[1] Grob S, Yonkers M, Tao J. Orbital fracture repair [J]. Semin Plast Surg, 2017, 31(1): 31-39. [2] Gart MS, Gosain AK. Evidence-based medicine: Orbital floor fractures [J]. Plast Reconstr Surg, 2014, 134(6): 1345-1355. [3] Boyette JR, Pemberton JD, Bonilla-Velez J. Management of orbital fractures: challenges and solutions [J]. Clin Ophthalmol, 2015, 9: 2127-2137. [4] Sun MT, Wu W, Watanabe A, et al. Orbital blowout fracture location in Japanese and Chinese patients [J]. Jpn J Ophthalmol, 2015, 59(1): 65-69. [5] Reich W, Seidel D, Bredehorn-Mayr T, et al. [Reconstruction of isolated orbital floor fractures with a prefabricated titanium mesh] [J]. Klin Monbl Augenheilkd, 2014, 231(3): 246-255. [6] Aldekhayel S, Aljaaly H, Fouda-Neel O, et al. Evolving trends in the management of orbital floor fractures[J]. J Craniofac Surg, 2014, 25(1): 258-261. [7] Lin J, German M, Wong B. Use of copolymer polylactic and polyglycolic acid resorbable plates in repair of orbital floor fractures [J]. Facial Plast Surg, 2014, 30(5): 581-586. [8] Singare S, Dichen L, Bingheng L, et al. Design and fabrication of custom mandible titanium tray based on rapid prototyping [J]. Med Eng Phys, 2004, 26(8): 671-676. [9] Cohen A, Laviv A, Berman P, et al. Mandibular reconstruction using stereolithographic 3-dimensional printing modeling technology [J]. Oral Surg Oral Med Oral Pathol Oral Radiol Endod, 2009, 108(5): 661-666. [10] Li Y, Jiang Y, Ye B, et al. Treatment of dentofacial deformities secondary to osteochondroma of the mandibular condyle using virtual surgical planning and 3-dimensional printed surgical templates [J]. J Oral Maxillofac Surg, 2016, 74(2): 349-368. [11] Azuma M, Yanagawa T, Ishibashi-Kanno N, et al. Mandibular reconstruction using plates prebent to fit rapid prototyping 3-dimensional printing models ameliorates contour deformity [J]. Head Face Med, 2014, 10: 45. [12] von Rundstedt FC, Scovell JM, Agrawal S, et al. Utility of patient-specific silicone renal models for planning and rehearsal of complex tumour resections prior to robot-assisted laparoscopic partial nephrectomy [J]. BJU Int, 2017, 119(4): 598-604. [13] Punja KG, Kikkawa DO, Morrison VL, et al. Reconstruction of complex orbitocranial deformities using bioresorbable mesh, sterilized orbital models, and in situ contouring [J]. Ophthal Plast Reconstr Surg, 2006, 22(1): 20-24. [14] Antony AK, Chen WF, Kolokythas A, et al. Use of virtual surgery and stereolithography-guided osteotomy for mandibular reconstruction with the free fibula [J]. Plast Reconstr Surg, 2011, 128(5): 1080-1084. [15] Prisman E, Haerle SK, Irish JC, et al. Value of preoperative mandibular plating in reconstruction of the mandible [J]. Head Neck, 2014, 36(6): 828-833. [16] Ishida Y, Takahashi Y, Kitaguchi Y, et al. Orbital floor thickness in adult patients with isolated orbital floor fracture lateral to the infraorbital nerve [J]. J Craniofac Surg, 2016, 27(7): e638-e640. [17] Joos ZP, Patel B. Reversible blindness following orbital fracture repair [J]. Ophthal Plast Reconstr Surg, 2017, 33(3S Suppl 1): S180-S183. [18] Herford AS, Miller M, Lauritano F, et al. The use of virtual surgical planning and navigation in the treatment of orbital trauma [J]. Chin J Traumatol, 2017, 20(1): 9-13. [19] Ogino A, Onishi K, Yamada T. Navigation-assisted bone grafting for blowout fracture [J]. J Craniofac Surg, 2016, 27(2): 328-330. [20] Essig H, Dressel L, Rana M, et al. Precision of posttraumatic primary orbital reconstruction using individually bent titanium mesh with and without navigation: a retrospective study [J]. Head Face Med, 2013, 9: 18. [21] Jacobs CA, Lin AY. A new classification of three-dimensional printing technologies: systematic review of three-dimensional printing for patient-specific craniomaxillofacial surgery [J]. Plast Reconstr Surg, 2017, 139(5): 1211-1220. |