Skip to main content

ETHNOS_APP

Home • Search • Journals • List 0

The Assessment of Bone Deterioration with Nuclear Magnetic Resonance Spectroscopy in a Multidisciplinary Context

The Case of the Unesco World Heritage Site of Sedlec, Czechia

Bibliographic Data

ID8352120
AuthorsA Viani (0000-0002-6019-1094, Czech Academy of Sciences, Institute of Theoretical and Applied Mechanics, corresponding author), Petra Mácová (0000-0002-8277-133X, Czech Academy of Sciences, Institute of Theoretical and Applied Mechanics), Dita Machová (0000-0001-9956-7282, Czech Academy of Sciences, Institute of Theoretical and Applied Mechanics), T Čendak (0000-0002-0528-3930, National Institute of Chemistry Hajdrihova 19 SI‐1001 Ljubljana Slovenia)
Year2019
Volume61
Issue5
Pages1144-1159
Publication date2019-10-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueArchaeometry (JOURNAL)
Journal identifiersISSN: 0003-813X • E-ISSN: 1475-4754
PublisherWiley (PUBLISHER • GB)
DOI10.1111/arcm.12475
OpenAlexW2940478482
LanguageEN
Citations received2
References cited58

Human remains from the skeletal collection of the UNESCO world heritage site of Sedlec (Czechia) have been investigated with 1 H, 31 P and 13 C magic‐angle‐spinning nuclear magnetic resonance spectroscopy. The quantitative description of the component of the phosphorus signal attributed to the external amorphous hydrated layer of the mineral apatite particles is considered a sensitive index of the bone integrity, in general agreement with indicators of decay derived from other analytical techniques. Differences in proton and phosphorus resonances were related to deterioration effects, allowing for the identification of local conditions posing a threat to bone preservation

Apatite · Archaeology · Context (archaeology) · Geography · Magic angle spinning · Mineralogy · Nuclear magnetic resonance · Nuclear magnetic resonance spectroscopy · Physics · Advanced NMR Techniques and Applications · Chemistry · Materials Science · NMR spectroscopy and applications · Nuclear Physics and Applications · Spectroscopy

  • Bone diagenesis in the loess deposits of Central Europe

    Open Access•Dita Machová, Petra Mácová et al.•Archaeological and Anthropological…•2020

  • Bone diagenesis in the medieval cemetery of Vratislavs' Palace in Prague

    Open Access•A Viani, Dita Machová et al.•Archaeological and Anthropological…•2021

  • Crystallinity and diagenesis of sedimentary apatites

    Open Access•Aldo Shemesh•Geochimica et Cosmochimica Acta•1990

  • Diagenesis of archaeological bone and tooth

    Open Access•Christopher Kendall, Anne M H Eriksen et al.•Palaeogeography Palaeoclimatology…•2018

  • Early bone diagenesis in temperate environments

    Open Access•Yolanda Fernández-Jalvo, Peter Andrews et al.•Palaeogeography Palaeoclimatology…•2010

  • Microscopical Focal Destruction (Tunnels) in Exhumed Human Bones

    Open Access•C J Hackett•Medicine Science and the Law•1981

  • Why do crystallinity values fail to predict the extent of diagenetic alteration of bone mineral?

    Open Access•Clive N Trueman, Karen Privat et al.•Palaeogeography Palaeoclimatology…•2008

  • Pohřbívání ve vrcholném středověku a v novověku na Chrudimsku, Pardubicku a Kolínsku

    Open Access•Jan Frolík•Archaeologia historica•2017

  • The survival of organic matter in bone

    Open Access•M J Collins, C M Nielsen–Marsh et al.•Archaeometry•2002

  • Possible interferences of some conservation treatments with subsequent studies on fossil bones

    Open Access•Lucía López-Polín•Quaternary International•2012

  • Application of Nuclear Magnetic Resonance Spectroscopy To Bone Diagenesis

    Open Access•A P Lee, Jacek Klinowski et al.•Journal of Archaeological Science•1995

  • Solubilities of bone mineral from archaeological sites

    Open Access•Francesco Berna, Alan Matthews et al.•Journal of Archaeological Science•2004

  • Characterisation of microbial attack on archaeological bone

    Open Access•M M E Jans, Christina M Nielsen-Marsh et al.•Journal of Archaeological Science•2003

  • Comparison of transmission FTIR, ATR, and DRIFT spectra

    Open Access•Melanie M Beasley, Eric J Bartelink et al.•Journal of Archaeological Science•2014

  • A Basic Mathematical Simulation of the Chemical Degradation of Ancient Collagen

    Open Access•M J Collins, Michael S Riley et al.•Journal of Archaeological Science•1995

  • Early Diagenetic Evolution of Bone Phosphate

    Open Access•Alain Person, H Bocherens et al.•Journal of Archaeological Science•1995

  • Measurements and Relationships of Diagenetic Alteration of Bone from Three Archaeological Sites

    Open Access•Robert E M Hedges, Andrew R Millard et al.•Journal of Archaeological Science•1995

  • Bone diagenesis in the European Holocene I

    Open Access•Colin Smith, C I Smith et al.•Journal of Archaeological Science•2007

  • Consolidation of Archaeological Bone

    Jessica S Johnson•Journal of Field Archaeology•1994

  • Bone diagenesis in the European Holocene II

    Open Access•Christina M Nielsen-Marsh, Colin Smith et al.•Journal of Archaeological Science•2007

  • Rapid Quantification of Bone Collagen Content by ATR-FTIR Spectroscopy

    Open Access•M Lebon, I Reiche et al.•Radiocarbon•2016

  • The strange case of Apigliano

    Open Access•Colin Smith, C I Smith et al.•Archaeometry•2002

  • The long–term survival of bone

    Open Access•Clive N Trueman, David M Martill•Archaeometry•2002

  • Morphological taphonomic transformations of fossil bones in continental environments, and repercussions on their chemical composition

    Open Access•Yolanda Fernández-Jalvo, Y Fernández–Jalvo et al.•Archaeometry•2002

  • Age and sex biases in the preservation of human skeletal remains

    Open Access•Phillip L Walker, John R Johnson et al.•American Journal of Physical…•1988

  • Detection of diagenetic alterations by Spectroscopic Analysis on Archaeological Bones from the Necropolis of Poseidonia (Paestum)

    Open Access•Davide Alfano, Alexandra Romina Albunia et al.•Journal of Cultural Heritage•2009

Unique citing works2
Citations per year0,33
Citation span2020 - 2021 (2)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 2

Tools

Open DOISci-HubOpen Access
Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae