[1] Goh BT, Lee S, Tideman H, et al. Mandibular reconstruction in adults: a review [J]. Int J Oral Maxillofac Surg, 2008, 37(7)∶597-605 [2] 鄢荣曾,骆丹媚,秦晓宇,等.3D打印制作个性化下颌骨三维网状修复体支架数字化建模方法的研究[J].中华口腔医学杂志,2016,51(5)∶280-285 [3] 张云绮,贾保军,敖建华,等.3D打印技术在下颌骨缺损修复中应用的初步临床研究[J].口腔医学研究,2016,32(5)∶517-520 [4] 李鹏,梁瑞,申龙朵,等.应用Mimics和ANSYS软件建立下颌骨三维有限元模型的方法学研究[J].实用口腔医学杂志,2012,28(6)∶709-713 [5] 刘峰,黄迪炎,马杰,等.下颌骨缺损钛重建板修复的生物力学分析[J].中国组织工程研究,2010,14(35):6504-6507 [6] Li P, Shen L, Li J, et al. Optimal design of an individual endoprosthesis for the reconstruction of extensive mandibular defects with finite element analysis [J]. J Craniomaxillofac Surg, 2014, 42 (1)∶73-78 [7] Li P, Tang Y, Li J, et al. Establishment of sequential software processing for a biomechanical model of mandibular reconstruction with custom-made plate-computer methods and programs in biomedicine [J]. Comput Methods Programs Biomed, 2013, 111(3)∶642-649 [8] Roesler CRM, Horn FJ, Moré ADO, et al. A biomechanical analysis of titanium miniplates used for treatment of mandible condylar fracture with the finite element method [J]. J Medi Imag Health Info, 2014, 4(1)∶106-112 [9] 甄恩明,吴昌敬,邵军.双侧上颌骨缺损颧种植体修复的有限元探讨[J].中国口腔种植学杂志,2016,21(3)∶107-110 [10] 肖燕,沈凯奇.3D打印纤维桩修复不同形态根管的有限元分析[J].口腔医学研究,2017,33(3)∶273-277 [11] 李晓娜,刘洋,Hong Guan.不同临床设计的ERA附着体义齿修复下颌牙列游离端缺损的三维有限元分析[J].实用口腔医学杂志,2017,33(1)∶95-99 [12] 姚春燕,张伟,李矿伟,等.基于有限元分区式多孔种植体设计研究[J].口腔医学研究,2017,33(9)∶913-915 [13] 龚振宇,李国华,许瑞杰,等.下颌骨缺损个体化修复体的应力分析与优化设计[J].中国组织工程研究,2011,15(39)∶7242-7246 [14] Ow A, Tan W, Pienkowski L. Mandibular reconstruction using a custom-made titanium prosthesis: a case report on the use of virtual surgical planning and computer-aided design/computer-aided manufacturing [J]. Craniomaxill Trau Recon, 2016, 9(3)∶246 [15] Yamada H, Nakaoka K, Sonoyama T, et al. Clinical usefulness of mandibular reconstruction using custom-made titanium mesh tray and autogenous particulate cancellous bone and marrow harvested from tibia and/or Ilia [J]. J Craniofacial Surg, 2016, 27(1)∶e168-e169 [16] Chen YD, Guo-Qiang MA, Shang DH, et al. Biomechanical analysis of mandible based on ABAQUS [J]. J Northeastern University, 2014, 35(3)∶423-428 [17] Pinheiro M, Alves JL. The feasibility of a custom-made endoprosthesis in mandibular reconstruction: Implant design and finite element analysis [J]. J Craniomaxillofac Surg, 2015, 43(10)∶2116-2128 [18] Chanchareonsook N, Tideman H, Lee S, et al. Mandibular reconstruction with a bioactive-coated cementless Ti6Al4V modular endoprosthesis in Macaca fascicularis [J]. Int J Oral Maxillofac Surg, 2014, 43(6)∶758-768 [19] Dahake S, Kuthe A, Kulkarni S, et al. Finite element analysis of customized implant in mandibular reconstruction after tumor resection with and without using customized surgical osteotomy guide [J]. Int J Med Robot. 2018,14(1) [20] Xu X, Luo D, Guo C, et al. An individually designed custom-made mandibular condyle prosthesis using selective laser melting: finite element analysis [J]. Inter J Oral Maxillofa Surg, 2017, 46(1)∶239 [21] Wong RC, Tideman H, Merkx MA, et al. Review of biomechanical models used in studying the biomechanics of reconstructed mandibles [J]. Inter J Oral Maxillofa Surg, 2011, 40(4)∶393 |