

A New Approach to the Study of Flaking Sequence Integrity Based on the Chagyrskaya Cave Assemblage, Northwestern Altai
https://doi.org/10.17746/1563-0110.2024.52.4.039-049
Abstract
This paper presents a new approach to assessing the integrity of flaking sequences at Paleolithic sites. It combines experimental modeling with subsequent attribute analysis of the archaeological collection. The method is based on changes in the proportion of various technical spalls at different stages of core and bifacial reduction, as well as changes in the sizes of cortical flakes. This methodology was applied to reconstruct the strategy of the use of lithic raw material by late Neanderthals of the Altai, on the basis of the Chagyrskaya Cave assemblage. The study has shown that the most common method, using the proportion of cortical spalls, is not universal, and has limitations due to the structure of lithic industry and the specificity of raw material. When pebbles and boulders of various sizes are used, as in the assemblage from layer 6c/2 of Chagyrskaya Cave, a high proportion of cortical spalls can result from the production of bifacial tools at the site. The study demonstrates that the first stage in core reduction occurred outside the cave. The high proportion of cortical spalls in the assemblage is due to the fact that bifaces were manufactured in situ, whereas tools on cortical flakes and cortical tool blanks had been transported to the site. The study reveals a connection of various technical spalls with stages in core and biface flaking sequences, and their number is evaluated in the cases of complete versus reduced flaking cycles.
Keywords
About the Authors
V. M. KharevichRussian Federation
Senior Researcher
pr. Akademika Lavrentieva 17, Novosibirsk, 630090
A. V. Kharevich
Russian Federation
Senior Researcher
pr. Akademika Lavrentieva 17, Novosibirsk, 630090
S. V. Markin
Russian Federation
Leading Researcher, Department Head
pr. Akademika Lavrentieva 17, Novosibirsk, 630090
К. A. Kolobova
Russian Federation
Professor, Chief Researcher
pr. Akademika Lavrentieva 17, Novosibirsk, 630090
References
1. Boëda E., Geneste J.-M., Meignen L. 1990 Identification de chaînes opératoires lithiques du Paléolithique ancien et moyen. Paléo, vol. 2: 43–80.
2. Bustos-Pérez G., Gravina B., Brenet M., Romagnoli F. 2024 The contribution of 2D and 3D geometric morphometrics to lithic taxonomies: Testing discrete categories of backed fl akes from recurrent centripetal core reduction. Journal of Paleolithic Archaeology, vol. 7 (1): 1–23.
3. Chabai V.P. 2004 Sredniy paleolit Kryma. Simferopol: Shlyakh.
4. Chabai V.P. 2008 Kabazi V, sub-unit III/2: The Ak-Kaya facie of the Crimean Micoquian. In Kabazi V: Interstratification of Micoquian & Levallois-Mousterian Camp Sites, V.P. Chabai, J. Richter, T. Uthmeier (eds.). Simferopol, Cologne: Shlyakh, pp. 181–210.
5. Chabai V.P., Demidenko Yu.E. 1998 The classifi cation of fl int artifacts. In The Middle Paleolithic of Western Crimea, vol. 1, A.E. Marks, V.P. Chabai (eds.). Liège: Université de Liége, pp. 31–51. (ERAUL; vol. 84).
6. Chabai V., Uthmeier T. 2006 Settlement systems in the Crimean Middle Palaeolithic. In Kabazi II: The 70 000 Years Since the Last Interglacial, V.P. Chabai, J. Richter, T. Uthmeier (eds.). Simferopol, Cologne: Shlyakh, pp. 297–359.
7. Delpiano D., Heasley K., Peresani M. 2018 Assessing Neanderthal land use and lithic raw material management in discoid technology. Journal of Anthropological Science, vol. 96: 89–110.
8. A.P. Derevianko, S.V. Markin, K.A. Kolobova, V.P. Chabai, N.A. Rudaya, B. Viola, A.P. Buzhilova, M.B. Mednikova, S.K. Vasiliev, V.S. Zykin, V.S. Zykina, V.S. Zazhigin, A.O. Volvakh, R.G. Roberts, Z. Jakobs, Bo Li. 2018 Mezhdistsiplinarniye issledovaniya Chagyrskoy peshchery – Stoyanki srednego paleolita Altaya. Novosibirsk: Izd. IAET SO RAN.
9. Derevianko A.P., Markin S.V., Kulik N.A., Kolobova K.A. 2015 Lithic raw material exploitation in the Sibiryachikha facies, the Middle Paleolithic of Altai. Archaeology, Ethnology and Anthropology of Eurasia, vol. 43 (3): 3–16. (In Russian and English).
10. Deschamps M., Martín-Lerma I., Linares-Matás G. 2022 Organization of residential space, site function variability, and seasonality of activities among MIS 5 Iberian Neandertals. Scientifi c Reports, vol. 12, art. 20221.
11. Dibble H.L. 1995 An assessment of the integrity of the archaeological assemblages. In The Middle Paleolithic Site of Combe-Capelle Bas (France), L. Harold, M.L. Dibble (eds.). Philadelphia: Univ. of Pennsylvania Press, pp. 245–257.
12. Doronicheva E.V., Nedomolkin A.G., Muriy A.A., Kulkova M.A., Sapelko T.V., Nosevich E.S. 2018 Hadjoh-2: A Middle Paleolithic workshop-camp in northwestern Caucasus. Archaeology, Ethnology and Anthropology of Eurasia, vol. 46 (1): 16–26. (In Russian and English).
13. Grace R. 2012 Chaîne opératoire. [s.l.]: Ikarus books.
14. Hammer Ø., Harper D.A.T., Ryan P.D. 2001 Past: Paleontological statistics software package for education and data analysis. Palaeontologia Electronica, vol. 4: 1–9.
15. Inizan M.-L., Reduron-Ballinger M., Roche H., Tixier J. 1999 Technology and Terminology of Knapped Stone. Nanterre: Cercle de Recherches et dʹEtudes Préhistoriques. (Préhistoire de la Pierre Taillée; t. 5).
16. Kharevich A.V. 2022 Bifasialnaya tekhnologiya v sibiryachikhinskom variante srednego paleolita Gornogo Altaya: Cand. Sc. (History) Dissertation. Novosibirsk.
17. Kharevich A.V., Kharevich V.M., Kolobova K.A. 2022 Sravneniye eksperimentalnykh kollektsiy nukleusnogo i bifasialnogo debitazha v kontekste sibiryachikhinskogo varianta srednego paleolita Altaya. In Problemy arkheologii, etnografi i, antropologii Sibiri i sopredelnykh territoriy, vol. XXVIII. Novosibirsk: Izd. IAET SO RAN, pp. 351–358.
18. Khatsenovich A.M., Rybin E.P., Tserendagva Y., Bazargur D., Margad-Erdene G., Marchenko D.V., Gunchinsuren B., Olsen J.W., Derevianko A.P. 2023 The Middle Paleolithic of Tsagaan Agui Cave in the Gobi Altai region of Mongolia and its Siberian and Central Asian links. Archaeological Research in Asia, vol. 35, art. 100462.
19. Kolobova K.A., Chabai V.P., Shalagina A.V., Krajcarz M.T., Krajcarz M., Rendu W., Vasiliev S.V., Markin S.V., Krivoshapkin A.I. 2019 Exploitation of the natural environment by Neanderthals from Chagyrskaya Cave (Altai). Quartar, vol. 66: 7–31.
20. Kolobova K., Rendu W., Shalagina A., Chistyakov P., Kovalev V., Baumann M., Koliasnikova A., Krivoshapkin A. 2020 The application of geometric-morphometric shape analysis to Middle Paleolithic bone retouchers from the Altai Mountains, Russia. Quaternary International, vol. 559: 89–96.
21. Lin S.C. 2014 Experimentation and scientifi c inference building in the study of hominin behavior through stone artifact archaeology. Publicly Accessible Penn Dissertations. Pennsylvania.
22. Lund R.E., Lund J.R. 1983 Algorithm AS 190: Probabilities and upper quantiles for the studentized range. Journal of the Royal Statistical Society, vol. 32: 204–210.
23. Marchenko D.V., Khatsenovich A.M., Bolorbat C., Gunchinsuren B., Zwyns N., Paine C., Rybin E.P. 2023 Spatial structures of the initial/early Upper Paleolithic at Tolbor-21 (northern Mongolia). Archaeology, Ethnology and Anthropology of Eurasia, vol. 51 (3): 59–66. (In Russian and English).
24. Meignen L. 1996 Persistance des traditions techniques dans l’abri des Canalettes (Nant-Aveyron). Quaternaria Nova, vol. 6: 449–464.
25. Pavlenok G.D., Bocharova E.N., Girya E.Y., Taimagambetov J.K., Anoikin A.A. 2024 Razvitiy verkhniy paleolit v Vostochnom Kazakhstane (po materialam stoyanki Ushbulak). Stratum plus: Arkheologiya i kulturnaya antropologia, No. 1: 257–275.
26. Richter J. 1997 Sesselfelsgrotte III: Der G-Schichten-Komplex der Sesselfelsgrotte: Zum Verständnis des Micoquien. In QuartärBibliothek, Bd. 7. Saarbrücken: Saarbrücker Druckerei und Verlag.
27. Roth B.J., Dibble H.L. 1998 Production and transport of blanks and tools at the French Middle Paleolithic site of Combe-Capelle Bas. American Antiquity, vol. 63: 47–62.
28. Rybin E.P., Kolobova K.A. 2009 Sredniy paleolit Altaya: Variabelnost i evolyutsiya. Stratum plus: Arkheologia i kulturnaya antropologiya, No. 1: 33–78.
29. Shalagina A.V., Kharevich V.M., Krivoshapkin A.I., Kolobova K.A. 2019 Eksperimentalnoye modelirovaniye bifasialnogo rasschepleniya v sibiryachikhinskom variante srednego paleolita Altaya. Teoriya i praktika arkheologicheskikh issledovaniy, No. 4 (28): 97–108.
30. Shalagina A.V., Kharevich V.M., Mori S., Bomann M., Krivoshapkin A.I., Kolobova K.A. 2020 Rekonstruktsiya tekhnologicheskikh tsepochek proizvodstva bifasialnykh orudiy v industrii Chagyrskoy peschery. Sibirskiye istoricheskiye issledovaniya, No. 3: 130–151.
31. Weiss M., Otcherednoy A., Wiśniewski A. 2017 Using multivariate techniques to assess the effects of raw material, fl aking behavior and tool manufacture on assemblage variability: An example from the late Middle Paleolithic of the European Plain. Journal of Archaeological Science, vol. 87: 73–94.
Review
For citations:
Kharevich V.M., Kharevich A.V., Markin S.V., Kolobova К.A. A New Approach to the Study of Flaking Sequence Integrity Based on the Chagyrskaya Cave Assemblage, Northwestern Altai. Archaeology, Ethnology & Anthropology of Eurasia. 2024;52(4):39-49. https://doi.org/10.17746/1563-0110.2024.52.4.039-049