Prevalence of dental caries in the Late Neolithic and Early Bronze Age populations from Żerniki Górne (Poland)

Authors

  • Jacek Tomczyk Institute of Biological Sciences, Cardinal Stefan Wyszynski University, Warsaw, Poland
  • Paweł Rusin Institute of Biological Sciences, Cardinal Stefan Wyszynski University, Warsaw, Poland
  • Marta Zalewska Department of Environmental Hazard Prevention and Allergology, Medical University of Warsaw, Poland

DOI:

https://doi.org/10.2478/anre-2021-0016

Keywords:

Żerniki Górne, dental, caries, CWC, TC

Abstract

The aim of the studies is to describe the prevalence and distribution of dental caries in two pop­ulations from Żerniki Górne (Poland). The first population represented the Corded Ware Culture (CWC) (2550–2350 BC), and the second population belonged to the Trzciniec Culture (TC) (1300–1000 BC). While the TC is identified with a typically agricultural strategy, the CWC culture strategy is still debatable. Two types of strategies are indicated in the CWC, either a mixed or typical agricultural economy.  

A total of 110 adults were examined, of which 29 represented the CWC and 81 belonged to the TC. A total of 1132 permanent teeth were examined (CWC 379, TC 753).  

Of the 110 individuals, 54 individuals had dental caries (CWC 19/29, 66%; TC 35/81, 43%). In the CWC, 68% (13/19) of males and 60% (6/10) of females had dental caries. In the younger period (TC), the per­centage of dental caries among males was little higher (45%) than among females (41%). Dental caries was identified in 13% (50/379) of the teeth from the CWC. In the TC, the percentage of affected teeth were similar (11%, 82/753). The most common location of caries in all the chronological periods were the approximal and cemento-enamel junction [CEJ] surfaces. Caries on the occlusal surface was much less frequent. If we assume that an important cause of the development of dental caries is a high-carbohydrate diet, we can conclude that a similar prevalence of teeth affected by caries and it locations indicate a similar management strategy in both populations.

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References

Antanaitis-Jacobs I, Richards M, Jankauskas R, Daugnora L, Ogrinc N. 2009. Diet in early Lithuanian prehistory and the new stable isotope evidence. Archaeol Baltica 12:12–30.
View in Google Scholar

Borgognini-Tarli SM, Reppeto E. 1985. Dietary patterns in the Mesolithic samples from Uzzo and Molara caves (Sicily): the evidence of teeth. J Hum Evol 14:241–54.
View in Google Scholar

Brooks ST, Suchey JM. 1990. Skeletal age determination based on the os pubis: a comparison of the Acsádi-Nemeskéri and Suchey-Brooks methods. Hum Evol 5:227–38.
View in Google Scholar

Buikstra J, Ubelaker DH. 1994. Standards for data collection from human skeletal remains. Fayetteville: Arkansas Archaeological Survey.
View in Google Scholar

Dawes C. 1970. Effects of diet on salivary secretion and composition. J Dent Res 6(Supp):1263–72.
View in Google Scholar

Duyar I, Erdal YS. 2003. A new approach for calibrating dental caries frequency of skeletal remains. Homo 54:57–70.
View in Google Scholar

Erdal YS, Duyar I. 1999. Brief communication: a new correction procedure for calibration dental caries frequency. Am J Phys Anthropol 108:237–40.
View in Google Scholar

Eshed V, Gopher A, Hershkovitz I. 2006. Tooth wear and dental pathology at the advent of agriculture: new evidence from the Levant. Am J Phys Anthropol 130:145–59.
View in Google Scholar

Feldens CA, Kramer PF, Vargas-Ferreira F. 2019. The Role of diet and oral hygiene in dental caries. In SC Leal, EM Takeshita, editors. Pediatric restorative dentistry. Cham: Springer. 31–55.
View in Google Scholar

Formicola V. 1987. Neolithic transition and dental changes: The Case of an Italian site. J Hum Evol 16:231–39.
View in Google Scholar

Gleń-Haduch E. 1995. Biological status analysis of the Neolithic and early Bronze Age populations from Wyżyna Małopolska. In J Schmager, editor. Prace Zakładu Antropologii Uniwersytetu Jagiellońskiego. Kraków: Wyd.UJ. 115–39.
View in Google Scholar

Greene T, Kuba C, Irish J. 2005. Quantifying calculus: A suggested new approach for recording an important indicator of diet and dental health. Homo 56:119–32.
View in Google Scholar

Guatelli-Steinberg D. 2016. Dental stress indicators from micro- to macroscopic. In JD Irish, GR Scott, editors. A Companion to dental anthropology. Chichester: John Wiley & Sons, Inc. Published. 450–64.
View in Google Scholar

Kardow S, Machnik J. 1997. Kultura Mierzanowicka. Chronologia, taksonomia i rozwój przestrzenny. Kraków: Wyd. PAN.
View in Google Scholar

Karsten JK, Heins SE, Madden GD, Sokhatsky MP. 2015. Dental health and the transition to agriculture in prehistoric Ukraine: A study of dental caries. Eur J Archaeol 18:562–79.
View in Google Scholar

Kempisty A. 1978. Schyłek neolitu i początek epoki brązu na Wyżynie Małopolskiej w świetle badań nad kopcami. Warszawa: Wyd. Uniwersytetu Warszawskiego.
View in Google Scholar

Kempisty A, Włodarczyk P. 1996, Chronologia absolutna cmentarzyska w Żernikach Górnych, woj. Kieleckie. In A Kempisty, P Włodarczyk, editors. Concordia. Studia ofiarowane Jerzemu Okuliczowi-Kozarynowi w sześćdziesiątą piątą rocznicę urodzin. Warszawa: Wyd. UW. 127–40.
View in Google Scholar

Krenz-Niedbała M. 2014. A Biocultural perspective on the transition to agriculture in central Europe. Anthropologie 72:115–32.
View in Google Scholar

Kruk J. 1980. Gospodarka w Polsce Południowo-Wschodniej w V – III tysiącleciu p.n.e.. Kraków: Wyd. PAN.
View in Google Scholar

Kruk J, Milisauskas S. 1999. Rozkwit i upadek społeczeństw rolniczych Neolitu. Kraków: Wyd. Instytutu Archeologii i Etnologii PAN.
View in Google Scholar

Kwiatkowska B. 2005. Mieszkańcy średniowiecznego Wrocławia. Ocena warunków życia i stanu zdrowia w ujęciu antropologicznym. Wrocław: Wyd. UWr.
View in Google Scholar

Larsen CS, Shavit R, Griffin MC, 1991. Dental caries evidence for dietary change: an archaeological context. In MA Kelley, LC Larsen editors. Advances in dental anthropology. New York: Wiley&Sons. 179–202.
View in Google Scholar

Larsen CS. 1995. Biological changes in human populations with agriculture. Ann Rev Anthropol 24:185–213.
View in Google Scholar

Lubell D, Jackets M, Schwarcz H, Knyf M, Meiklejohn C. 1994. The Mesolithic-Neolithic transition in Portugal: isotopic and dental evidence of diet. J Archaeol Sci 21:201–16.
View in Google Scholar

Lukacs JR, Largaespada LL. 2006. Expanding sex differences in dental caries prevalence: saliva, hormones, and ‘life-history’ etiology. Am J Hum Biol 18:540–55.
View in Google Scholar

Makarowicz P, Goslar T, Górski J, Taras H, Szczepanek A, Pospieszny Ł, Jagodinska MO, Ilchyshyn V, Włodarczak P, Juras A, Chyleński M, Muzolf P, Lasota-Kuś A, Wójcik I, Matoga A, Nowak M, Przybyła MM, Marcinkowska-Swojak M, Figlerowicz M, Grygiel R, Czebreszuk J, Kochkin IT. 2021. The Absolute chronology of collective burials from the 2nd millennium BC in east central Europe. Radiocarbon DOI:10.1017/RDC.2020.139
View in Google Scholar

Marsh PD, Nyvad B. 2008. The oral microflora and biofilms on teeth. In O Fejerskov, E Kidd, B Nyvad, V Baelum editors. Dental caries the disease and its clinical management. 2nd ed., Oxford: Blackwell Publishing Company. 164–87.
View in Google Scholar

Meinl A, Rottensteiner GM, Huber CD, Tangl S, Watzak G, Watzek G. 2010. Caries frequency and distribution in an early medieval Avar population from Austria. Oral Dis 16:108–12.
View in Google Scholar

Nyvad B. 2008. Role of oral hygiene. In O Fejerskov, E Kidd, B Nyvad, V Baelum editors. Dental caries the disease and its clinical management. Oxford: Blackwell Publishing Company. 258–64.
View in Google Scholar

Pietrusewsky M, Douglas MT. 2002. Intensification of agriculture at Ban Chiang: Is there evidence from the skeletons? Asian Perspect 40:157–78.
View in Google Scholar

Piontek J. 1999. Body size and proportions in the Upper Paleolithic-Neolithic transition: evidence from Central Europe. In D Jankowska, M Krenz-Niedbała, J Piontek, J Wierzbicki, editors. Biological and cultural consequences of the transition to agriculture in Central Europe. Poznań: Wyd. UAM. 61–84.
View in Google Scholar

Sheiham A, James WPT. 2015. Diet and dental caries: The Pivotal role of free sugars reemphasized. J Dent Res 94:1341–47.
View in Google Scholar

Silverstone LM, Johnson NW, Hardie JM, Williams RAD. 1981. Dental caries: aetiology, pathology and prevention. London: The Macmillan Press LTD.
View in Google Scholar

Skinner M, Goodman AH. 1992. Anthropological uses of developmental defects of enamel. In S Sauders, M Katzenberg, editors. Skeletal biology of past peoples: research methods. New York: Wiley-Liss, Inc. 153–74.
View in Google Scholar

Smith BH. 1984. Patterns of molar wear in hunter-gatherers and agriculturalists. Am J Phys Anthropol 63:39–56.
View in Google Scholar

Stránská P, Velemínskỳ P, Poláček L. 2015. The prevalence and distribution of dental caries in four early medieval non-adult populations of different socioeconomic status from Central Europe. Arch Oral Biol 60:62–76.
View in Google Scholar

Tayles N, Domett K, Nelsen K. 2020. Agriculture and dental caries? The case of rice in prehistoric Southeast Asia. World Archaeol 32:68–83.
View in Google Scholar

Tomczyk J, Tomczyk-Gruca M, Zalewska M. 2012, Frequency and chronological distribution of linear enamel hypoplasia (LEH) in the Late Neolithic and Early Bronze Age population from Żerniki Górne (Poland) – preliminary report. Anthropol Rev 75:61–73.
View in Google Scholar

Tunia K. 1986. Z problematyki środowiskowych uwarunkowań gospodarki pasterskiej na terenie górskiej strefy polskich Karpat Zachodnich w czasach prahistorycznych. Acta Archaeol Carpathica 25:219–30.
View in Google Scholar

Turner C. 1979. Dental anthropological indications of agriculture among the Jomon people of central Japan. Am J Phys Anthropol 51:19–636.
View in Google Scholar

Yanko NV, Artemyev AV, Kaskova LF. 2017. Frequency of dental caries in children in the Early Iron Age and the Medieval populations from Ukraine. Anthropol Rev 80: 415–26.
View in Google Scholar

Vodanovic M, Brkic H, Slaus M, Demo Z. 2005. The frequency and distribution of caries in the mediaeval population of Bijelo Brdo in Croatia (10th–11th century). Arch Oral Biol 50:669–80.
View in Google Scholar

Watson JT. 2008. Prehistoric dental disease and the dietary shift from cactus to cultigens in Northwest Mexico. Int J Osteoarchaeol 18:202–12.
View in Google Scholar

Wierzbicki J. 1999. Characteristics of the cultural-chronological position of Neolithic burial grounds at Osłonki, Złota and Żerniki Górne. In D Jankowska, M Krenz-Niedbała, J Piontek, J Wierzbicki, editors. Biological and cultural consequences of the transition to agriculture in Central Europe. Poznań: Wyd. UAM, Poznań. 7–25.
View in Google Scholar

Zabokova-Bilbilova E, Sotirovska-Ivkovska A, Ambarkova V. 2012. Correlation between salivary urea level and dental caries. Prilozi 33:289–302.
View in Google Scholar

Zvelebil M, Dolukhanov P. 1991. The transition to farming in Eastern and Northern Europe. J World Prehist 5:233–78.
View in Google Scholar

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Published

2021-06-30

How to Cite

Tomczyk, J., Rusin, P., & Zalewska, M. (2021). Prevalence of dental caries in the Late Neolithic and Early Bronze Age populations from Żerniki Górne (Poland). Anthropological Review, 84(2), 201–211. https://doi.org/10.2478/anre-2021-0016

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