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February 14, 2026Scientific Reports1 citationsOpen Access

Experimental and archaeological assessment of use-wear persistence on burnt flint from Tinshemet Cave

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ARAlice RodriguezNSNatasha SolodenkoSHSapir Ben Haim

Key Points

  • To evaluate the impact of heating on the surface roughness of burnt flint and the persistence of use-wear traces.
  • Conducted experiments with heated flint flakes used on various materials under controlled fire conditions.
  • Measured surface textures using 3D confocal profilometry before and after burning.
  • Analyzed data through paired statistics and mixed-effects models comparing experimental and archaeological samples.
  • Heating increased vertical roughness and altered shape parameters of burnt flint.
  • Spatial parameters mostly remained stable despite thermal alteration.
  • Buried flakes showed no damage, supporting sediment protection against heating effects.

Abstract

Fire plays a central role in human evolution and site formation, yet its impact on the preservation of microscopic use-wear remains poorly understood. Because heating can modify flint’s surface structure, burnt artefacts are often excluded from functional studies, limiting behavioral interpretations at fire-rich sites such as Tinshemet Cave (Israel), where nearly 40% of the lithic assemblage shows thermal alteration. This study evaluates how heating affects surface roughness on flint and whether functional traces can still be identified on burnt artefacts. Experimental flakes used on bone, wood, meat, and ochre were heated under controlled fire conditions. Surface textures were measured before and after burning using 3D confocal profilometry and analyzed through paired statistics and mixed-effects models. Burnt flakes from Tinshemet Cave were compared to the experimental reference dataset. Burning significantly increased vertical roughness ( Sv , Sz ) and altered shape parameters ( Ssk , Sku ), while spatial parameters ( Str , Sdr , Sal ) remained largely stable. The results of this study indicate that thermal alteration transforms but does not obliterate use-wear, suggesting that quantitative functional analysis of heateed flints is feasible when parameter-specific effects are considered. Additionally, in experimental fires, flakes deliberately buried at varying depths showed no macroscopic or microscopic damage, whereas only surface-exposed flakes displayed thermal alteration, indicating that even thin sediment layers can protect flints.

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Cite This Study

Rodriguez et al. (2026) studied this question.

synapsesocial.com/papers/698fd276306598e8538de98dhttps://doi.org/10.1038/s41598-026-36985-2
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