1 |
Blanchard J, Koshal S, Morley S, et al. The use of mixed reality in dentistry[J]. Br Dent J, 2022, 233(4): 261-265.
|
2 |
Heredero S, Falguera MI, Marín A, et al. Virtual planning and mixed reality for the thin anterolateral thigh perforator flap[J]. Plast Reconstr Surg Glob Open, 2022, 10(10): e4567.
|
3 |
Han JJ, Sodnom-Ish B, Eo MY, et al. Accurate mandible reconstruction by mixed reality, 3D printing, and robo-tic-assisted navigation integration[J]. J Craniofac Surg, 2022, 33(6): e701-e706.
|
4 |
Karnatz N, Möllmann HL, Wilkat M, et al. Advances and innovations in ablative head and neck oncologic surgery using mixed reality technologies in personalized medicine[J]. J Clin Med, 2022, 11(16): 4767.
|
5 |
Sasaki T, Dehari H, Ogi K, et al. Application of a mi-xed reality device to oral surgery[J]. Adv Oral Maxillofac Surg, 2022, 8: 100331.
|
6 |
Liu L, Wang X, Guan M, et al. A mixed reality-based na-vigation method for dental implant navigation method: a pilot study[J]. Comput Biol Med, 2023, 154: 106568.
|
7 |
Koyachi M, Sugahara K, Tachizawa K, et al. Enhanced precision in genioplasty: a novel intraoperative spatial repositioning using computer-aided design and manufacturing technology and a holographic mixed reality application[J]. J Clin Med, 2023, 12(23): 7408.
|
8 |
Tang Z, Hu L, Yu Y, et al. Mixed reality combined with surgical navigation in resection of micro- and mini-tumors of the parotid gland: a pilot study[J]. Laryngosco-pe, 2024, 134(4): 1670-1678.
|
9 |
Sugahara K, Koyachi M, Koyama Y, et al. Mixed reality and three dimensional printed models for resection of maxillary tumor: a case report[J]. Quant Imaging Med Surg, 2021, 11(5): 2187-2194.
|
10 |
Bartella AK, Kamal M, Kuhnt T, et al. Mixed reality in oral and maxillofacial surgery: a symbiosis of virtual and augmented reality or a pointless technological gadget[J]. Int J Comput Dent, 2021, 24(1): 65-76.
|
11 |
Sun Q, Mai Y, Yang R, et al. Fast and accurate online calibration of optical see-through head-mounted display for AR-based surgical navigation using Microsoft HoloLens[J]. Int J Comput Assist Radiol Surg, 2020, 15(11): 1907-1919.
|
12 |
Sauer IM, Queisner M, Tang P, et al. Mixed reality in visceral surgery: development of a suitable workflow and evaluation of intraoperative use-cases[J]. Ann Surg, 2017, 266(5): 706-712.
|
13 |
Schlueter B, Kim KB, Oliver D, et al. Cone beam computed tomography 3D reconstruction of the mandibular condyle[J]. Angle Orthod, 2008, 78(5): 880-888.
|
14 |
Nicholas SE, Fu W, Liang AL, et al. Radiation therapy after surgical resection improves outcomes for patients with recurrent pleomorphic adenoma[J]. Adv Radiat Oncol, 2021, 6(3): 100674.
|
15 |
郭陟永, 丁张帆, 苗诚, 等. 混合现实技术在口腔颌面-头颈肿瘤手术中应用的初步探索[J]. 华西口腔医学杂志, 2020, 38(4): 470-474.
|
|
Guo ZY, Ding ZF, Miao C, et al. Application of mixed reality in oromaxillofacial head and neck oncology surgery: a preliminary study[J]. West China J Stomatol, 2020, 38(4): 470-474.
|
16 |
丁张帆, 郭陟永, 苗诚, 等. 基于锥形束CT的三维可视化技术在颌骨囊性病变手术中的应用[J]. 国际口腔医学杂志, 2021, 48(2): 180-186.
|
|
Ding ZF, Guo ZY, Miao C, et al. Application of the cone-beam computed tomography-based three-dimensional visualization technology in the surgery of the jaw cystic lesion[J]. Int J Stomatol, 2021, 48(2): 180-186.
|
17 |
Sun Z, Wong YH, Yeong CH. Patient-specific 3D-prin-ted low-cost models in medical education and clinical practice[J]. Micromachines (Basel), 2023, 14(2): 464.
|
18 |
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.
|
19 |
Pabst A, Goetze E, Thiem DGE, et al. 3D printing in oral and maxillofacial surgery: a nationwide survey among university and non-university hospitals and private practices in Germany[J]. Clin Oral Investig, 2022, 26(1): 911-919.
|
20 |
García-Sevilla M, Moreta-Martinez R, García-Mato D, et al. Surgical navigation, augmented reality, and 3D printing for hard palate adenoid cystic carcinoma en-bloc resection: case report and literature review[J]. Front Oncol, 2022, 11: 741191.
|
21 |
Tang ZN, Hu LH, Soh HY, et al. Accuracy of mixed rea-lity combined with surgical navigation assisted oral and maxillofacial tumor resection[J]. Front Oncol, 2022, 11: 715484.
|
22 |
Galati R, Simone M, Barile G, et al. Experimental setup employed in the operating room based on virtual and mixed reality: analysis of pros and cons in open abdomen surgery[J]. J Healthc Eng, 2020, 2020: 8851964.
|
23 |
Grubert J, Itoh Y, Moser K, et al. A survey of calibration methods for optical see-through head-mounted displays[J]. IEEE Trans Vis Comput Graph, 2018, 24(9): 2649-2662.
|
24 |
Pepe A, Trotta GF, Mohr-Ziak P, et al. A marker-less registration approach for mixed reality-aided maxillofacial surgery: a pilot evaluation[J]. J Digit Imaging, 2019, 32(6): 1008-1018.
|
25 |
Bussink T, Maal T, Meulstee J, et al. Augmented reali-ty guided condylectomy[J]. Br J Oral Maxillofac Surg, 2022, 60(7): 991-993.
|
26 |
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.
|
27 |
Mitsuno D, Ueda K, Hirota Y, et al. Effective application of mixed reality device hololens: simple manual alignment of surgical field and holograms[J]. Plast Reconstr Surg, 2019, 143(2): 647-651.
|
28 |
Yang R, Li C, Tu P, et al. Development and application of digital maxillofacial surgery system based on mixed reality technology[J]. Front Surg, 2022, 8: 719985.
|
29 |
Marcus HJ, Pratt P, Hughes-Hallett A, et al. Comparative effectiveness and safety of image guidance systems in surgery: a preclinical randomised study[J]. Lancet, 2015, 385(): S64.
|