Journal of Forensic Medicine ›› 2025, Vol. 41 ›› Issue (6): 517-530.DOI: 10.12116/j.issn.1004-5619.2026.460103
Received:2025-09-15
Online:2026-02-27
Published:2025-12-25
CLC Number:
Ning-guo LIU. Innovative Development and Future Prospects in Forensic Pathology[J]. Journal of Forensic Medicine, 2025, 41(6): 517-530.
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URL: http://www.fyxzz.cn/EN/10.12116/j.issn.1004-5619.2026.460103
| [1] | CĂȚINAȘ R M, HOSTIUC S. The latest advances in omics technology for assessing tissue damage: Implications for the study of sudden cardiac death[J]. Int J Mol Sci,2025,26(14):6818. doi:10.3390/ijms26146818 . |
| [2] | LIU N G, YANG M Z, TIAN Z L, et al. Application and prospect of postmortem imaging technology in forensic cardiac pathology: A systemic review[J]. J Forensic Sci Med,2022,8(4):149-156. doi:10.41 |
| 03/jfsm.jfsm_129_22. | |
| [3] | CHEN Y J. Current state and progress of research on forensic biomechanics in China[J]. Forensic Sci Res,2021,6(1):1-12. doi:10.1080/20961790.2021.1879365 . |
| [4] | SHEN C, LIAN C F, ZHANG W Q, et al. Large-vocabulary forensic pathological analyses via prototypical cross-modal contrastive learning[J]. Nat Commun,2025,16(1):6773. doi:10.1038/s41467-025-62060-x . |
| [5] | DETTMEYER R B. Forensic histopathology: Fundamentals and perspectives[J]. Cham: Springer,2018:17-19. |
| [6] | TOMASSINI L, LANCIA M, SCENDONI R, et al. Dating skin lesions of forensic interest by immunohistochemistry and immunofluorescence techniques: A scoping literature review[J]. Diagnostics (Basel),2024,14(2):168. doi:10.3390/diagnostics 14020168 . |
| [7] | D’ANTONIO G, DI FAZIO N, PELLEGRINI L, et al. Immunohistochemical assessment of acute myocardial infarction: A systematic review[J]. Int J Mol Sci,2025,26(18):8901. doi:10.3390/ijms26188901 . |
| [8] | CECCHI R, BAJANOWSKI T, KAHL B, et al. CMV-DNA detection in parenchymatous organs in cases of SIDS[J]. Int J Legal Med,1995,107(6):291-295. doi:10.1007/BF01246875 . |
| [9] | WEYERMANN C, MINZIÈRE V R, TILBORG T, et al. (Re-)positionning forensic research & development for increased impact in gunshot residue examination[J]. Forensic Sci Int,2025,375:112560. doi:10.1016/j.forsciint.2025.112560 . |
| [10] | DELIA A, SELIGARDI M, DI PAOLO M, et al. Scanning electron microscopy with energy dispersive spectrometry as part of an integrated multidisciplinary approach in a complex cadaver case[J]. Leg Med (Tokyo),2026,80:102775. doi:10.1016/j.legalmed.2026.102775 . |
| [11] | GAVA G, EICKHOFF S B, FILLER T J, et al. Acute or chronic pulmonary emphysema? Or both? — A contribution to the diagnosis of death due to violent asphyxiation in cases with pre-existing chronic emphysema[J]. Int J Legal Med,2022,136(1):133-147. doi:10.1007/s00414-021-02619-7 . |
| [12] | LOUSSERT-FONTA C, STOPPINI L, NEUENS-CHWANDER Y, et al. Opening the black box of traumatic brain injury: A holistic approach combining human 3D neural tissue and an in vitro traumatic brain injury induction device[J]. Front Neurosci,2023,17:1189615. doi:10.3389/fnins.2023.1189615 . |
| [13] | PIGAIANI N, BERTASO A, DE PALO E F, et al. Vitreous humor endogenous compounds analysis for post-mortem forensic investigation[J]. Forensic Sci Int,2020,310:110235. doi:10.1016/j.forsciint.2020.110235 . |
| [14] | KELTANEN T, SAJANTILA A, VALONEN T, et al. Measuring postmortem glycated hemoglobin — A comparison of three methods[J]. Leg Med (Tokyo),2013,15(2):72-78. doi:10.1016/j.legalmed.2012.09.002 . |
| [15] | HOCKENHULL J, DHILLO W, ANDREWS R, et al. Investigation of markers to indicate and distinguish death due to alcoholic ketoacidosis, diabetic ketoacidosis and hyperosmolar hyperglycemic state using post-mortem samples[J]. Forensic Sci Int,2012,214(1/2/3):142-147. doi:10.1016/j.forsciint.2011.07.040 . |
| [16] | PALMIERE C, BARDY D, MANGIN P, et al. Postmortem diagnosis of unsuspected diabetes mellitus[J]. Forensic Sci Int,2013,226(1/2/3):160-167. doi:10.1016/j.forsciint.2013.01.004 . |
| [17] | MEURS J, SZYKUŁA K M. Comment on “Pro-mising blood-derived biomarkers for estimation of the postmortem interval” by I. Costa, F. Carvalho, T. Magalhães, P. G. de Pinho, R. Silvestre & R. J. Dinis-Oliveira. (Toxicol. Res.,2015,4,1443-1452)[J]. Toxicol Res (Camb),2016,5(2):714-715. doi:10. 1039/c5tx00397k . |
| [18] | MADEA B, MUSSHOFF F. Postmortem biochemistry[J]. Forensic Sci Int,2007,165(2/3):165-171. doi:10.1016/j.forsciint.2006.05.023 . |
| [19] | UEMURA K, SHINTANI-ISHIDA K, SAKA K, et al. Biochemical blood markers and sampling sites in forensic autopsy[J]. J Forensic Leg Med,2008, 15(5):312-317. doi:10.1016/j.jflm.2007.12.003 . |
| [20] | 刘芳芳,吴慧,王威,等. 1,5-AG在高糖代谢兔尸体玻璃体液中的变化[J].法医学杂志,2023,39(1):13-17. doi:10.12116/j.issn.1004-5619.2021.410403 . |
| LIU F F, WU H, WANG W, et al. Changes of 1,5-AG in vitreous humor of rabbit cadavers with hyperglycemic metabolism[J]. Fayixue Zazhi,2023,39(1):13-17. | |
| [21] | BOULAGNON C, GARNOTEL R, FORNES P, et al. Post-mortem biochemistry of vitreous humor and glucose metabolism: An update[J]. Clin Chem Lab Med,2011,49(8):1265-1270. doi:10.1515/CCLM.2011.638 . |
| [22] | MAEDA H, ZHU B L, ISHIKAWA T, et al. Forensic molecular pathology of violent deaths[J]. Forensic Sci Int,2010,203(1/2/3):83-92. doi:10.1016/j.forsciint.2010.07.024 . |
| [23] | ANDERSON G S. Factors that influence insect succession on carrion[M]// BYRD J H, TOMBERLIN J K. Forensic entomology: The utility of arthropods in legal investigations. 3rd ed. Boca Raton: CRC Press,2019:102-138. |
| [24] | AMENDT J, RICHARDS C S, CAMPOBASSO C P, et al. Forensic entomology: Applications and limitations[J]. Forensic Sci Med Pathol,2011,7(4):379-392. doi:10.1007/s12024-010-9209-2 . |
| [25] | ABBASI E. A review of the advances in insect evidence analysis for estimating postmortem interval and detecting drug toxicity[J]. J Forensic Leg Med,2026,118:103059. doi:10.1016/j.jflm.2025.103059 . |
| [26] | SAKS M J, KOEHLER J J. The coming paradigm shift in forensic identification science[J]. Science,2005,309(5736):892-895. doi:10.1126/science.111 1565 . |
| [27] | BANSODE S, MORAJKAR A, RAGADE V, et al. Challenges and considerations in forensic entomology: A comprehensive review[J]. J Forensic Leg Med,2025,110:102831. doi:10.1016/j.jflm.2025.102831 . |
| [28] | FRANCESCHETTI L, LODETTI G, BLANDINO A, et al. Exploring the role of the human microbiome in forensic identification: Opportunities and challenges[J]. Int J Legal Med,2024,138(5):1891-1905. doi:10.1007/s00414-024-03217-z . |
| [29] | TOMASSINI L, GORACCI V, ONOFRI M, et al. Microbial succession after death: Genomic and culture-based insights from external sampling sites in forensic science[J]. Leg Med (Tokyo),2025,78:102685. doi:10.1016/j.legalmed.2025.102685 . |
| [30] | UTHANDI D, SABARUDIN A, MOHD Z, et al. Effectiveness of post-mortem computed tomography (PMCT) in comparison with conventional autopsy: A systematic review[J]. Curr Med Imaging,2020,16(6):669-676. doi:10.2174/1573405615666190821115426 . |
| [31] | ARTHURS O J, THAYYIL S, PAULIAH S S, et al. Diagnostic accuracy and limitations of post-mortem MRI for neurological abnormalities in fetuses and children[J]. Clin Radiol,2015,70(8):872-880. doi:10.1016/j.crad.2015.04.008 . |
| [32] | BOLLIGER S A, FILOGRANA L, SPENDLOVE D, et al. Postmortem imaging-guided biopsy as an adjuvant to minimally invasive autopsy with CT and postmortem angiography: A feasibility study[J]. AJR Am J Roentgenol,2010,195(5):1051-1056. doi:10.2214/AJR.10.4600 . |
| [33] | GRABHERR S, BAUMANN P, MINOIU C, et al. Post-mortem imaging in forensic investigations: Current utility, limitations, and ongoing developments[J]. Res Rep Forensic Med Sci,2016,6:25-37. doi:10.2147/RRFMS.S93974 . |
| [34] | DOBAY A, FORD J, DECKER S, et al. Potential use of deep learning techniques for postmortem imaging[J]. Forensic Sci Med Pathol,2020,16(4):671-679. doi:10.1007/s12024-020-00307-3 . |
| [35] | 陈忆九. 法医病理数字化新技术的发展及在鉴定实践中的应用[J].中国司法鉴定,2016(3):64-71. doi:10.3969/j.issn.1671-2072.2016.03.011 . |
| CHEN Y J. The development and application of new digital techniques in forensic pathology[J]. Zhongguo Sifa Jianding,2016(3):64-71. | |
| [36] | 李海岩,刘文港,崔世海,等. 钝器致伤案例的有限元法重构及量化评价[J].法医学杂志,2022,38(4):452-458,467. doi:10.12116/j.issn.1004-5619.2020.401215 . |
| LI H Y, LIU W G, CUI S H, et al. Reconstruction and quantitative evaluation of blunt injury cases by finite element method[J]. Fayixue Zazhi,2022,38(4):452-458,467. | |
| [37] | 曾勇,邹冬华,范颖,等. 人体血管有限元建模及生物力学的研究进展与法医学应用[J].法医学杂志,2023,39(5):471-477,486. doi:10.12116/j.issn.1004-5619.2021.411103 . |
| ZENG Y, ZOU D H, FAN Y, et al. Research progress and forensic application of human vascular finite element modeling and biomechanics[J]. Fa-yixue Zazhi,2023,39(5):471-477,486. | |
| [38] | 张敏,仇永贵,邵煜,等. 有限元方法在胸腰椎损伤中的应用[J].法医学杂志,2015,31(2):132-134. doi:10.3969/j.issn.1004-5619.2015.02.014 . |
| ZHANG M, QIU Y G, SHAO Y, et al. Application of finite element method in thoracolumbar spine traumatology[J]. Fayixue Zazhi,2015,31(2):132-134. | |
| [39] | 汪家文,黄江,李正东,等. 儿童颅脑损伤生物力学研究进展[J].法医学杂志,2016,32(6):448-451. doi:10.3969/j.issn.1004-5619.2016.06.014 . |
| WANG J W, HUANG J, LI Z D, et al. Research progress on biomechanics of craniocerebral injury in children[J]. Fayixue Zazhi,2016,32(6):448-451. | |
| [40] | CORDASCO F, SACCO MA, GUALTIERI S, et al. New perspectives of forensic pathology through machine learning approach on autopsy data: A pilot study[J]. Clin Ter,2024,175[S1(4)]:23-27. doi:10. 7417/CT.2024.5078 . |
| [41] | EBERT L C, HEIMER J, SCHWEITZER W, et al. Automatic detection of hemorrhagic pericardial effusion on PMCT using deep learning — A feasibility study[J]. Forensic Sci Med Pathol,2017,13(4):426-431. doi:10.1007/s12024-017-9906-1 . |
| [42] | CAO Y J, MA Y G, VIEIRA D N, et al. A potential method for sex estimation of human skeletons using deep learning and three-dimensional surface scanning[J]. Int J Legal Med,2021,135(6):2409-2421. doi:10. 1007/s00414-021-02675-z . |
| [43] | KETSEKIOULAFIS I, FILANDRIANOS G, KATSOS K, et al. Artificial intelligence in forensic sciences: A systematic review of past and current applications and future perspectives[J]. Cureus,2024,16(9):e70363. doi:10.7759/cureus.70363 . |
| [44] | WANKHADE T D, INGALE S W, MOHITE P M, et al. Artificial intelligence in forensic medicine and toxicology: The future of forensic medicine[J]. Cureus,2022,14(8):e28376. doi:10.7759/cureus.28376 . |
| [45] | EDMOND G, MARTIRE K. Forensic science in criminal courts: The latest scientific insights[J]. Aust Bar Rev,2016,42(3):367-384. |
| [46] | DE BOER H H, BLAU S, DELABARDE T, et al. The role of forensic anthropology in disaster victim identification (DVI): Recent developments and future prospects[J]. Forensic Sci Res,2018,4(4):303-315. doi:10.1080/20961790.2018.1480460 . |
| [47] | NA J Y. Estimation of the post-mortem interval using microRNA in the bones[J]. J Forensic Leg Med,2020,75:102049. doi:10.1016/j.jflm.2020.102049 . |
| [48] | GARCÉS-PARRA C, SALDIVIA P, HERNÁNDEZ M, et al. Enhancing late postmortem interval prediction: A pilot study integrating proteomics and machine learning to distinguish human bone remains over 15 years[J]. Biol Res,2024,57(1):75. doi:10. 1186/s40659-024-00552-8 . |
| [49] | WOOD P L, SHIRLEY N R. Lipidomics analysis of postmortem interval: Preliminary evaluation of human skeletal muscle[J]. Metabolomics,2013,3(3):127. doi:10.4172/2153-0769.1000127 . |
| [50] | STATHEROPOULOS M, AGAPIOU A, SPILIO-POULOU C, et al. Environmental aspects of VOCs evolved in the early stages of human decomposition[J]. Sci Total Environ,2007,385(1/2/3):221-227. doi:10.1016/j.scitotenv.2007.07.003 . |
| [51] | 王琪,林汉成,徐纪茹,等. 死亡时间推断最新研究与展望[J].法医学杂志,2018,34(5):459-467. doi:10.12116/j.issn.1004-5619.2018.05.002 . |
| WANG Q, LIN H C, XU J R, et al. Current research and prospects on postmortem interval estimation[J]. Fayixue Zazhi,2018,34(5):459-467. | |
| [52] | ZHAO J, LIU C, HU S L, et al. Microwave digestion-vacuum filtration-automated scanning electron microscopy as a sensitive method for forensic diatom test[J]. Int J Legal Med,2013,127(2):459-463. doi:10.1007/s00414-012-0756-9 . |
| [53] | ZHAO J, MA Y B, LIU C, et al. A quantitative comparison analysis of diatoms in the lung tissues and the drowning medium as an indicator of drowning[J]. J Forensic Leg Med,2016,42:75-78. doi:10.1016/j.jflm.2016.05.021 . |
| [54] | TAMBUZZI S, GENTILE G, ZOIA R. Forensic diatom analysis: Where do we stand and what are the latest diagnostic advances?[J]. Diagnostics (Basel),2024,14(20):2302. doi:10.3390/diagnostics142 02302 . |
| [55] | ZHOU Y Y, CAO Y J, HUANG J, et al. Research advances in forensic diatom testing[J]. Forensic Sci Res,2020,5(2):98-105. doi:10.1080/20961 790.2020.1718901 . |
| [56] | PEDRAZA A, BUENO G, DENIZ O, et al. Automated diatom classification (part B): A deep lear-ning approach[J]. Appl Sci,2017,7(5):460. doi:10. 3390/app7050460 . |
| [57] | ZHOU Y Y, ZHANG J, HUANG J, et al. Digital whole-slide image analysis for automated diatom test in forensic cases of drowning using a convolutional neural network algorithm[J]. Forensic Sci Int,2019,302:109922. doi:10.1016/j.forsciint.2019.109922 . |
| [58] | TYR A, LUNETTA P, ZILG B, et al. The medico-legal interpretation of diatom findings for the diagnosis of fatal drowning: A systematic review[J]. Int J Legal Med,2025,139(2):729-746. doi:10.1007/s00414-024-03397-8 . |
| [59] | 刘超,赵建,徐曲毅. 水中尸体溺死诊断的机遇与挑战[J].法医学杂志,2022,38(1):1-2. doi:10.12116/j.issn.1004-5619.2021.411211 . |
| LIU C, ZHAO J, XU Q Y. Opportunities and challenges in the diagnosis of postmortem drowning in water[J]. Fayixue Zazhi,2022,38(1):1-2. | |
| [60] | 刘超,丛斌. 水中尸体溺死诊断的回顾与展望[J].法医学杂志,2022,38(1):3-13. doi:10.12116/j.issn.1004-5619.2021.410625 . |
| LIU C, CONG B. Review and prospect of diagnosis of drowning deaths in water[J]. Fayixue Zazhi,2022,38(1):3-13. | |
| [61] | GARLAND J, PHILCOX W, MCCARTHY S, et al. Postmortem tryptase level in 120 consecutive nonanaphylactic deaths: Establishing a reference range as <23 μg/L[J]. Am J Forensic Med Pathol,2019, 40(4):351-355. doi:10.1097/paf.0000000000000515 . |
| [62] | HELDRING N, KAHN L, ZILG B. Fatal anaphylactic shock: A review of postmortem biomarkers and diagnostics[J]. Forensic Sci Int,2021,323:110814. doi:10.1016/j.forsciint.2021.110814 . |
| [63] | DEL DUCA F, MANETTI A C, MAIESE A, et al. Death due to anaphylactic reaction: The role of the forensic pathologist in an accurate postmortem diagnosis[J]. Medicina (Kaunas),2023,59(12):2184. doi:10.3390/medicina59122184 . |
| [64] | 殷坤,郑大,成建定. 从理论到实践:法医病理学心脏性猝死研究新动态[J].法医学杂志,2017,33(5):455-456. doi:10.3969/j.issn.1004-5619.2017.05.001 . |
| YIN K, ZHENG D, CHENG J D. From theory to practice: New trends in the study of sudden cardiac death in forensic pathology[J]. Fayixue Zazhi,2017,33(5):455-456. | |
| [65] | MA X Y, WANG T Q, TANG K S, et al. Study on forensic diagnostic biomarker combination for acute ischemia heart disease based on postmortem biochemistry[J]. J Forensic Leg Med,2025,110:102825. doi:10.1016/j.jflm.2025.102825 . |
| [66] | MOLDOVAN R, ICHIM V A, BELIȘ V. Recent perspectives on the early expression immunohistochemical markers in post-mortem recognition of myocardial infarction[J]. Leg Med (Tokyo),2023,64:102293. doi:10.1016/j.legalmed.2023.102293 . |
| [67] | LOU J Q, CHEN H Y, HUANG S N, et al. Update on risk factors and biomarkers of sudden unexplained cardiac death[J]. J Forensic Leg Med,2022,87:102332. doi:10.1016/j.jflm.2022.102332 . |
| [68] | 何享旺,李林峰,张付,等. 不明原因心脏性猝死相关分子标志物研究进展及法医学应用[J].法医学杂志,2021,37(5):687-693. doi:10.12116/j.issn.1004-5619.2020.400507 . |
| HE X W, LI L F, ZHANG F, et al. Research progress on molecular markers related to unexplained sudden cardiac death and its forensic application[J]. Fayixue Zazhi,2021,37(5):687-693. | |
| [69] | NAPOLETANO G, MARINELLI E, PALLA L, et al. Expression of RIPK-1 and S-100B in traumatic brain injury — Exploring a forensic cases series[J]. Int J Legal Med,2025,139(3):1105-1112. doi:10.1007/s00414-024-03400-2 . |
| [70] | ASKEN B M, TANNER J A, VANDEVREDE L, et al. Multi-modal biomarkers of repetitive head impacts and traumatic encephalopathy syndrome: A clinicopathological case series[J]. J Neurotrauma,2022,39(17/18):1195-1213. doi:10.1089/neu.2022. 0060 . |
| [71] | ONDRUSCHKA B, WOYDT L, BERNHARD M, et al. Post-mortem in situ stability of serum markers of cerebral damage and acute phase response[J]. Int J Legal Med,2019,133(3):871-881. doi:10. 1007/s00414-018-1925-2 . |
| [72] | SACCO M A, GUALTIERI S, TARALLO A P, et al. The role of GFAP in post-mortem analysis of traumatic brain injury: A systematic review[J]. Int J Mol Sci,2024,26(1):185. doi:10.3390/ijms 26010185 . |
| [73] | ZWIRNER J, KULAKOFSKY R, FITZEK A, et al. Forensic biomarkers of lethal traumatic brain injury[J]. Int J Legal Med,2022,136(3):871-886. doi:10.1007/s00414-022-02785-2 . |
| [74] | HAMDY N, EIDE S, SUN H S, et al. Animal models for neonatal brain injury induced by hypoxic ischemic conditions in rodents[J]. Exp Neurol,2020,334:113457. doi:10.1016/j.expneurol.2020.113457 . |
| [75] | SACCO M A, AQUILA I. Post mortem molecular biomarkers of asphyxia: A literature review[J]. Int J Mol Sci,2024,25(21):11607. doi:10.3390/ijms 252111607 . |
| [76] | 刘成刚,陆玉军,高静,等. 有限元方法在交通损伤中的应用及其法医学前景[J].法医学杂志,2016,32(3):196-199. doi:10.3969/j.issn.1004-5619.2016.03.009 . |
| LIU C G, LU Y J, GAO J, et al. Application of finite element method in traffic injury and its prospect in forensic science[J]. Fayixue Zazhi,2016,32(3):196-199. | |
| [77] | DELTEIL C, MANLIUS T, BAILLY N, et al. Traumatic axonal injury: Clinic, forensic and biomechanics perspectives[J]. Leg Med (Tokyo),2024,70:102465. doi:10.1016/j.legalmed.2024.102465 . |
| [78] | 袁红敏,高树辉. 基于有限元方法的法医损伤可视化分析与应用探索[J].西安交通大学学报(医学版),2025,46(1):1-11. doi:10.7652/jdyxb202501001 . |
| YUAN H M, GAO S H. Forensic injury visualization analysis and its application using the finite element method[J]. Xi’an Jiaotong Daxue Xuebao (Medical sciences),2025,46(1):1-11. | |
| [79] | YANG X G, CHEN X Z, ZHANG F, et al. Case analysis and finite element analysis of adult head skull fractures in people run over by motor vehicles[J]. Forensic Sci Res,2025,10(2):owaf007. doi:10.1093/fsr/owaf007 . |
| [80] | 刘茜,王荣帅,屈国强,等. 新型冠状病毒肺炎死亡尸体系统解剖大体观察报告[J].法医学杂志,2020,36(1):21-23. doi:10.12116/j.issn.1004-5619.2020.01.005 . |
| LIU Q, WANG R S, QU G Q, et al. Gross examination report of a COVID-19 death autopsy[J]. Fayi-xue Zazhi,2020,36(1):21-23. | |
| [81] | 王慧君,杜思昊,岳霞,等. 冠状病毒肺炎的病理学特征回顾与展望[J].法医学杂志,2020,36(1):16-20. doi:10.12116/j.issn.1004-5619.2020.01.004 . |
| WANG H J, DU S H, YUE X, et al. Review and prospect of pathological features of corona virus disease[J]. Fayixue Zazhi,2020,36(1):16-20. | |
| [82] | 毛丹蜜,周南,郑大,等. 新型冠状病毒感染相关死亡的法医病理学检验建议指南(试行稿)[J].法医学杂志,2020,36(1):6-15. doi:10.12116/j.issn.1004-5619.2020.01.003 . |
| MAO D M, ZHOU N, ZHENG D, et al. Guide to the forensic pathology practice on death cases related to corona virus disease 2019 (COVID-19)(Trial draft)[J]. Fayixue Zazhi,2020,36(1):6-15. | |
| [83] | 邱海,王慧君,陈倩玲,等. 新型冠状病毒疫情期法医学尸体检验的安全防护[J].法医学杂志,2020,36(1):24-28. doi:10.12116/j.issn.1004-5619.2020.01.006 . |
| QIU H, WANG H J, CHEN Q L, et al. Safety protection of forensic examination during the epidemic of COVID-19[J]. Fayixue Zazhi,2020,36(1):24-28. | |
| [84] | 丛斌. 丛斌院士:新型冠状病毒感染致死者尸体解剖工作亟待加强[J].法医学杂志,2020,36(1):4-5. doi:10.12116/j.issn.1004-5619.2020.01.002 . |
| CONG B. Academician Cong Bin: Autopsy of SARS-CoV-2 infection is needed to be strengthened[J]. Fayixue Zazhi,2020,36(1):4-5. | |
| [85] | SPERHAKE J P. Autopsies of COVID-19 deceased? Absolutely![J]. Leg Med (Tokyo),2020,47:101769. doi:10.1016/j.legalmed.2020.101769 . |
| [86] | KETEN D, OKDEMIR E, KETEN A. Precautions in postmortem examinations in Covid-19-related deaths: Recommendations from Germany[J]. J Forensic Leg Med,2020,73:102000. doi:10.1016/j.jflm. 2020.102000 . |
| [87] | MAIESE A, MANETTI A C, LA RUSSA R, et al. Autopsy findings in COVID-19-related deaths: A literature review[J]. Forensic Sci Med Pathol,2021,17(2):279-296. doi:10.1007/s12024-020-00310-8 . |
| [88] | GONZÁLEZ-ARNAY E, MARTÍN-OLIVERA R, QUINTERO-QUINTERO Y C, et al. Proposal for a harmonized protocol for COVID-19 screening and necropsy in forensic sciences facilities[J]. J Forensic Leg Med,2020,76:102067. doi:10.1016/j.jflm.2020.102067 . |
| [89] | BELSEY S L, FLANAGAN R J. Postmortem biochemistry: Current applications[J]. J Forensic Leg Med,2016,41:49-57. doi:10.1016/j.jflm.2016.04.011 . |
| [90] | LUNA A. Is postmortem biochemistry really useful? Why is it not widely used in forensic patho-logy?[J]. Leg Med (Tokyo),2009,11(S1):27-30. doi:10.1016/j.legalmed.2009.02.040 . |
| [91] | MAEDA H, ZHU B L, ISHIKAWA T, et al. Significance of postmortem biochemistry in determining the cause of death[J]. Leg Med (Tokyo),2009,11(S1):46-49. doi:10.1016/j.legalmed.2009.01.048 . |
| [92] | ARTHURS O J, HUTCHINSON J C, SEBIRE N J. Current issues in postmortem imaging of perinatal and forensic childhood deaths[J]. Forensic Sci Med Pathol,2017,13(1):58-66. doi:10.1007/s12024-016-9821-x . |
| [93] | ONDRUSCHKA B, SEIFERT D, ROTERMUND N, et al. A critical review of “Artificial intelligence in the practice of forensic medicine: A scoping review”[J]. Int J Leg Med,2024,138(4):1667-1668. doi:10.1007/s00414-024-03209-z . |
| [94] | GALANTE N, COTRONEO R, FURCI D, et al. Applications of artificial intelligence in forensic sciences: Current potential benefits, limitations and perspectives[J]. Int J Legal Med,2023,137(2):445-458. doi:10.1007/s00414-022-02928-5 . |
| [95] | AYUB A M, SYED F R, PENG H Q. Breaking barriers: The admissibility of forensic evidence in US courts and the struggles with cutting-edge science[J]. Sci Justice,2025,65(6):101355. doi:10.1016/j.scijus.2025.101355 . |
| [96] | MUNRO N A R. Should medical experts giving evidence in criminal trials adhere to EFNSI forensic guidelines in evaluative reporting[J]. Forensic Sci,2025,5(1):13. doi:10.3390/forensicsci5010013 . |
| [97] | SABLONE S, CARDINALE A N, GORINI E, et al. Beyond the distance between juridic and scientific decision-making process: An evidence-based prediction algorithm for professional liability assessment in healthcare-associated infections[J]. J Forensic Leg Med,2024,107:102762. doi:10.1016/j.jflm.2024.102762 . |
| [98] | MANGIN P, BONBLED F, VÄLI M, et al. European Council of Legal Medicine (ECLM) accreditation of forensic pathology services in Europe[J]. Int J Legal Med,2015,129(2):395-403. doi:10.1007/s00414-014-1041-x . |
| [99] | PETERSON G F, CLARK S C, National Association of Medical Examiners. Forensic autopsy performance standards[J]. Am J Forensic Med Pathol,2006,27(3):200-225. doi:10.1097/01.paf.0000243580.43 150.3c . |
| [100] | CUSACK D A. The European Council of Legal and Forensic Medicine: Its role and work in progressing harmonised standards and recommendations in Forensic and Legal Medicine investigation procedures, training and teaching through pursuit of internationally agreed and peer-reviewed published guidelines[J]. Int J Legal Med,2025,139(4):1781-1785. doi:10.1007/s00414-025-03446-w . |
| [101] | GORTON A J, STARK M M. Quality standards in forensic medicine[J]. J Forensic Leg Med,2022,92:102436. doi:10.1016/j.jflm.2022.102436 . |
| [102] | KIM M Y, CHEONG H, KIM H S. Proposal of the autopsy guideline for infectious diseases: Preparation for the post-COVID-19 era (abridged translation)[J]. J Korean Med Sci,2020,35(33):e310. doi:10.3346/jkms.2020.35.e310 . |
| [103] | DEDOUIT F, DUCLOYER M, ELIFRITZ J, et al. The current state of forensic imaging — Perspectives[J]. Int J Leg Med,2025,139(6):2819-2827. doi:10.1007/s00414-025-03466-6 . |
| [104] | MASKELL G, WELLS M. RCR/RCPath statement on standards for medico-legal post-mortem cross-sectional imaging in adults[EB/OL]. (2012-10-12)[2025-09-13]. . |
| [105] | RUTTY G N, BIGGS M J P, BROUGH A, et al. Remote post-mortem radiology reporting in disaster victim identification: Experience gained in the 2017 Grenfell Tower disaster[J]. Int J Legal Med,2020,134(2):637-643. doi:10.1007/s00414-019-02109-x . |
| [106] | BAJANOWSKI T, VEGE Å, BYARD R W, et al. Sudden infant death syndrome (SIDS) — Standardised investigations and classification: Recommendations[J]. Forensic Sci Int,2007,165(2/3):129-143. doi:10.1016/j.forsciint.2006.05.028 . |
| [107] | MITTAL N, BYARD R W, DAHLSTROM J E. A practical guide to placental examination for forensic pathologists[J]. Forensic Sci Med Pathol,2020,16(2):295-312. doi:10.1007/s12024-019-00214-2 . |
| [108] | PIETTE M H A, DE LETTER E A. Drowning: Still a difficult autopsy diagnosis[J]. Forensic Sci Int,2006,163(1/2):1-9. doi:10.1016/j.forsciint.2004.10.027 . |
| [109] | BASSO C, BURKE M, FORNES P, et al. Guidelines for autopsy investigation of sudden cardiac death[J]. Virchows Arch,2008,452(1):11-18. doi:10.1007/s00428-007-0505-5 . |
| [110] | BROUGH A L, MORGAN B, RUTTY G N. Postmortem computed tomography (PMCT) and disaster victim identification[J]. Radiol Med,2015,120(9):866-873. doi:10.1007/s11547-015-0556-7 . |
| [111] | 侯一平. 法医学科的建设与发展[J].法医学杂志,2025,41(1):1-4. doi:10.12116/j.issn.1004-5619.2025.550202 . |
| HOU Y P. Construction and development of forensic medicine[J]. Fayixue Zazhi,2025,41(1):1-4. | |
| [112] | 刘鑫,丛斌. 我国正迎来高素质法医学人才培养的契机[J].中国法医学杂志,2024,39(3):265-266. doi:10.13618/j.issn.1001-5728.2024.03.001 . |
| LIU X, CONG B. China is seizing the opportunity for cultivating high-quality forensic science talents[J]. Zhongguo Fayixue Zazhi,2024,39(3):265-266. | |
| [113] | SCARPAZZA C, ZANGROSSI A. Artificial intelligence in insanity evaluation. Potential opportunities and current challenges[J]. Int J Law Psychiatry,2025,100:102082. doi:10.1016/j.ijlp.2025.102082 . |
| [114] | DINIS-OLIVEIRA R J, AZEVEDO R M S. ChatGPT in forensic sciences: A new Pandora’s box with advantages and challenges to pay attention[J]. Forensic Sci Res,2023,8(4):275-279. doi:10.1093/fsr/owad039 . |
| [115] | CHANGO X, FLOR-UNDA O, GIL-JIMÉNEZ P, et al. Technology in forensic sciences: Innovation and precision[J]. Technologies,2024,12(8):120. doi:10.3390/technologies12080120 . |
| [116] | GUALTIERI S, SACCO M A, GALASSI F M, et al. The fascinating world of forensic sciences: Multidisciplinary approaches in human remains and the role of forensic pathology in Calabrian experience[J]. Cureus,2024,16(6):e62209. doi:10.7759/cureus.62209 . |
| [117] | MALIK P, DAWAR H, PATEL P, et al. Enhancing forensic analysis of digital evidence using machine learning: Techniques, applications, and challenges[J]. Int J Innov Res Eng Multidiscip Phys Sci,2024, 12(5):230988. doi:10.37082/ijirmps.v12.i5.230988 . |
| [118] | ALAFER F. Emerging imaging technologies in forensic medicine: A systematic review of innovations, ethical challenges, and future directions[J]. Diagnostics (Basel),2025,15(11):1410. doi:10.3390/diagnostics15111410 . |
| [119] | UBELAKER D H, SHAMLOU A, KUNKLE A. Contributions of forensic anthropology to positive scientific identification: A critical Review[J]. Forensic Sci Res,2018,4(1):45-50. doi:10.1080/20961790. 2018.1523704 . |
| [120] | 丛斌. 法医学科学技术体系基本架构[J].中国法医学杂志,2024,39(1):5-7. doi:10.13618/j.issn.1001-5728.2024.01.001 . |
| CONG B. Basic framework of science and techno-logy system in the field of forensic medicine[J]. Zhongguo Fayixue Zazhi,2024,39(1):5-7. | |
| [121] | 《环境损害致人身伤害司法鉴定技术导则》编写组. 《环境损害致人身伤害司法鉴定技术导则》的编制与实施[J].法医学杂志,2020,36(4):470-473. doi:10.12116/j.issn.1004-5619.2020.04.006 . |
| The drafting group of Guidelines for Forensic Investigation of Human Body Injury Caused by Environmental Damage. Compilation and implementation of Guidelines for Forensic Investigation of Human Body Injury Caused by Environmental Damage [J]. Fayixue Zazhi,2020,36(4):470-473. | |
| [122] | 刘宁国. 法医在伤害预防与控制中的定位与展望[J].伤害医学(电子版),2023,12(2):1-6. doi:10.3868/j.issn.2095-1566.2023.02.001 . |
| LIU N G. Position and prospect of forensic medicine in injury prevention and control[J]. Shanghai Yixue (Electronic edition),2023,12(2):1-6. |
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