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[1] Nielsen, M., Lynnerup, N. & Larsen, P. K. Forensic anthropological video-based cases at the Department of Forensic Medicine, University of Copenhagen: a 10-year retrospective review. Scandinavian Journal of Forensic Science 2019 25, 9-13, doi:10.2478/sjfs-2019-0003 Open DOISearch in Google Scholar

[2] Larsen, P. K., Simonsen, E. B. & Lynnerup, N. Gait analysis in forensic medicine. Journal of forensic sciences 2008 53, 1149-1153, doi:10.1111/j.1556-4029.2008.00807.x18636978 Open DOISearch in Google Scholar

[3] De Angelis, D. et al. New method for height estimation of subjects represented in photograms taken from video surveillance systems. International journal of legal medicine 2007 121, 489-492, doi:10.1007/s00414-007-0176-417541786 Open DOISearch in Google Scholar

[4] Lynnerup, N. & Vedel, J. Person identification by gait analysis and photogrammetry. Journal of forensic sciences 2005 50, 112-11810.1520/JFS2004054 Search in Google Scholar

[5] Larsen, P. K., Hansen, L., Simonsen, E. B. & Lynnerup, N. Variability of Bodily Measures of Normally Dressed People Using PhotoModeler (R) Pro 5. Journal of forensic sciences 2008 53, 1393-1399, doi:10.1111/j.1556-4029.2008.00874.x18798768 Open DOISearch in Google Scholar

[6] Busch, J. & Lynnerup, N. Identifying suspects by matching hand photographs with video evidence. Forensic Sci Med Pat 2015 11, 504-508, doi:10.1007/s12024-015-9726-026499953 Open DOISearch in Google Scholar

[7] Yang, S. X. M. et al. Height estimations based on eye measurements throughout a gait cycle. Forensic science international 2014 236, 170-174, doi:10.1016/j.forsciint.2013.12.03724503163 Open DOISearch in Google Scholar

[8] Cameriere, R. et al. Reliability of Schmeling’s stages of ossification of medial clavicular epiphyses and its validity to assess 18 years of age in living subjects. International journal of legal medicine 2012 126, 923-932, doi:10.1007/s00414-012-0769-422968719 Open DOISearch in Google Scholar

[9] Cattaneo, C. Forensic anthropology: developments of a classical discipline in the new millennium. Forensic science international 2007 165, 185-193, doi:10.1016/j.forsciint.2006.05.01816843626 Open DOISearch in Google Scholar

[10] Cummaudo, M. et al. Towards a method for determining age ranges from faces of juveniles on photographs. Forensic science international 2014 239, 107 e101-107, doi:10.1016/j.forsciint.2014.01.02124726662 Open DOISearch in Google Scholar

[11] Tangmose, S., Jensen, K. E., Villa, C. & Lynnerup, N. Forensic age estimation from the clavicle using 1.0T MRI--preliminary results. Forensic science international 2014 234, 7-12, doi:10.1016/j.forsciint.2013.10.02724378295 Open DOISearch in Google Scholar

[12] Lynnerup, N. & Iversen, L. Trophy Skulls in Denmark. Scandinavian Journal of Forensic Medicine 2006 12, 64-644 Search in Google Scholar

[13] AlQahtani, S. J., Hector, M. P. & Liversidge, H. M. Brief communication: The London atlas of human tooth development and eruption. American journal of physical anthropology 2010 142, 481-490, doi:10.1002/ajpa.2125820310064 Open DOISearch in Google Scholar

[14] Lynnerup, N., Bennike, P. & Iregren, E. Biologisk antropologi med human osteologi.. Gyldendal, 2008. Search in Google Scholar

[15] Scheuer, L. & Black, S. M. D. Developmental juvenile osteology., Academic Press, 2000.10.1016/B978-012624000-9/50004-6 Search in Google Scholar

[16] Uberlaker, B. Dental development and eruption. 1994 Search in Google Scholar

[17] Frøhlich, B., Falkowski, B. & Lynnerup, N. in Current Topics in Forensic Science Vol.1 (eds T. Takatori & A. Takasu) 121-132 (Shunderson, 1998). Search in Google Scholar

[18] Villa, C., Frohlich, B. & Lynnerup, N. in Ortner’s Identification of Pathological Conditions in Human Skeletal Remains (Third Edition) (ed Jane E. Buikstra) 169-182 (Academic Press, 2019).10.1016/B978-0-12-809738-0.00007-7 Search in Google Scholar

[19] Milner, G. R. & Boldsen, J. L. in A Companion to Forensic Anthropology (ed D. C. Dirkmaat) 224-238 (Blackwell Publishing Lrd., 2012).10.1002/9781118255377.ch11 Search in Google Scholar

[20] Milner, G. R. et al. in Remodelling Forensic Skeletal Age: Modern Applications and New Research Directions. (eds B. F. B. Algee-Hewitt & J. & Kim) 139-154 ( Academic Press, 2021). Search in Google Scholar

[21] Jacobsen, C., Bech, B. H. & Lynnerup, N. A comparative study of cranial, blunt trauma fractures as seen at medicolegal autopsy and by computed tomography. BMC medical imaging 2009 9, 18, doi:10.1186/1471-2342-9-18277045319835570 Open DOISearch in Google Scholar

[22] Jacobsen, C. & Lynnerup, N. Cranial fractures caused by blunt trauma to the skull. A retrospective analysis of medico-legal autopsies in Denmark from 1999-2004.. Scandinavian Journal of Forensic Medicine 2008 14, 64-70 Search in Google Scholar

[23] Jacobsen, C. & Lynnerup, N. Craniocerebral trauma - Congruence between post-mortem computed tomography diagnoses and autopsy results A 2-year retrospective study. Forensic science international 2010 194, 9-14, doi:10.1016/j.forsciint.2009.10.00119900771 Open DOISearch in Google Scholar

[24] Henningsen, M. J., Harving, M. L., Jacobsen, C. & Villa, C. Fractures of the neuro-cranium: sensitivity and specificity of post-mortem computed tomography compared with autopsy. International journal of legal medicine 2022, doi:10.1007/s00414-022-02779-035084533 Open DOISearch in Google Scholar

[25] Kranioti, E. Forensic investigation of cranial injuries due to blunt force trauma: current best practice. Research and Reports in Forensic Medical Science 2015, 25-37, doi:https://doi.org/10.2147/RRFMS.S7042310.2147/RRFMS.S70423 Search in Google Scholar

[26] Poulsen, K. & Simonsen, J. Computed tomography as routine in connection with medico-legal autopsies. Forensic science international 2007 171, 190-197, doi:10.1016/j.forsciint.2006.05.04116891070 Open DOISearch in Google Scholar

[27] Villa, C., Olsen, K. B. & Hansen, S. H. Virtual animation of victim-specific 3D models obtained from CT scans for forensic reconstructions: Living and dead subjects. Forensic science international 2017, doi:http://dx.doi.org/10.1016/j.forsciint.2017.06.03310.1016/j.forsciint.2017.06.03328716518 Search in Google Scholar

[28] Bolliger, M. J., Buck, U., Thali, M. J. & Bolliger, S. A. Reconstruction and 3D visualisation based on objective real 3D based documentation. Forensic Sci Med Pat 2012 8, 208-217, doi:10.1007/s12024-011-9288-821979427 Open DOISearch in Google Scholar

[29] Urschler, M. et al. Intuitive presentation of clinical forensic data using anonymous and person-specific 3D reference manikins. Forensic science international 2014 241, 155-166, doi:10.1016/j.forsciint.2014.05.01724952238 Open DOISearch in Google Scholar

[30] Larsen, P. K., Hansen, L., Simonsen, E. B. & Lynnerup, N. Variability of bodily measures of normally dressed people using PhotoModeler Pro. - art. no. 64910Z. P Soc Photo-Opt Ins 2007 6491, Z4910-Z4910, doi:Doi 10.1117/12.703597 Open DOISearch in Google Scholar

[31] Villa, C. & Jacobsen, C. in Essentials of Autopsy Practice. (ed G. Rutty) (Springer, 2019 ). Search in Google Scholar

[32] Jørkov, M. L. S. Forensic anthropological video-based cases at the Department of Forensic Medicine, University of Copenhagen: a 10-year retrospective review. Scandinavian Journal of Forensic Science 2004 10, 45-49 Search in Google Scholar

[33] Eriksson, A. et al. Dansk-Svenskt Rättsmedicinskt Arbete i Kosovo, 1999. I: Administrativa Errfarenheter.. Nordisk Rettsmedisin 2000 6 Search in Google Scholar

[34] Eriksson, A. et al. Dansk-Svenskt Rättsmedicinskt Arbete i Kosovo, 1999. II: Rättsmecinska Fynd och Errfarenheter.. Nordisk Rettsmedisin 2000 6 Search in Google Scholar

[35] de Boer, H. H., Blau, S., Delabarde, T. & Hackman, L. The role of forensic anthropology in disaster victim identification (DVI): recent developments and future prospects. Forensic sciences research 2019 4, 303-315, doi:10.1080/20961790.2018.1480460696855032002489 Open DOISearch in Google Scholar

[36] Andersen, L. & Lynnerup, N. Unidentified bodies brought to the Section of Forensic Pathology, University of Copenhagen.. Scandinavian Journal of Forensic Science 2008 14, 10-13 Search in Google Scholar

[37] Lynnerup, N. & Jakobsen, C. Personidentifikation ud fra kranierøntgen.. Nordisk Rettsmedisin 1998 4 Search in Google Scholar

[38] Blau, S. & Briggs, C. A. The role of forensic anthropology in Disaster Victim Identification (DVI). Forensic science international 2011 205, 29-35, doi:10.1016/j.forsciint.2010.07.03820797826 Open DOISearch in Google Scholar

[39] Brough, A. L., Rutty, G. N., Black, S. & Morgan, B. Post-mortem computed tomography and 3D imaging: anthropological applications for juvenile remains. Forensic science, medicine, and pathology 2012 8, 270-279, doi:10.1007/s12024-012-9344-z22581318 Open DOISearch in Google Scholar

[40] Rutty, G. N. et al. Remote post-mortem radiology reporting in disaster victim identification: experience gained in the 2017 Grenfell Tower disaster. International journal of legal medicine 2020 134, 637-643, doi:10.1007/s00414-019-02109-x704425231250083 Open DOISearch in Google Scholar

[41] Rutty, G. N. et al. Positional Statement: Radiology Disaster Victim Identification Reporting Forms: Positional statement of the members of the Disaster Victim Identification working group of the International Society of Forensic Radiology and Imaging. Journal of Forensic Radiology and Imaging 2018 15, 4-7, doi:https://doi.org/10.1016/j.jofri.2018.10.00310.1016/j.jofri.2018.10.003 Search in Google Scholar

[42] Krants, L. in Multidisciplinary Approaches to Forensic Archaeology: Topics discussed during the European Meetings on Forensic Archaeology (EMFA) (eds Pier Matteo Barone & W. J. Mike Groen) 165-176 (Springer International Publishing, 2018).10.1007/978-3-319-94397-8_11 Search in Google Scholar

[43] Groen, W. J. M., Barone, P. M. & Nienaber, W. C. Scene of Crime – Subgroup Forensic Archaeology.. ENFSI Whitepaper 2020 Search in Google Scholar

[44] Frei, K. M. et al. Mapping human mobility during the third and second millennia BC in present-day Denmark. PloS one 2019 14, e0219850, doi:10.1371/journal.pone.0219850670367531433798 Open DOISearch in Google Scholar

[45] Frei, K. M. et al. A matter of months: High precision migration chronology of a Bronze Age female. PloS one 2017 12, e0178834, doi:10.1371/journal.pone.0178834545946128582402 Open DOISearch in Google Scholar

[46] Jorkov, M. L., Heinemeier, J. & Lynnerup, N. The petrous bone--a new sampling site for identifying early dietary patterns in stable isotopic studies. American journal of physical anthropology 2009 138, 199-209, doi:10.1002/ajpa.2091918773469 Open DOISearch in Google Scholar

[47] Jorkov, M. L., Jorgensen, L. & Lynnerup, N. Uniform diet in a diverse society. Revealing new dietary evidence of the Danish Roman Iron Age based on stable isotope analysis. American journal of physical anthropology 2010 143, 523-533, doi:10.1002/ajpa.2134620564524 Open DOISearch in Google Scholar

[48] Margaryan, A. et al. Population genomics of the Viking world. Nature 2020 585, 390-396, doi:10.1038/s41586-020-2688-832939067 Open DOISearch in Google Scholar

[49] Allentoft, M. E. et al. Population genomics of Bronze Age Eurasia. Nature 2015 522, 167-+, doi:10.1038/nature1450726062507 Open DOISearch in Google Scholar

[50] Thofner, I., Hougen, H. P., Villa, C., Lynnerup, N. & Christensen, J. P. Pathological characterization of keel bone fractures in laying hens does not support external trauma as the underlying cause. PloS one 2020 15, e0229735, doi:10.1371/journal.pone.0229735706224732150551 Open DOISearch in Google Scholar

[51] Bastir, M. et al. Rib cage anatomy in Homo erectus suggests a recent evolutionary origin of modern human body shape. Nature Ecology & Evolution 2020, doi:10.1038/s41559-020-1240-432632258 Open DOISearch in Google Scholar

[52] Garcia-Martinez, D. et al. Late subadult ontogeny and adult aging of the human thorax reveals divergent growth trajectories between sexes. Scientific reports 2020 10, 10737, doi:10.1038/s41598-020-67664-5732987932612141 Open DOISearch in Google Scholar

[53] Tambusso, P. S. et al. The inner ear anatomy of glyptodonts and pampatheres (Xenarthra Cingulata): Functional and phylogenetic implications. J S Am Earth Sci 2021 108, doi:10.1016/j.jsames.2021.103189 Open DOISearch in Google Scholar

[54] Limaverde, S. et al. Interpreting character variation in turtles: Araripemys barretoi (Pleurodira: Pelomedusoides) from the Araripe Basin, Early Cretaceous of Northeastern Brazil. PeerJ 2020 8, doi:10.7717/peerj.9840753134733062413 Open DOISearch in Google Scholar

[55] Jacobsen, A. R., Lauridsen, H., Fiirgaard, B., Boel, L. W. T. & Hansen, K. Healed or non-healed? Computed tomography (CT) visualisation of morphology of bite trace ichnotaxa on a dinosaur bone. Annales Societatis Geologorum Poloniae 2015 85, 425-42610.14241/asgp.2015.022 Search in Google Scholar

[56] Villa, C., Jørkov, M. L., Madsen, C. K. & Jensen, J. F. in Visual Heritage: Digital Approaches in Heritage Science Vol. in press Springer Cultural Computing Series (eds E. Ch’ng, H. Chapman, V. Gaffney, & A.S. Wilson) (Springer 2022). Search in Google Scholar

[57] Eriksen, A. M. et al. The effects of wood anisotropy on the mode of attack by the woodborer Teredo navalis and the implications for underwater cultural heritage. Int Biodeter Biodegr 2016 107, 117-122, doi:10.1016/j.ibiod.2015.11.018 Open DOISearch in Google Scholar

[58] Lynnerup, N. & Boldsen, J. Leprosy (Hansen’s disease). Blackw Companion Ant 2012, 458-47110.1002/9781444345940.ch25 Search in Google Scholar

[59] Brozou, A. et al. Leprosy in medieval Denmark: Exploring life histories through a multi-tissue and multi-isotopic approach. American journal of physical anthropology 2021 176, 36-53, doi:10.1002/ajpa.2433934096038 Open DOISearch in Google Scholar

[60] Primeau, C., Homoe, P. & Lynnerup, N. Temporal changes in childhood health during the medieval Little Ice Age in Denmark. International Journal of Paleopathology 2019 27, 80-87, doi:10.1016/j.ijpp.2019.09.00331675550 Open DOISearch in Google Scholar

[61] Erikstrup, C. et al. Estimation of SARS-CoV-2 Infection Fatality Rate by Real-time Antibody Screening of Blood Donors. Clinical infectious diseases : an official publication of the Infectious Diseases Society of America 2021 72, 249-253, doi:10.1093/cid/ciaa849733768133501969 Open DOISearch in Google Scholar

[62] Dangvard Pedersen, D., Milner, G. R., Kolmos, H. J. & Boldsen, J. L. Tuberculosis in medieval and early modern Denmark: A paleoepidemiological perspective. Int J Paleopathol 2019 27, 101-108, doi:10.1016/j.ijpp.2018.11.00330522981 Open DOISearch in Google Scholar

[63] Schuenemann, V. J. et al. Ancient genomes reveal a high diversity of Mycobacterium leprae in medieval Europe. PLoS Pathog 2018 14, e1006997, doi:10.1371/journal.ppat.1006997594492229746563 Open DOISearch in Google Scholar

[64] Milner, G. R. et al. Selective mortality in middle-aged American women with Diffuse Idiopathic Skeletal Hyperostosis (DISH). PloS one 2018 13, e0202283, doi:10.1371/journal.pone.0202283611263730153267 Open DOISearch in Google Scholar

[65] Poulsen, L. W., Qvesel, D., Brixen, K., Vesterby, A. & Boldsen, J. L. Low bone mineral density in the femoral neck of medieval women: a result of multiparity? Bone 2001 28, 454-458, doi:10.1016/s8756-3282(01)00407-011336928 Open DOISearch in Google Scholar

[66] Boldsen, J. L., Boel, L. W. & Gregersen, B. Bishop Peder Elavsen and the Epidemiology of the palaeopathological diagnosis of leprosy. Paleopathology Newsletter 2006 133 Search in Google Scholar

[67] Gregersen, M., Boldsen, J., Bjorn, H., Boel, L. W. & Fromholt, P. Examination and identification of a Danish 17th-century nobleman, Laurids Ebbesen : A multidisciplinary study. Forensic science, medicine, and pathology 2006 2, 51-58, doi:10.1385/FSMP:2:1:5125868504 Open DOISearch in Google Scholar

[68] Forsom, E., Boel, L. W. T., Jaque, B. & Mollerup, L. The death of a medieval Danish warrior. A case of bone trauma interpretation.. Scandinavian Journal of Forensic Science 2017 23, 13-2010.1515/sjfs-2017-0001 Search in Google Scholar

[69] Jorkov, M. L. S. Stature in 19th and early 20th century Copenhagen. A comparative study based on skeletal remains. Econ Hum Biol 2015 19, 13-26, doi:10.1016/j.ehb.2015.07.00226256129 Open DOISearch in Google Scholar

[70] Garoufi, N., Bertsatos, A., Chovalopoulou, M. E. & Villa, C. Forensic sex estimation using the vertebrae: an evaluation on two European populations. International journal of legal medicine 2020 134, 2307-2318, doi:10.1007/s00414-020-02430-w32940842 Open DOISearch in Google Scholar

[71] Villa, C., Buckberry, J. & Lynnerup, N. Evaluating osteological ageing from digital data. Journal of anatomy 2019 235, 386-395, doi:10.1111/joa.12544663745227620700 Open DOISearch in Google Scholar

[72] Arge, S. et al. Transition analysis applied to third molar development in a Danish population. Forensic science international 2020 308, doi:10.1016/j.forsciint.2020.11014531972530 Open DOISearch in Google Scholar

[73] Villa, C., Hansen, N. F., Hansen, K. M., Hougen, H. P. & Jacobsen, C. 3D reconstructions of a controlled bus bombing. Journal of Forensic Radiology and Imaging 2018 12, 11-20, doi:10.1016/j.jofri.2018.02.004 Open DOISearch in Google Scholar

[74] Villa, C. Forensic 3D documentation of skin injuries. International journal of legal medicine 2017 131, 751-759, doi:10.1007/s00414-016-1499-927913880 Open DOISearch in Google Scholar

[75] Lundquist, A. A., Jensen, N. D., Jørkov, M. L., Lynnerup, N. & Villa, C. How 3D printing and physical reconstruction of a skull helped in a complex pathological case Anthropologischer Anzeiger 2022 72, 83-9410.1127/anthranz/2021/127034487136 Search in Google Scholar

[76] Villa, C., Davey, J., Craig, P. J. G., Drummer, O. H. & Lynnerup, N. The advantage of CT scans and 3D visualizations in the analysis of three child mummies from the Graeco-Roman Period. Anthropologischer Anzeiger 2015 72, 55-65, doi:10.1127/anthranz/2014/033025775925 Open DOISearch in Google Scholar

[77] Wilson, A. S. et al. Archaeological, radiological, and biological evidence offer insight into Inca child sacrifice. Proceedings of the National Academy of Sciences of the United States of America 2013 110, 13322-13327, doi:10.1073/pnas.1305117110374685723898165 Open DOISearch in Google Scholar

[78] Villa, C. & Lynnerup, N. Hounsfield Units ranges in CT-scans of bog bodies and mummies. Anthropologischer Anzeiger 2012 69, 127-145, doi:10.1127/0003-5548/2012/013922606909 Open DOISearch in Google Scholar

[79] Pedersen, C. C. E., Villa, C., Asingh, P., Thali, M. J. & Gascho, D. Looking deep into the past – virtual autopsy of a Mongolian warrior. Forensic Imaging 2021 25, 200455, doi:https://doi.org/10.1016/j.fri.2021.20045510.1016/j.fri.2021.200455 Search in Google Scholar

[80] Boldsen, J. L., Milner, G. R., Konigsberg, L. W. & Wood, J. W. in Palodemography. Age distributions from skeletal samples (eds R.D. Hoppa & J.W. Vaupel) 73-106 (Cambridge University Press, 2002).10.1017/CBO9780511542428.005 Search in Google Scholar

[81] Milner, G. R. & Boldsen, J. L. Transition analysis: a validation study with known-age modern American skeletons. American journal of physical anthropology 2012 148, 98-110, doi:10.1002/ajpa.2204722419394 Open DOISearch in Google Scholar

[82] Milner, G. R. & Boldsen, J. L. in A Companion to Forensic Anthropology (ed Dennis C. Dirkmaat) 224-238 (Blackwell Publishing Ltd, 2012).10.1002/9781118255377.ch11 Search in Google Scholar

[83] Tarp, P. Skeletal age estimation: a demographic study of the population of Ribe through 1000 years Ph.D. thesis, Syddansk Universitet. Odense, 2017. Search in Google Scholar

[84] Weise, S. The Mediaeval Cemetery S:t Jörgen in Malmö: a Paleodemographic Analysis. Ph.D. thesis, University of Southern Denmark, Odense, 2009. Search in Google Scholar

[85] Wittwer-Backofen, U. et al. Basics in paleodemography: a comparison of age indicators applied to the early medieval skeletal sample of Lauchheim. American journal of physical anthropology 2008 137, 384-396, doi:10.1002/ajpa.2088118615503 Open DOISearch in Google Scholar

[86] Boldsen, J. L., Milner, G. R. & Boldsen, S. K. Sex estimation from modern American humeri and femora, accounting for sample variance structure. American journal of physical anthropology 2015 158, 745-750, doi:10.1002/ajpa.2281226212906 Open DOISearch in Google Scholar

[87] Boldsen, J. L., Rasmussen, K. L., Riis, T., Dittmar, M. & Weise, S. Schleswig: medieval leprosy on the boundary between Germany and Denmark. Anthropologischer Anzeiger; Bericht uber die biologisch-anthropologische Literatur 2013 70, 273-287, doi:10.1127/0003-5548/2013/031824466638 Open DOISearch in Google Scholar

[88] Pedersen, D. D., Milner, G. R., Kolmos, H. J. & Boldsen, J. L. The association between skeletal lesions and tuberculosis diagnosis using a probabilistic approach. International Journal of Paleopathology 2019 27, 88-100, doi:10.1016/j.ijpp.2019.01.00130661884 Open DOISearch in Google Scholar

[89] Boldsen, J. L., Milner, G. R. & Weise, S. Cranial vault trauma and selective mortality in medieval to early modern Denmark. Proceedings of the National Academy of Sciences of the United States of America 2015 112, 1721-1726, doi:10.1073/pnas.1412511112433074625624493 Open DOISearch in Google Scholar

[90] Leth, P. M. & Boldsen, J. L. Struck by a lance through his side: The homicide of King Canute the Saint. Scandinavian Journal of Forensic Science 2010, 24-27 Search in Google Scholar

[91] Milner, G. R., Boldsen, J. L., Weise, S., Lauritsen, J. M. & Freund, U. H. Sex-related risks of trauma in medieval to early modern Denmark, and its relationship to change in interpersonal violence over time. International Journal of Paleopathology 2015 9, 59-68, doi:https://doi.org/10.1016/j.ijpp.2015.02.00210.1016/j.ijpp.2015.02.00229539441 Search in Google Scholar

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