[1] Milgram P, Kishino F.A taxonomy of mixed reality visual displays[J]. IEICE Transact Inform Syst, 1994, 77(12): 1321-1329. [2] Azuma R, Baillot Y, Behringer R, et al.Recent advances in augmented reality[J]. IEEE Comput Graph Appl, 2001, 21(6): 34-47. [3] 黄进, 韩冬奇,陈毅能, 等. 混合现实中的人机交互综述[J]. 计算机辅助设计与图形学学报, 2016, 28(6): 869-880. [4] Cho KH, Papay FA, Yanof J, et al. Mixed reality and 3D printed models for planning and execution of face transplantation[J]. Ann Surg, 2020 Mar 27 [Online ahead of print]. [5] Mohammad AG, Mehrdad H, Mehrdad N, et al.Augmented reality for breast tumors visualization[J]. Conf Proc IEEE Eng Med Biol Soc, 2016, 2016: 4391-4394. [6] Saito Y, Sugimoto M, Imura S, et al.Intraoperative 3D Hologram support with mixed reality techniques in liver surgery[J]. Ann Surg, 2020, 271(1): e4-e7. [7] Gao Y, Tan K, Sun J, et al.Application of mixed reality technology in visualization of medical operations[J]. Chin Med Sci J, 2019, 34(2): 103-109. [8] Chen XJ, Xu L, Wang YP, et al.Development of a surgical navigation system based on augmented reality using an optical see-through head-mounted display[J]. J Biomed Inform, 2015, 55:124-131. [9] Ewurum CH, Guo YY, Pagnha S, et al.Surgical navigation in orthopedics: workflow and system review[J]. Adv Exp Med Biol, 2018, 1093: 47-63. [10] Kubicek J, Tomanec F, Cerny M, et al.Recent trends, technical concepts and components of computer-assisted orthopedic surgery systems: a comprehensive review[J]. Sensors (Basel), 2019, 19(23): 5199. [11] Bosc R, Fitoussi A, Hersant B, et al.Intraoperative augmented reality with heads-up displays in maxillofacial surgery: a systematic review of the literature and a classification of relevant technologies[J]. Int J Oral Maxillofac Surg, 2019, 48(1): 132-139. [12] Zhu M, Liu F, Chai G, et al.A novel augmented reality system for displaying inferior alveolar nerve bundles in maxillofacial surgery[J] Sci Rep, 2017, 7: 42365. [13] Rozen WM, Paddle AM, Chubb D, et al.Guiding local perforator flaps with preoperative imaging: revealing perforator anatomy to improve flap design[J]. Plast Reconstr Surg, 2012,130(1): 130-134. [14] Jiang TR, Yu DW, Wang YQ, et al.HoloLens-based vascular localization system: precision evaluation study with a three-dimensional printed model[J]. J Med Internet Res, 2020, 22(4): e16852. [15] Sappenfield JW, Smith WB, Cooper LA, et al.Visualization improves supraclavicular access to the subclavian vein in a mixed reality simulator[J]. Anesth Analg, 2018, 127(1): 83-89. [16] Mitsuno D, Hirota Y, Akamatsu J, et al.Telementoring demonstration in craniofacial surgery with HoloLens, Skype, and three-layer facial models[J]. J Craniofac Surg, 2019, 30(1): 28-32. [17] Condino S, Turini G, Parchi PD, et al.How to build a patient-specific hybrd simulator for orthopaedic open surgery: benefits and limits of mixed-reality using the Microsoft HoloLens[J]. J Healthc Eng, 2018, 2018: 5435097. [18] Tejo-Otero A, Buj-Corral I, Fenollosa-Artés F.3D printing in medicine for preoperative surgical planning: a review[J]. Ann Biomed Eng, 2020, 48(2): 536-555. [19] Jud L, Fotouhi J, Andronic O, et al.Applicability of augmented reality in orthopedic surgery-a systematic review[J]. BMC Musculoskelet Disord, 2020, 21(1): 103-108. [20] Tan WJ, Ge W, Hang YC.Computer assisted system for precise lung surgery based on medical image computing and mixed reality[J]. Health Inf Sci Syst, 2018, 6(1): 10-18. [21] 武雪梅, 刘奇. 基于立体视觉的手术导航光学定位系统[J]. 中国组织工程研究与临床康复, 2011, 15(35): 6584-6587. [22] 贺长宇, 刘越, 王涌天. 用于增强现实手术导航系统的光学-惯性混合跟踪方法[J]. 计算机辅助设计与图形学学报, 2016, 28(3): 513-519. [23] Groves LA, Carnahan P, Allen DR, et al.Accuracy assessment for the co-registration between optical and VIVE head-mounted display tracking[J]. Int J Comput Assist Radiol Surg, 2019, 14(7): 1207-1215. [24] Wang JC, Shen Y, Yang S.A practical marker-less image registration method for augmented reality oral and maxillofacial surgery[J]. Int J Comput Assist Radiol Surg, 2019, 14(5): 763-773. [25] Incekara F, Smits M, Dirven C, et al.Clinical feasibility of a wearable mixed-reality device in neurosurgery[J]. World Neurosurg, 2018, 118: e422-e427. [26] Lee C, Rincon GA, Meyer G, et al.The effects of visual realism on search tasks in mixed reality simulation[J]. IEEE Trans Vis Comput Graph, 2013, 19(4): 547-556. [27] Pepe A, Trotta GF, Mohr-Ziak P.A marker-less registration approach for mixed reality-aided maxillofacial surgery: a pilot evaluation[J]. J Digit Imaging, 2019, 32(6): 1008-1018. [28] Mitsuno D, Ueda K, Hirota Y.Effective application of mixed reality device HoloLens: simple manual alignment of surgical field and holograms[J]. Plast Reconstr Surg, 2019, 143(2): 647-651. [29] Jiang TR, Zhu M, Chai G, et al.Precision of a novel craniofacial surgical navigation system based on augmented reality using an occlusal splint as a registration strategy[J]. Sci Rep, 2019, 9(1): 501-508. [30] Tepper OM, Rudy HL, Lefkowitz A.Mixed reality with HoloLens: where virtual reality meets augmented reality in the operating room[J]. Plast Reconstr Surg, 2017, 140(5): 1066-1070. [31] Vaughan N, Dubey VN, Wainwright TW, et al.A review of virtual reality based training simulators for orthopaedic surgery[J]. Med Eng Phys, 2016, 38(2): 59-71. [32] Huber T, Hadzijusufovic E, Hansen C, et al.Head-mounted mixed-reality technology during robotic-assisted transanal total mesorectal excision[J]. Dis Colon Rectum, 2019, 62(2): 258-261. [33] Lei PF, Su SL, Kong LY, et al.Mixed reality combined with three-dimensional printing technology in total hip arthroplasty: an updated review with a preliminary case presentation[J]. Orthop Surg, 2019, 11(5): 914-920. |