daily subsistence strategies of our earliest ancestors has seen renewed focus recently. Studies of modern primate tool use highlight the diverse range of behaviours potentially associated with percussive technology. This has prompted significant methodological developments to characterize the associated damage marks (use-wear) on hammerstones and anvils. Little focus has, however, been paid to identifying whether these techniques can successfully differentiate between the damage patterns produced by specific and differing percussive behaviours. Here, we present a novel workflow drawing on the strengths of visual identification and three-dimensional (3D) surface quantification of use-wear. We apply this methodology firstly to characterize macaque percussive use-wear and test the efficacy of 3D surface quantification techniques in differentiating between percussive damage and natural surface topography. Secondly, we use this method to differentiate between use-wear associated with various wild macaque percussive behaviours. By combining analyst-directed, 3D surface analysis and use-wear dimensional analysis, we show that macaque percussive behaviours create specific diagnostic signatures and highlight a means of quantifiably recording such behavioural signatures in both primate and hominin contexts.

Publisher

The Royal Society

Subject

Biomedical Engineering,Biochemistry,Biomaterials,Bioengineering,Biophysics,Biotechnology

Reference73 articles.

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3. Old stones' song: Use-wear experiments and analysis of the Oldowan quartz and quartzite assemblage from Kanjera South (Kenya)

4. Mercader J et al. 2016 Acheulean ecology diet and echnological behavior: plant residues from Olduvai Gorge. In 6th Ann. Meeting of the European Society for the study of Human Evolution (ESHE) 4–17 September Madrid Spain. Leipzig Germany: European Society for the study of Human Evolution. See https://cir.cenieh.es/bitstream/20.500.12136/968/1/Acheulean%20Ecology%2c%20Diet%2c%20and%20echnological%20Behavior%20Plant%20Residues%20from%20Olduvai%20Gorge_Mercader%20Florin_et_al_2016.pdf.

5. Evidence for stone-tool-assisted consumption of animal tissues before 3.39 million years ago at Dikika, Ethiopia

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