This work is licensed under the Creative Commons Attribution 4.0 International License.
Mundorff A, Davoren JM. Examination of DNA yield rates for different skeletal elements at increasing post mortem intervals. Forensic Sci Int Genet 2014; 8: 55-63. doi: 10.1016/j.fsigen.2013.08.001MundorffADavorenJM.Examination of DNA yield rates for different skeletal elements at increasing post mortem intervals. Forensic Sci Int Genet2014; 8: 55-63. doi: 10.1016/j.fsigen.2013.08.001Open DOISearch in Google Scholar
Obal M, Zupanič Pajnič I, Gornjak Pogorelc B, Zupanc T. Different skeletal elements as a source of DNA for genetic identification of Second World War victims. Forensic Sci Int Genet Suppl Ser 2019; 7: 27-9. doi: 10.1016/j.fsigss.2019.09.013ObalMZupanič PajničIGornjak PogorelcBZupancT.Different skeletal elements as a source of DNA for genetic identification of Second World War victims. Forensic Sci Int Genet Suppl Ser2019; 7: 27-9. doi: 10.1016/j.fsigss.2019.09.013Open DOISearch in Google Scholar
Antinick TC, Foran DR. Intra-and inter-element variability in mitochondrial and nuclear DNA from fresh and environmentally exposed skeletal remains. J Forensic Sci 2019; 64: 88-97. doi: 10.1111/1556-4029.13843AntinickTCForanDR.Intra-and inter-element variability in mitochondrial and nuclear DNA from fresh and environmentally exposed skeletal remains. J Forensic Sci2019; 64: 88-97. doi: 10.1111/1556-4029.13843Open DOISearch in Google Scholar
Emmons AL, Davoren J, DeBruyn JM, Mundorff AZ. Inter and intra-individual variation in skeletal DNA preservation in buried remains. Forensic Sci Int Genet 2020; 44: 102193. doi: 10.1016/j.fsigen.2019.102193EmmonsALDavorenJDeBruynJMMundorffAZ.Inter and intra-individual variation in skeletal DNA preservation in buried remains. Forensic Sci Int Genet2020; 44: 102193. doi: 10.1016/j.fsigen.2019.102193Open DOISearch in Google Scholar
Zupanič Pajnič I, Obal M, Zupanc T. Identifying victims of the largest Second World War family massacre in Slovenia. Forensic Sci Int 2020; 306: 110056. doi: 10.1016/j.forsciint.2019.110056Zupanič PajničIObalMZupancT.Identifying victims of the largest Second World War family massacre in Slovenia. Forensic Sci Int2020; 306: 110056. doi: 10.1016/j.forsciint.2019.110056Open DOISearch in Google Scholar
Inkret J, Podovšovnik E, Zupanc T, Haring G, Pajnič IZ. Intra-bone nuclear DNA variability in Second World War metatarsal and metacarpal bones. Int J Legal Med 2021; 135: 1245-56. doi: 10.1007/s00414-021-02528-9InkretJPodovšovnikEZupancTHaringGPajničIZ.Intra-bone nuclear DNA variability in Second World War metatarsal and metacarpal bones. Int J Legal Med2021; 135: 1245-56. doi: 10.1007/s00414-021-02528-9Open DOISearch in Google Scholar
Božič L, Benedik Bevc T, Podovšovnik E, Zupanc T, Zupanič Pajnič I. Intrabone nuclear DNA variability and STR typing success in Second World War first ribs. Int J Legal Med 2021; 135: 2199-208. doi: 10.1007/s00414-021-02681-1BožičLBenedik BevcTPodovšovnikEZupancTZupanič PajničI.Intrabone nuclear DNA variability and STR typing success in Second World War first ribs. Int J Legal Med2021; 135: 2199-208. doi: 10.1007/s00414-021-02681-1Open DOISearch in Google Scholar
Benedik Bevc T, Božič L, Podovšovnik E, Zupanc T, Zupanič Pajnič I. Intrabone nuclear DNA variability and STR typing success in Second World War 12th thoracic vertebrae. Forensic Sci Int Genet 2021; 55: 102587. doi: 10.1016/j.fsigen.2021.102587Benedik BevcTBožičLPodovšovnikEZupancTZupanič PajničI.Intrabone nuclear DNA variability and STR typing success in Second World War 12th thoracic vertebrae. Forensic Sci Int Genet2021; 55: 102587. doi: 10.1016/j.fsigen.2021.102587Open DOISearch in Google Scholar
Zupanič Pajnič I. Identification of a Slovenian prewar elite couple killed in the Second World War. Forensic Sci Int 2021; 327: 110994. doi: 10.1016/j.forsciint.2021.110994Zupanič PajničI.Identification of a Slovenian prewar elite couple killed in the Second World War. Forensic Sci Int2021; 327: 110994. doi: 10.1016/j.forsciint.2021.110994Open DOISearch in Google Scholar
Zupanič Pajnič I, Inkret J, Zupanc T, Podovšovnik E. Comparison of nuclear DNA yield and STR typing success in Second World War petrous bones and metacarpals III. Forensic Sci Int Genet 2021; 55: 102578. doi: 10.1016/j.fsigen.2021.102578Zupanič PajničIInkretJZupancTPodovšovnikE.Comparison of nuclear DNA yield and STR typing success in Second World War petrous bones and metacarpals III. Forensic Sci Int Genet2021; 55: 102578. doi: 10.1016/j.fsigen.2021.102578Open DOISearch in Google Scholar
Božič L, Benedik Bevc T, Podovšovnik E, Zupanc T, Zupanič Pajnič I. Comparison of DNA preservation between ribs and vertebrae. Int J Legal Med 2022; 136: 1247-53. doi: 10.1007/s00414-022-02860-8BožičLBenedik BevcTPodovšovnikEZupancTZupanič PajničI.Comparison of DNA preservation between ribs and vertebrae. Int J Legal Med2022; 136: 1247-53. doi: 10.1007/s00414-022-02860-8Open DOISearch in Google Scholar
Zupanc T, Podovšovnik E, Obal M, Zupanič Pajnič I. High DNA yield from metatarsal and metacarpal bones from Slovenian Second World War skeletal remains. Forensic Sci Int Genet 2021; 51: 102426. doi: 10.1016/j.fsigen.2020.102426ZupancTPodovšovnikEObalMZupanič PajničI.High DNA yield from metatarsal and metacarpal bones from Slovenian Second World War skeletal remains. Forensic Sci Int Genet2021; 51: 102426. doi: 10.1016/j.fsigen.2020.102426Open DOISearch in Google Scholar
Robert Heinrich Johannes Sobotta. Musculoskeletal System. In: Paulsen Friedrich, Waschke Jens, editors. Sobotta atlas of anatomy. Munich: Elsevier; 2018. p. 20-35.Robert Heinrich JohannesSobottaMusculoskeletal System. In: PaulsenFriedrichWaschkeJens, editors. Sobotta atlas of anatomy. Munich: Elsevier; 2018. p. 20-35.Search in Google Scholar
Kulstein G, Hadrys T, Wiegand P. As solid as a rock-comparison of CE-and MPS-based analyses of the petrosal bone as a source of DNA for forensic identification of challenging cranial bones. Int J Legal Med 2018; 132: 13-24. doi: 10.1007/s00414-017-1653-zKulsteinGHadrysTWiegandP.As solid as a rock-comparison of CE-and MPS-based analyses of the petrosal bone as a source of DNA for forensic identification of challenging cranial bones. Int J Legal Med2018; 132: 13-24. doi: 10.1007/s00414-017-1653-zOpen DOISearch in Google Scholar
Gaudio D, Fernandes DM, Schmidt R, Cheronet O, Mazzarelli D, Mattia M, et al. Genome-wide DNA from degraded petrous bones and the assessment of sex and probable geographic origins of forensic cases. Sci Rep 2019; 9: 8226. doi: 10.1038/s41598-019-44638-wGaudioDFernandesDMSchmidtRCheronetOMazzarelliDMattiaMet al.Genome-wide DNA from degraded petrous bones and the assessment of sex and probable geographic origins of forensic cases. Sci Rep2019; 9: 8226. doi: 10.1038/s41598-019-44638-wOpen DOISearch in Google Scholar
Krause S, Lemke AJ. Morphometric analysis of the petrous bone-A preliminary study of intra-and inter-observer variation of basic measurements. Anthropol Anz 2021; 78: 103-13. doi: 10.1127/anthranz/2020/1263KrauseSLemkeAJ.Morphometric analysis of the petrous bone-A preliminary study of intra-and inter-observer variation of basic measurements. Anthropol Anz2021; 78: 103-13. doi: 10.1127/anthranz/2020/1263Open DOISearch in Google Scholar
Antinick TC, Foran DR. Intra-and inter-element variability in mitochondrial and nuclear DNA from fresh and environmentally exposed skeletal remains. J Forensic Sci 2019; 64: 88-97. doi: 10.1111/1556-4029.13843AntinickTCForanDR.Intra-and inter-element variability in mitochondrial and nuclear DNA from fresh and environmentally exposed skeletal remains. J Forensic Sci2019; 64: 88-97. doi: 10.1111/1556-4029.13843Open DOISearch in Google Scholar
Šuligoj A, Mesesnel S, Leskovar T, Podovšovnik E, Zupanič Pajnič I. Comparison of DNA preservation between adult and non-adult ancient skeletons. Int J Legal Med 2022; 136: 1521-39. doi: 10.1007/s00414-022-02881-3ŠuligojAMesesnelSLeskovarTPodovšovnikEZupanič PajničI.Comparison of DNA preservation between adult and non-adult ancient skeletons. Int J Legal Med2022; 136: 1521-39. doi: 10.1007/s00414-022-02881-3Open DOISearch in Google Scholar
Andronowski JM, Mundorff AZ, Pratt I V, Davoren JM, Cooper DML. Evaluating differential nuclear DNA yield rates and osteocyte numbers among human bone tissue types: a synchrotron radiation micro-CT approach. Forensic Sci Int Genet 2017; 28: 211-8. doi: 10.1016/j.fsi-gen.2017.03.002AndronowskiJMMundorffAZPrattIVDavorenJMCooperDML.Evaluating differential nuclear DNA yield rates and osteocyte numbers among human bone tissue types: a synchrotron radiation micro-CT approach. Forensic Sci Int Genet2017; 28: 211-8. doi: 10.1016/j.fsi-gen.2017.03.002Open DOISearch in Google Scholar
LeskovarT, Zupanič Pajnič I, Jerman I, Ĉreŝnar M. Separating forensic, WWII, and archaeological human skeletal remains using ATR-FTIR spectra. Int J Legal Med 2020; 134: 811-21. doi: 10.1007/s00414-019-02079-0LeskovarTZupanič PajničIJermanIĈreŝnarM.Separating forensic, WWII, and archaeological human skeletal remains using ATR-FTIR spectra. Int J Legal Med2020; 134: 811-21. doi: 10.1007/s00414-019-02079-0Open DOISearch in Google Scholar
McCollough CH, Leng S, Yu L, Fletcher JG. Dual-and multi-energy CT: principles, technical approaches, and clinical applications. Radiology 2015; 276: 637-53. doi: 10.1148/radiol.2015142631McColloughCHLengSYuLFletcherJG.Dual-and multi-energy CT: principles, technical approaches, and clinical applications. Radiology2015; 276: 637-53. doi: 10.1148/radiol.2015142631Open DOISearch in Google Scholar
Rajiah P, Sundaram M, Subhas N. Dual-energy CT in musculoskeletal imaging: what is the role beyond gout? Am J Roentgenol 2019; 213:493-505. doi: 10.2214/AJR.19.21095RajiahPSundaramMSubhasN.Dual-energy CT in musculoskeletal imaging: what is the role beyond gout?Am J Roentgenol2019; 213:493-505. doi: 10.2214/AJR.19.21095Open DOISearch in Google Scholar
Choi KY, Lee SW, In Y, Kim MS, Kim YD, Lee SY, et al. Dual-energy CT-based bone mineral density has practical value for osteoporosis screening around the knee. Medicina (B Aires) 2022; 58: 1085. doi: 10.3390/me-dicina58081085ChoiKYLeeSWInYKimMSKimYDLeeSYet al.Dual-energy CT-based bone mineral density has practical value for osteoporosis screening around the knee. Medicina (B Aires)2022; 58: 1085. doi: 10.3390/me-dicina58081085Open DOISearch in Google Scholar
Brant William E. Diagnostic imaging methods. In: Klein JS, Brant WE, Helms CA, Vinson EN, editors. Brant and Helm’s fundamentals of diagnostic radiology.Philadelphia: Wolters Kluwer; 2019. p. 2-26.Brant WilliamE.Diagnostic imaging methods. In: KleinJSBrantWEHelmsCAVinsonEN, editors. Brant and Helm’s fundamentals of diagnostic radiology. Philadelphia: Wolters Kluwer; 2019. p. 2-26.Search in Google Scholar
Andronowski JM, Mundorff AZ, Davis RA, Price EW. Application of X-ray photoelectron spectroscopy to examine surface chemistry of cancellous bone and medullary contents to refine bone sample selection for nuclear DNA analysis. J Anal At Spectrom 2019; 34: 2074-82. doi: 10.1039/C9JA00203KAndronowskiJMMundorffAZDavisRAPriceEW.Application of X-ray photoelectron spectroscopy to examine surface chemistry of cancellous bone and medullary contents to refine bone sample selection for nuclear DNA analysis. J Anal At Spectrom2019; 34: 2074-82. doi: 10.1039/C9JA00203KOpen DOISearch in Google Scholar
Zupanič Pajnič I. Extraction of DNA from human skeletal material. In: Goodwin W, editor. Forensic DNA typing protocols. New York: Humana Press; 2016. p. 89-108.Zupanič PajničI.Extraction of DNA from human skeletal material. In: GoodwinW, editor. Forensic DNA typing protocols. New York: Humana Press; 2016. p. 89-108.Search in Google Scholar
Gardner MJ, Altman DG. Confidence intervals rather than P values: estimation rather than hypothesis testing. BMJ 1986; 292: 746-50. doi: 10.1136/bmj.292.6522.746GardnerMJAltmanDG.Confidence intervals rather than P values: estimation rather than hypothesis testing. BMJ1986; 292: 746-50. doi: 10.1136/bmj.292.6522.746Open DOISearch in Google Scholar
DiCiccio TJ, Efron B. Bootstrap confidence intervals. Statist Sci 1996; 11:189-228. doi: 10.1214/ss/1032280214DiCiccioTJEfronB.Bootstrap confidence intervals. Statist Sci1996; 11:189-228. doi: 10.1214/ss/1032280214Open DOISearch in Google Scholar
Carpenter J, Bithell J. Bootstrap confidence intervals: when, which, what? A practical guide for medical statisticians. Stat Med 2000; 19: 1141-64. doi: 10.1002/(sici) 1097-0258(20000515) 19:9<l 141 ::aid-sim479>3.O.co;2-fCarpenterJBithellJ.Bootstrap confidence intervals: when, which, what? A practical guide for medical statisticians. Stat Med2000; 19: 1141-64. doi: 10.1002/(sici) 1097-0258(20000515) 19:9<l 141 ::aid-sim479>3.O.co;2-fOpen DOISearch in Google Scholar
Chen JH, Liu C, You L, Simmons CA. Boning up on Wolff’s law: mechanical regulation of the cells that make and maintain bone. J B¡omech 2010; 43: 108-18. doi: 10.1016/j.jbiomech.2009.09.016ChenJHLiuCYouLSimmonsCA.Boning up on Wolff’s law: mechanical regulation of the cells that make and maintain bone. J B¡omech2010; 43: 108-18. doi: 10.1016/j.jbiomech.2009.09.016Open DOISearch in Google Scholar
Kushdilian MV, Ladd LM, Gunderman RB. Radiology in the study of bone physiology. Acad Radiol 2016; 23: 1298-308. doi: 10.1016/j.acra.2016.06.001KushdilianMVLaddLMGundermanRB.Radiology in the study of bone physiology. Acad Radiol2016; 23: 1298-308. doi: 10.1016/j.acra.2016.06.001Open DOISearch in Google Scholar
Mujtaba B, Taher A, Fiala MJ, Nassar S, Madewell JE, Hanafy AK, et al. Heterotopic ossification: radiological and pathological review. Radiol Oncol 2019; 53: 275-84. doi: 10.2478/raon-2019-0039MujtabaBTaherAFialaMJNassarSMadewellJEHanafyAKet al.Heterotopic ossification: radiological and pathological review. Radiol Oncol2019; 53: 275-84. doi: 10.2478/raon-2019-0039Open DOISearch in Google Scholar
Wang X, Wang C, Zhang S, Wang W, Li X, Gao S, et al. Microstructure of the hyoid bone based on micro-computed tomography findings. Medicine 2020; 99: e22246. doi: 10.1097/MD.0000000000022246WangXWangCZhangSWangWLiXGaoSet al.Microstructure of the hyoid bone based on micro-computed tomography findings. Medicine2020; 99: e22246. doi: 10.1097/MD.0000000000022246Open DOISearch in Google Scholar
Kozerska M, Szczepanek A, Tarasiuk J, Wroński S. Micro-CT analysis of the internal acoustic meatus angles as a method of sex estimation in skeletal remains. HOMO 2020; 71:121-8. doi: 10.1127/homo/2020/1133KozerskaMSzczepanekATarasiukJWrońskiS.Micro-CT analysis of the internal acoustic meatus angles as a method of sex estimation in skeletal remains. HOMO2020; 71:121-8. doi: 10.1127/homo/2020/1133Open DOISearch in Google Scholar
Duffett Carlson KS, Mandl K, McCall A, Brönnimann D, Teschler-Nicola M, Weiss-Krejci E, et al. 3D visualization of bioerosion in archaeological bone. J Archaeol Sci 2022; 145: 105646. doi: 10.1016/j.jas.2022.105646Duffett CarlsonKSMandlKMcCallABrönnimannDTeschler-NicolaMWeiss-KrejciEet al.3D visualization of bioerosion in archaeological bone. J Archaeol Sci2022; 145: 105646. doi: 10.1016/j.jas.2022.105646Open DOISearch in Google Scholar
Nicklisch N, Schierz O, Enzmann F, Knipper C, Held P, Vach W, et al. Dental pulp calcifications in prehistoric and historical skeletal remains. An Anat 2021; 235:151675. doi: 10.1016/j.aanat.2021.151675NicklischNSchierzOEnzmannFKnipperCHeldPVachWet al.Dental pulp calcifications in prehistoric and historical skeletal remains. An Anat2021; 235:151675. doi: 10.1016/j.aanat.2021.151675Open DOISearch in Google Scholar
Akbulut N, Çetin S, Bilecenoglu B, Altan A, Ocak M, Şen E, et al. Evaluation of the detectability of early mandible fracture healing findings in terms of vitality aspect by using micro-CT technology in postmortem interval. Leg Med 2021; 52: 101914. doi: 10.1016/j.legalmed.2021.101914AkbulutNÇetinSBilecenogluBAltanAOcakMŞenEet al.Evaluation of the detectability of early mandible fracture healing findings in terms of vitality aspect by using micro-CT technology in postmortem interval. Leg Med2021; 52: 101914. doi: 10.1016/j.legalmed.2021.101914Open DOISearch in Google Scholar
Viero A, Biehler-Gomez L, Messina C, Cappella A, Giannoukos K, Viel G, et al. Utility of micro-CT for dating post-cranial fractures of known post-traumatic ages through 3D measurements of the trabecular inner morphology. Sci Rep 2022; 12:10543. doi: 10.1038/s41598-022-14530-1.VieroABiehler-GomezLMessinaCCappellaAGiannoukosKVielGet al.Utility of micro-CT for dating post-cranial fractures of known post-traumatic ages through 3D measurements of the trabecular inner morphology. Sci Rep2022; 12:10543. doi: 10.1038/s41598-022-14530-1.Open DOISearch in Google Scholar
Thurzo A, Jančovičová V, Hain M, Thurzo M, Novák B, Kosnáčová H, et al. Human remains identification using micro-CT, chemometric and Al methods in forensic experimental reconstruction of dental patterns after concentrated sulphuric acid significant impact. Molecules 2022; 27: 4035. doi: 10.3390?molecules27134035ThurzoAJančovičováVHainMThurzoMNovákBKosnáčováHet al.Human remains identification using micro-CT, chemometric and Al methods in forensic experimental reconstruction of dental patterns after concentrated sulphuric acid significant impact. Molecules2022; 27: 4035. doi: 10.3390?molecules27134035Open DOISearch in Google Scholar
Ibrahim J, Brumfeld V, Addadi Y, Rubin S, Weiner S, Boaretto E. The petrous bone contains high concentrations of osteocytes: One possible reason why ancient DNA is better preserved in this bone. PLoS One 2022; 17: e0269348. doi: 10.1371/journal.pone.0269348IbrahimJBrumfeldVAddadiYRubinSWeinerSBoarettoE.The petrous bone contains high concentrations of osteocytes: One possible reason why ancient DNA is better preserved in this bone. PLoS One2022; 17: e0269348. doi: 10.1371/journal.pone.0269348Open DOISearch in Google Scholar
Foerster R, Hees K, Bruckner T, Bostel T, Schlampp I, Sprave T, et al. Survival and stability of patients with urothelial cancer and spinal bone metastases after palliative radiotherapy. Radiol Oncol 2017; 52: 189-94. doi: 10.1515/raon-2017-0038FoersterRHeesKBrucknerTBostelTSchlamppISpraveTet al.Survival and stability of patients with urothelial cancer and spinal bone metastases after palliative radiotherapy. Radiol Oncol2017; 52: 189-94. doi: 10.1515/raon-2017-0038Open DOISearch in Google Scholar
Hishmat AM, Michiue T, Sogawa N, Oritani S, Ishikawa T, Fawzy IA, et al. Virtual CT morphometry of lower limb long bones for estimation of the sex and stature using postmortem Japanese adult data in forensic identification. Int J Legal Med 2015; 129: 1173-82. doi: 10.1007/s00414-015-1228-9HishmatAMMichiueTSogawaNOritaniSIshikawaTFawzy IAet al.Virtual CT morphometry of lower limb long bones for estimation of the sex and stature using postmortem Japanese adult data in forensic identification. Int J Legal Med2015; 129: 1173-82. doi: 10.1007/s00414-015-1228-9Open DOISearch in Google Scholar
Bascou A, Dubourg O, Telmon N, Dedouit F, Saint-Martin P, Savall F. Age estimation based on computed tomography exploration: a combined method. Int J Legal Med 2021; 135: 2447-55. doi: 10.1007/s00414-021-02666-0BascouADubourgOTelmonNDedouitFSaint-MartinPSavallF.Age estimation based on computed tomography exploration: a combined method. Int J Legal Med2021; 135: 2447-55. doi: 10.1007/s00414-021-02666-0Open DOISearch in Google Scholar