H2020Individual fellowship2017–2021

MORPHOLITHEX · Morphology of Lithic Artifacts: Experimental and Morphometric Approaches

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2017-10-01 → 2021-08-08
EU contribution
€239,861
Participants
2
Scheme
MSCA-IF-GF

Lines connect the coordinator with its partners.

Results in brief

Morphology of Lithic Artifacts: Experimental and Morphometric Approaches

MORPHOLITHEX project set out to better understand how prehistoric people made stone tools. Archaeologists have learned, over several decades of replicative experimental work, that flintknapping is a rather complex motor skill. They understood that the person producing a stone tool can control its final form by manipulating the various aspects of tool production: shaping the geometry of the core, the angle of the platform edge, how deep into the platform a core is struck, the angle of the blow, using hammers of different size and shape. Archeologists have used replicative experiments to show how each of these variables affects the outcome of the flake. Moreover, it was stressed by the researchers that how the knapper controls all these aspects, testifies to the predetermination of a blank form and is thought to capture the cognitive and learning abilities of knappers. However, the flintknapping process is so internalized that, for the knapper, it is very difficult to evaluate objectively the exact effect each of these variables have, separately and especially how they interact with one other. MORPHOLITHEX aimed to parse out the main components of the knapping processes that have a crucial impact on the final stone tool product. It used artifacts produced in a simulated knapping setting (a custom-built machine) that makes it possible to control several variables relevant for flintknapping and thus evaluate their importance – independently and in interaction with other variables - in the final size and the shape on an artifact. Cores made out of glass are knapped in a machine that uses pneumatic cylinder or hydraulic press to remove flakes, thus imitating flintknapping. In this setting, it is possible to control many, if not all the variables that are under control of the knapper: core shape, platform angle and depth, angle of blow, hammer type. Flakes coming off the cores in this experiment were 3D scanned and advanced methods are used to analyze the data: 1) 3D geometric morphometrics to better capture size and shape, 2) advanced statistical modeling to investigate the simultaneous effects of different variables, and especially their interaction. This work contributed to our understanding of how stones break. It addressed the underlying rules of flake formation, that will further help archaeologist better understand how prehistoric people exploited these rules in the course of Prehistory.

Data: CORDIS, © European Union

Project objective

MORPHOLITHEX addresses one of the major research questions in prehistoric stone tool technologies - what are the crucial variables that knappers control to determine the form of their stone artifacts? Specifically, the project investigates the effects of variables that are under the direct control of the knapper, namely various platform management strategies and the morphology of the core surface, on the size and shape of the product. The project uses a novel combination of methods: the knapping process is simulated in an experimental setting that uses an apparatus that enables independent variables to be controlled and measured to isolate their effects on the final results; three-dimensional geometric morphometric methods are used to explore the size and shape of the blanks produced by the experiment; and advanced statistical modeling is used correlate the experimental predictors to the shape and size of the resulting blanks. The specific concentration is on platform management and core surface morphologies common in Levallois blank production, a technology that is present across the Old World during the last 300 thousand years, and is common during the rise and expansion of modern humans around 50 thousand years ago. The goal is to construct a more comprehensive model to account for morphological variation in stone tools and to validate this model using replicative and archeological collections. This quantitatively driven research integrates several of the most advanced approaches in our field and aims to significantly contribute to our understanding of the elementary principles of producing stone tools in prehistory. It further intends to make methodological advancements in controlled experiments for investigating the production of stone tools, as well as developing protocols for analyzing stone tool shape and size with geometric morphometrics.

Original text from CORDIS.

Participants

  • MAX-PLANCK-GESELLSCHAFT ZUR FORDERUNG DER WISSENSCHAFTEN EV · MUNCHENCoordinatorGermany
  • THE TRUSTEES OF THE UNIVERSITY OF PENNSYLVANIA CORP · PhiladelphiaUnited States

Links

Data: CORDIS, © European Union