Joseph B. Lambert, Sharon Vlasak Simpson, Carole Bryda Szpunar et Jane E. Buikstra, «Ancient human diet from inorganic analysis of bone», Accounts of Chemical Research, vol.17, no9, , p.298–305 (ISSN0001-4842 et 1520-4898, DOI10.1021/ar00105a001, lire en ligne, consulté le )
(en) Kaare Lund Rasmussen, Thomas Delbey, Paolo d’Imporzano et Lilian Skytte, «Comparison of trace element chemistry in human bones interred in two private chapels attached to Franciscan friaries in Italy and Denmark: an investigation of social stratification in two medieval and post-medieval societies», Heritage Science, vol.8, no1, , p.65 (ISSN2050-7445, DOI10.1186/s40494-020-00407-x, lire en ligne, consulté le )
(en) Andrew Sillen et Maureen Kavanagh, «Strontium and paleodietary research: A review», American Journal of Physical Anthropology, vol.25, noS3, , p.67–90 (ISSN1096-8644, DOI10.1002/ajpa.1330250505, lire en ligne, consulté le )
Joseph B. Lambert, Sharon Vlasak Simpson, Carole Bryda Szpunar et Jane E. Buikstra, «Ancient human diet from inorganic analysis of bone», Accounts of Chemical Research, vol.17, no9, , p.298–305 (ISSN0001-4842 et 1520-4898, DOI10.1021/ar00105a001, lire en ligne, consulté le )
(en) «The ratio of barium to strontium as a paleodietary indicator of consumption of marine resources», Journal of Archaeological Science, vol.17, no5, , p.547–557 (ISSN0305-4403, DOI10.1016/0305-4403(90)90035-4, lire en ligne, consulté le )
(en) «Immigration and the Ancient City of Teotihuacan in Mexico: a Study Using Strontium Isotope Ratios in Human Bone and Teeth», Journal of Archaeological Science, vol.27, no10, , p.903–913 (ISSN0305-4403, DOI10.1006/jasc.1999.0504, lire en ligne, consulté le )
(en) «Re-examining the chemical evaluation of diagenesis in human bone apatite», Journal of Archaeological Science, vol.38, no9, , p.2222–2230 (ISSN0305-4403, DOI10.1016/j.jas.2011.03.023, lire en ligne, consulté le )
(en) «Testing LA-ICP-MS analysis of archaeological bones with different diagenetic histories for paleodiet prospect», Palaeogeography, Palaeoclimatology, Palaeoecology, vol.534, , p.109287 (ISSN0031-0182, DOI10.1016/j.palaeo.2019.109287, lire en ligne, consulté le )
(en) «From the crust to the cortical: The geochemistry of trace elements in human bone», Geochimica et Cosmochimica Acta, vol.249, , p.76–94 (ISSN0016-7037, DOI10.1016/j.gca.2019.01.019, lire en ligne, consulté le )
(en) S. R. Scott, M. M. Shafer, K. E. Smith et J. T. Overdier, «Elevated lead exposure in Roman occupants of Londinium: New evidence from the archaeological record», Archaeometry, vol.62, no1, , p.109–129 (ISSN1475-4754, DOI10.1111/arcm.12513, lire en ligne, consulté le )
(en) Kaare Lund Rasmussen, Thomas Delbey, Paolo d’Imporzano et Lilian Skytte, «Comparison of trace element chemistry in human bones interred in two private chapels attached to Franciscan friaries in Italy and Denmark: an investigation of social stratification in two medieval and post-medieval societies», Heritage Science, vol.8, no1, , p.65 (ISSN2050-7445, DOI10.1186/s40494-020-00407-x, lire en ligne, consulté le )
(en) Andrew Sillen et Maureen Kavanagh, «Strontium and paleodietary research: A review», American Journal of Physical Anthropology, vol.25, noS3, , p.67–90 (ISSN1096-8644, DOI10.1002/ajpa.1330250505, lire en ligne, consulté le )
T. Douglas Price et Maureen Kavanagh, «Bone composition and the reconstruction of dit: exemples from the midwestern United State», Midcontinental Journal of Archaeology, vol.7, no1, , p.61–79 (ISSN0146-1109, lire en ligne, consulté le )
Joseph B. Lambert, Sharon Vlasak Simpson, Carole Bryda Szpunar et Jane E. Buikstra, «Ancient human diet from inorganic analysis of bone», Accounts of Chemical Research, vol.17, no9, , p.298–305 (ISSN0001-4842 et 1520-4898, DOI10.1021/ar00105a001, lire en ligne, consulté le )
(en) «The ratio of barium to strontium as a paleodietary indicator of consumption of marine resources», Journal of Archaeological Science, vol.17, no5, , p.547–557 (ISSN0305-4403, DOI10.1016/0305-4403(90)90035-4, lire en ligne, consulté le )
(en) «Immigration and the Ancient City of Teotihuacan in Mexico: a Study Using Strontium Isotope Ratios in Human Bone and Teeth», Journal of Archaeological Science, vol.27, no10, , p.903–913 (ISSN0305-4403, DOI10.1006/jasc.1999.0504, lire en ligne, consulté le )
(en) «Re-examining the chemical evaluation of diagenesis in human bone apatite», Journal of Archaeological Science, vol.38, no9, , p.2222–2230 (ISSN0305-4403, DOI10.1016/j.jas.2011.03.023, lire en ligne, consulté le )
(en) «Testing LA-ICP-MS analysis of archaeological bones with different diagenetic histories for paleodiet prospect», Palaeogeography, Palaeoclimatology, Palaeoecology, vol.534, , p.109287 (ISSN0031-0182, DOI10.1016/j.palaeo.2019.109287, lire en ligne, consulté le )
(en) «From the crust to the cortical: The geochemistry of trace elements in human bone», Geochimica et Cosmochimica Acta, vol.249, , p.76–94 (ISSN0016-7037, DOI10.1016/j.gca.2019.01.019, lire en ligne, consulté le )
(en) S. R. Scott, M. M. Shafer, K. E. Smith et J. T. Overdier, «Elevated lead exposure in Roman occupants of Londinium: New evidence from the archaeological record», Archaeometry, vol.62, no1, , p.109–129 (ISSN1475-4754, DOI10.1111/arcm.12513, lire en ligne, consulté le )
T. Douglas Price et Maureen Kavanagh, «Bone composition and the reconstruction of dit: exemples from the midwestern United State», Midcontinental Journal of Archaeology, vol.7, no1, , p.61–79 (ISSN0146-1109, lire en ligne, consulté le )
(en) «The ratio of barium to strontium as a paleodietary indicator of consumption of marine resources», Journal of Archaeological Science, vol.17, no5, , p.547–557 (ISSN0305-4403, DOI10.1016/0305-4403(90)90035-4, lire en ligne, consulté le )
(en) «Immigration and the Ancient City of Teotihuacan in Mexico: a Study Using Strontium Isotope Ratios in Human Bone and Teeth», Journal of Archaeological Science, vol.27, no10, , p.903–913 (ISSN0305-4403, DOI10.1006/jasc.1999.0504, lire en ligne, consulté le )
(en) «Re-examining the chemical evaluation of diagenesis in human bone apatite», Journal of Archaeological Science, vol.38, no9, , p.2222–2230 (ISSN0305-4403, DOI10.1016/j.jas.2011.03.023, lire en ligne, consulté le )
(en) «Testing LA-ICP-MS analysis of archaeological bones with different diagenetic histories for paleodiet prospect», Palaeogeography, Palaeoclimatology, Palaeoecology, vol.534, , p.109287 (ISSN0031-0182, DOI10.1016/j.palaeo.2019.109287, lire en ligne, consulté le )
(en) «From the crust to the cortical: The geochemistry of trace elements in human bone», Geochimica et Cosmochimica Acta, vol.249, , p.76–94 (ISSN0016-7037, DOI10.1016/j.gca.2019.01.019, lire en ligne, consulté le )
(en) Kaare Lund Rasmussen, Thomas Delbey, Paolo d’Imporzano et Lilian Skytte, «Comparison of trace element chemistry in human bones interred in two private chapels attached to Franciscan friaries in Italy and Denmark: an investigation of social stratification in two medieval and post-medieval societies», Heritage Science, vol.8, no1, , p.65 (ISSN2050-7445, DOI10.1186/s40494-020-00407-x, lire en ligne, consulté le )
(en) Andrew Sillen et Maureen Kavanagh, «Strontium and paleodietary research: A review», American Journal of Physical Anthropology, vol.25, noS3, , p.67–90 (ISSN1096-8644, DOI10.1002/ajpa.1330250505, lire en ligne, consulté le )
(en) S. R. Scott, M. M. Shafer, K. E. Smith et J. T. Overdier, «Elevated lead exposure in Roman occupants of Londinium: New evidence from the archaeological record», Archaeometry, vol.62, no1, , p.109–129 (ISSN1475-4754, DOI10.1111/arcm.12513, lire en ligne, consulté le )