Site type

Location

100 m
Leaflet Tiles © Esri — Source: Esri, i-cubed, USDA, USGS, AEX, GeoEye, Getmapping, Aerogrid, IGN, IGP, UPR-EGP, and the GIS User Community
Coordinates (degrees)
051.206° N, 109.319° E
Coordinates (DMS)
051° 12' 00" E, 109° 19' 00" N
Country (ISO 3166)
Russian Federation (RU)

radiocarbon date Radiocarbon dates (25)

Lab ID Context Material Taxon Method Uncalibrated age Calibrated age References
AA-26740 bone Coelodonta antiquitatis Linty NA NA 29200±1000 BP 35330–31304 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
AA-8874 bone NA NA 25200±260 BP 30009–28985 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
Beta-241406 bone NA NA 31120±380 BP 36175–34718 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
Beta-344453 bone NA NA 35770±340 BP 41415–40170 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
Beta-344454 bone NA NA 31450±230 BP 36200–35389 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
Beta-344455 bone NA NA 30350±200 BP 35190–34440 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
Beta-344456 bone NA NA 24410±120 BP 28935–28325 cal BP Forenbaher 1993 244 Bird et al. 2022
SOAN-1523 bone NA NA 27210±300 BP 31762–30905 cal BP Geology and culture 1982 (ed. Ceitlin) Novosibirsk; Lbova L. Bryanskyi paleolithic complex 1994; Lbova L; 1996; Varvarina gora.Chita. Buvit I. 2016. QI ip Bird et al. 2022
SOAN-3078 bone NA NA 26900±225 BP 31358–30450 cal BP Kuzmin Y.V. & Orlova L.A. 1998. Radiocarbon chronology of the SiberianPaleolithic. Journal of World Prehistory 12(1): 1-53. Bird et al. 2022
SOAN-810 bone NA NA 15100±520 BP 19502–17070 cal BP Dolukhanov P. 2002. JAS 29: 593-606. Bird et al. 2022
UCIAMS-143218 bone NA NA 21760±120 BP 26305–25850 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
UCIAMS-143219 bone NA NA 33540±500 BP 39545–36991 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
UCIAMS-143220 bone NA NA 43900±1800 BP 49926–43265 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
UCIAMS-143221 bone NA NA 33470±490 BP 39465–36954 cal BP Buvit I. 2016. QI ip Bird et al. 2022
UCIAMS-143234 bone NA NA 38400±1400 BP 44401–40610 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
UCIAMS-143235 tooth NA NA 36940±750 BP 42425–40590 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
UCIAMS-143236 bone NA NA 33580±520 BP 39625–36986 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
UCIAMS-143237 bone NA NA 30700±350 BP 35775–34444 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
UCIAMS-143238 bone NA NA 31510±390 BP 36670–35125 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022
UCIAMS-143239 bone NA NA 24070±150 BP 28610–27862 cal BP Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov Derivianko A. 2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I. 2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23 Bird et al. 2022

typological date Typological dates (0)

Classification Estimated age References

Bibliographic reference Bibliographic references

@misc{Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov  Derivianko A.  2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I.  2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23,
  
}
@misc{Forenbaher 1993 244,
  
}
@misc{Geology and culture 1982 (ed. Ceitlin) Novosibirsk; Lbova L. Bryanskyi paleolithic complex 1994; Lbova L; 1996; Varvarina gora.Chita. Buvit I.  2016. QI ip,
  
}
@misc{Kuzmin Y.V. & Orlova L.A. 1998. Radiocarbon chronology of the SiberianPaleolithic. Journal of World Prehistory 12(1): 1-53.,
  
}
@misc{Dolukhanov P. 2002. JAS 29: 593-606.,
  
}
@misc{Buvit I.  2016. QI ip,
  
}
@misc{Jenkins et al. 2013,
  
}
@article{p3k14c,
  title = {P3k14c, a Synthetic Global Database of Archaeological Radiocarbon Dates},
  author = {Bird, Darcy and Miranda, Lux and Vander Linden, Marc and Robinson, Erick and Bocinsky, R. Kyle and Nicholson, Chris and Capriles, José M. and Finley, Judson Byrd and Gayo, Eugenia M. and Gil, Adolfo and d’Alpoim Guedes, Jade and Hoggarth, Julie A. and Kay, Andrea and Loftus, Emma and Lombardo, Umberto and Mackie, Madeline and Palmisano, Alessio and Solheim, Steinar and Kelly, Robert L. and Freeman, Jacob},
  year = {2022},
  month = {jan},
  journal = {Scientific Data},
  volume = {9},
  number = {1},
  pages = {27},
  publisher = {Nature Publishing Group},
  issn = {2052-4463},
  doi = {10.1038/s41597-022-01118-7},
  abstract = {Archaeologists increasingly use large radiocarbon databases to model prehistoric human demography (also termed paleo-demography). Numerous independent projects, funded over the past decade, have assembled such databases from multiple regions of the world. These data provide unprecedented potential for comparative research on human population ecology and the evolution of social-ecological systems across the Earth. However, these databases have been developed using different sample selection criteria, which has resulted in interoperability issues for global-scale, comparative paleo-demographic research and integration with paleoclimate and paleoenvironmental data. We present a synthetic, global-scale archaeological radiocarbon database composed of 180,070 radiocarbon dates that have been cleaned according to a standardized sample selection criteria. This database increases the reusability of archaeological radiocarbon data and streamlines quality control assessments for various types of paleo-demographic research. As part of an assessment of data quality, we conduct two analyses of sampling bias in the global database at multiple scales. This database is ideal for paleo-demographic research focused on dates-as-data, bayesian modeling, or summed probability distribution methodologies.},
  copyright = {2022 The Author(s)},
  langid = {english},
  keywords = {Archaeology,Chemistry},
  month_numeric = {1}
}
{"bibtex_key":"Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V. Konstantinov  Derivianko A.  2003. Archaeology Ethonolgy & Anthropology of Eurasia 3: 27-48. Buvit I.  2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019) 9ÔøΩ23","bibtex_type":"misc"}{"bibtex_key":"Forenbaher 1993 244","bibtex_type":"misc"}{"bibtex_key":"Geology and culture 1982 (ed. Ceitlin) Novosibirsk; Lbova L. Bryanskyi paleolithic complex 1994; Lbova L; 1996; Varvarina gora.Chita. Buvit I.  2016. QI ip","bibtex_type":"misc"}{"bibtex_key":"Kuzmin Y.V. & Orlova L.A. 1998. Radiocarbon chronology of the SiberianPaleolithic. Journal of World Prehistory 12(1): 1-53.","bibtex_type":"misc"}{"bibtex_key":"Dolukhanov P. 2002. JAS 29: 593-606.","bibtex_type":"misc"}{"bibtex_key":"Buvit I.  2016. QI ip","bibtex_type":"misc"}{"bibtex_key":"Jenkins et al. 2013","bibtex_type":"misc"}[{"bibtex_key":"p3k14c","bibtex_type":"article","title":"{P3k14c, a Synthetic Global Database of Archaeological Radiocarbon Dates}","author":"{Bird, Darcy and Miranda, Lux and Vander Linden, Marc and Robinson, Erick and Bocinsky, R. Kyle and Nicholson, Chris and Capriles, José M. and Finley, Judson Byrd and Gayo, Eugenia M. and Gil, Adolfo and d’Alpoim Guedes, Jade and Hoggarth, Julie A. and Kay, Andrea and Loftus, Emma and Lombardo, Umberto and Mackie, Madeline and Palmisano, Alessio and Solheim, Steinar and Kelly, Robert L. and Freeman, Jacob}","year":"{2022}","month":"{jan}","journal":"{Scientific Data}","volume":"{9}","number":"{1}","pages":"{27}","publisher":"{Nature Publishing Group}","issn":"{2052-4463}","doi":"{10.1038/s41597-022-01118-7}","abstract":"{Archaeologists increasingly use large radiocarbon databases to model prehistoric human demography (also termed paleo-demography). Numerous independent projects, funded over the past decade, have assembled such databases from multiple regions of the world. These data provide unprecedented potential for comparative research on human population ecology and the evolution of social-ecological systems across the Earth. However, these databases have been developed using different sample selection criteria, which has resulted in interoperability issues for global-scale, comparative paleo-demographic research and integration with paleoclimate and paleoenvironmental data. We present a synthetic, global-scale archaeological radiocarbon database composed of 180,070 radiocarbon dates that have been cleaned according to a standardized sample selection criteria. This database increases the reusability of archaeological radiocarbon data and streamlines quality control assessments for various types of paleo-demographic research. As part of an assessment of data quality, we conduct two analyses of sampling bias in the global database at multiple scales. This database is ideal for paleo-demographic research focused on dates-as-data, bayesian modeling, or summed probability distribution methodologies.}","copyright":"{2022 The Author(s)}","langid":"{english}","keywords":"{Archaeology,Chemistry}","month_numeric":"{1}"}]
---
:bibtex_key: 'Geology and culture of the west Transbaikalian. Novosibirsk 1982. M.V.
  Konstantinov  Derivianko A.  2003. Archaeology Ethonolgy & Anthropology of Eurasia
  3: 27-48. Buvit I.  2016. QI ip Izuho M. Archaeological Research in Asia 17 (2019)
  9ÔøΩ23'
:bibtex_type: :misc
---
:bibtex_key: Forenbaher 1993 244
:bibtex_type: :misc
---
:bibtex_key: Geology and culture 1982 (ed. Ceitlin) Novosibirsk; Lbova L. Bryanskyi
  paleolithic complex 1994; Lbova L; 1996; Varvarina gora.Chita. Buvit I.  2016. QI
  ip
:bibtex_type: :misc
---
:bibtex_key: 'Kuzmin Y.V. & Orlova L.A. 1998. Radiocarbon chronology of the SiberianPaleolithic.
  Journal of World Prehistory 12(1): 1-53.'
:bibtex_type: :misc
---
:bibtex_key: 'Dolukhanov P. 2002. JAS 29: 593-606.'
:bibtex_type: :misc
---
:bibtex_key: Buvit I.  2016. QI ip
:bibtex_type: :misc
---
:bibtex_key: Jenkins et al. 2013
:bibtex_type: :misc
---
- :bibtex_key: p3k14c
  :bibtex_type: :article
  :title: "{P3k14c, a Synthetic Global Database of Archaeological Radiocarbon Dates}"
  :author: "{Bird, Darcy and Miranda, Lux and Vander Linden, Marc and Robinson, Erick
    and Bocinsky, R. Kyle and Nicholson, Chris and Capriles, José M. and Finley, Judson
    Byrd and Gayo, Eugenia M. and Gil, Adolfo and d’Alpoim Guedes, Jade and Hoggarth,
    Julie A. and Kay, Andrea and Loftus, Emma and Lombardo, Umberto and Mackie, Madeline
    and Palmisano, Alessio and Solheim, Steinar and Kelly, Robert L. and Freeman,
    Jacob}"
  :year: "{2022}"
  :month: "{jan}"
  :journal: "{Scientific Data}"
  :volume: "{9}"
  :number: "{1}"
  :pages: "{27}"
  :publisher: "{Nature Publishing Group}"
  :issn: "{2052-4463}"
  :doi: "{10.1038/s41597-022-01118-7}"
  :abstract: "{Archaeologists increasingly use large radiocarbon databases to model
    prehistoric human demography (also termed paleo-demography). Numerous independent
    projects, funded over the past decade, have assembled such databases from multiple
    regions of the world. These data provide unprecedented potential for comparative
    research on human population ecology and the evolution of social-ecological systems
    across the Earth. However, these databases have been developed using different
    sample selection criteria, which has resulted in interoperability issues for global-scale,
    comparative paleo-demographic research and integration with paleoclimate and paleoenvironmental
    data. We present a synthetic, global-scale archaeological radiocarbon database
    composed of 180,070 radiocarbon dates that have been cleaned according to a standardized
    sample selection criteria. This database increases the reusability of archaeological
    radiocarbon data and streamlines quality control assessments for various types
    of paleo-demographic research. As part of an assessment of data quality, we conduct
    two analyses of sampling bias in the global database at multiple scales. This
    database is ideal for paleo-demographic research focused on dates-as-data, bayesian
    modeling, or summed probability distribution methodologies.}"
  :copyright: "{2022 The Author(s)}"
  :langid: "{english}"
  :keywords: "{Archaeology,Chemistry}"
  :month_numeric: "{1}"

Changelog