[1] 刘杭飞, 包霆威, 赵文权,等. 改良数字化导板技术在腓骨瓣重建下颌骨缺损中的应用[J]. 浙江创伤外科, 2019, 24(2): 220-223. [2] 楼超. 血管化骨瓣重建下颌骨缺损及术后髁突移位回顾性研究[D]. 上海:上海交通大学, 2019. [3] 嵇海虹, 董强.下颌骨缺损腓骨瓣修复不同固定方式的有限元分析[J]. 中国组织工程研究, 2020, 24(24): 3821-3827. [4] Noguchi T, Sarukawa S, Tsuchiya Y, et al.Evaluation of postoperative changes in vascularized iliac bone grafts used for mandibular reconstruction[J]. Int J Oral Maxillofac Surg, 2018, 47(8): 990-997. [5] Hidalgo DA.Fibula free flap: a new method of mandible reconstruction[J]. Plast Reconstr Surg, 1989, 84(1): 71-79. [6] Kaoutzanis C, Yu J, Lee Z, et al.Mandibular reconstruction with free fibula flap for medication-related osteonecrosis of the jaw in patients with multiple myeloma[J]. Plast Reconstr Surg Glob Open, 2020, 8(10): e3186-e3190. [7] Sabeti A, Karimizadeh Z, Rafatjou R.Maximum equivalent stress induced and the displacement of the developing permanent first molars after the premature loss of primary second molars: A finite element analysis[J]. Dent Med Probl, 2020, 57(4): 401-409. [8] 尹璐璐. 人体颌面部软硬组织三维建模及其有限元分析 [D]. 西安: 第四军医大学, 2010. [9] Ji B, Wang C, Liu L, et al.A biomechanical analysis of titanium miniplates used for treatment of mandibular symphyseal fractures with the finite element method[J]. Oral Surg Oral Med Oral Pathol Oral Radiol Endod, 2010, 109(3): e21-e27. [10] Savoldelli C, Bouchard P, Loudad R, et al.Stress distribution in the temporo-mandibular joint discs during jaw closing: a high-resolution three-dimensional finite-element model analysis[J]. Surg Radiol Anat, 2012, 34(5): 405-413. [11] Rowe A, Snively E. Biomechanics of juvenile tyrannosaurid mandibles and their implications for bite force: evolutionary biology [J]. Anat Rec (Hoboken), 2021 Feb 15.[Online ahead of print]. [12] Pobloth A, Checa S, Razi H, et al. Mechanobiologically optimized 3D titanium-mesh scaffolds enhance bone regeneration in critical segmental defects in sheep[J]. Sci Transl Med, 2018,10(423): eaam8828. [13] 郭海波, 汤春波, 周储伟,等.上颌无牙颌固定修复中5颗不同倾斜角度种植体的三维有限元分析[J]. 口腔医学, 2020, 40(10): 894-899. [14] Liu J, Pan S, Dong J, et al.Influence of implant number on the biomechanical behaviour of mandibular implant-retained/supported overdentures: a three-dimensional finite element analysis[J]. J Dent, 2013, 41(3): 241-249. [15] 何少波, 刘继超, 杨立峰,等.胫后肌腱转位治疗足下垂的有限元分析[J]. 中国组织工程研究, 2021, 25(15): 2334-2340. [16] Zannoni C, Mantovani R, Viceconti M.Material properties assignment to finite element models of bone structures: a new method[J]. Med Eng Phys, 1998, 20(10): 735-740. [17] Pavlychuk T, Chernogorskyi D, Chepurnyi Y, et al.Biomechanical evaluation of type p condylar head osteosynthesis using conventional small-fragment screws reinforced by a patient specific two-component plate[J]. Head Face Med, 2020, 16(1): 25-39. [18] 王爽, 孙江, 于雁云. 基于CBCT图像的颌骨及牙列有限元建模方法研究[J]. 实用口腔医学杂志, 2019, 35(1): 55-59. [19] 庞亚倩, 张凯, 刘亮,等.下颌骨囊性病变的三维有限元模型生物力学分析[J]. 南方医科大学学报, 2020, 40(6): 911-915. [20] 孙静, 周波, 来桂林,等.下颌骨三维有限元模型的建立及优化设计研究[J]. 中国医疗器械信息, 2020, 26(1): 41-42. [21] 张岳, 乔海, 李幸芳,等.颌骨的逆向建模及咀嚼肌牵动的有限元分析[J]. 科技与创新, 2020, 7(22): 1-3. [22] 胡凯, 柳春明, 侯康林,等.利用CT和MRI融合技术确定咀嚼肌三维肌力向量[J]. 解放军医学杂志, 2002, 27(5):398-400. [23] 高慧. 用于下颌骨节断性缺损修复的三维网状钛支架的生物力学研究 [D]. 重庆: 重庆医科大学, 2020. [24] Kucukguven M, Akkocaoglu M.Finite element analysis of stress distribution on reconstructed mandibular models for autogenous bone grafts[J]. Technol Health Care, 2020, 28(3): 249-258. [25] Xu X, Cheng K, Liu Y, et al.Experimental validation of finite element simulation of a new custom-designed fixation plate to treat mandibular angle fracture[J]. Biomed Eng Online, 2021, 20(1): 15-27. [26] Prada Madrid J, Gómez Prada D, Díaz López D, et al.Complication after mandibular reconstruction with fibula free flap in a patient with hemifacial microsomia[J]. J Craniofac Surg, 2021, 32(3): 1083-1086. [27] Huang T, Kuo P, Liu C.Comparison of surgical outcomes between primary plate and fibular flap transfer for reconstruction of segmental mandibular defects[J]. Microsurg, 2021, 41(4): 327-334. [28] 王育新, 王志勇, 卢明星,等.系列数字化导板在腓骨肌皮瓣修复下颌骨缺损中的初步应用[J]. 口腔医学研究, 2017, 33(5): 542-545. [29] Bujtár P, Simonovics J, Váradi K, et al.The biomechanical aspects of reconstruction for segmental defects of the mandible: a finite element study to assess the optimisation of plate and screw factors[J]. J Craniomaxillofac Surg, 2014, 42(6): 855-862. |