Literature DB >> 29037417

Establishment of occupation chronicles in Grotte Mandrin using sooted concretions: Rethinking the Middle to Upper Paleolithic transition.

Ségolène Vandevelde1, Jacques Élie Brochier2, Christophe Petit3, Ludovic Slimak4.   

Abstract

Soot marks, witnesses of past human activities, can sometimes be noticed in concretions (speleothem, travertine, carbonated crust, etc.) formed in cavities. We demonstrate here that these deposits, generally ignored in archaeological studies, turned out to be a perfectly suitable material for micro-chronological study of hominin activities in a site. At the Grotte Mandrin (Mediterranean France), thousands of clastic fragments from the rock walls were found in every archaeological level of the shelter. Calcareous crusts containing soot deposits are recorded on some of their surfaces. They appear in thin section as thin black laminae. Microscopic observation of these crusts revealed that they kept track of many occupations. We show that is possible to link them with the archaeological units identified during the excavation. Minimum Number of Occupations (MNO) can be built out of these sooted crusts. MNO are usually high and attest to the cumulative nature of each archaeological unit. They are witnesses of each occupation of hominin groups in each archaeological level of the cave. This study also shows that, in Grotte Mandrin, a very short time separates the first Middle/Upper Paleolithic transitional groups' occupations from those of the last Mousterians. The research perspectives on soot deposits are diversified and raise the possibility of studying multiple aspects of past human life, and in this case, to rethink the Middle/Upper Paleolithic transition, with an unmatched temporal resolution. Sooted concretion analysis provides high temporal resolution archaeology. There is a real possibility of extending this study with chronological implications to cavities of all ages and areas.
Copyright © 2017 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Grotte Mandrin; Micro-chronology; Middle/Upper Paleolithic transition; Parietal carbonated crust; Soot deposit

Mesh:

Year:  2017        PMID: 29037417     DOI: 10.1016/j.jhevol.2017.07.016

Source DB:  PubMed          Journal:  J Hum Evol        ISSN: 0047-2484            Impact factor:   3.895


  4 in total

1.  Impact of climate change on the transition of Neanderthals to modern humans in Europe.

Authors:  Michael Staubwasser; Virgil Drăgușin; Bogdan P Onac; Sergey Assonov; Vasile Ersek; Dirk L Hoffmann; Daniel Veres
Journal:  Proc Natl Acad Sci U S A       Date:  2018-08-27       Impact factor: 11.205

2.  Modern human incursion into Neanderthal territories 54,000 years ago at Mandrin, France.

Authors:  Ludovic Slimak; Clément Zanolli; Tom Higham; Marine Frouin; Jean-Luc Schwenninger; Lee J Arnold; Martina Demuro; Katerina Douka; Norbert Mercier; Gilles Guérin; Hélène Valladas; Pascale Yvorra; Yves Giraud; Andaine Seguin-Orlando; Ludovic Orlando; Jason E Lewis; Xavier Muth; Hubert Camus; Ségolène Vandevelde; Mike Buckley; Carolina Mallol; Chris Stringer; Laure Metz
Journal:  Sci Adv       Date:  2022-02-09       Impact factor: 14.136

3.  Integrating ZooMS and zooarchaeology: New data from the Uluzzian levels of Uluzzo C Rock Shelter, Roccia San Sebastiano cave and Riparo del Broion.

Authors:  Sara Silvestrini; Federico Lugli; Matteo Romandini; Cristina Real; Eduardo Sommella; Emanuela Salviati; Simona Arrighi; Eugenio Bortolini; Carla Figus; Owen Alexander Higgins; Giulia Marciani; Gregorio Oxilia; Davide Delpiano; Antonino Vazzana; Marcello Piperno; Carlo Crescenzi; Pietro Campiglia; Carmine Collina; Marco Peresani; Enza Elena Spinapolice; Stefano Benazzi
Journal:  PLoS One       Date:  2022-10-13       Impact factor: 3.752

4.  From Neandertals to modern humans: New data on the Uluzzian.

Authors:  Paola Villa; Luca Pollarolo; Jacopo Conforti; Fabrizio Marra; Cristian Biagioni; Ilaria Degano; Jeannette J Lucejko; Carlo Tozzi; Massimo Pennacchioni; Giovanni Zanchetta; Cristiano Nicosia; Marco Martini; Emanuela Sibilia; Laura Panzeri
Journal:  PLoS One       Date:  2018-05-09       Impact factor: 3.240

  4 in total

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