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, no 9, , 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, no 1, , 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, no S3, , 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, no 9, , 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, no 5, , 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, no 10, , 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, no 9, , 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, no 1, , 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, no 1, , 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, no S3, , 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, no 1, , 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, no 9, , 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, no 5, , 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, no 10, , 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, no 9, , 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, no 1, , p. 109–129 (ISSN1475-4754, DOI10.1111/arcm.12513, lire en ligne, consulté le )
jstor.org
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, no 1, , 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, no 5, , 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, no 10, , 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, no 9, , 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, no 1, , p. 65 (ISSN2050-7445, DOI10.1186/s40494-020-00407-x, lire en ligne, consulté le )
wiley.com
onlinelibrary.wiley.com
(en) Andrew Sillen et Maureen Kavanagh, « Strontium and paleodietary research: A review », American Journal of Physical Anthropology, vol. 25, no S3, , 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, no 1, , p. 109–129 (ISSN1475-4754, DOI10.1111/arcm.12513, lire en ligne, consulté le )