[1] Edge MJ. Surgical placement guide for use with osseointegrated implants [J]. J Prosthet Dent, 1987, 57(6):719-722. [2] D'Haese J, Ackhurst J, Wismeijer D, et al. Current state of the art of computer-guided implant surgery [J]. Periodontol 2000, 2017, 73(1):121-133. [3] 宿玉成.口腔种植学词典[M].第1版,北京:人民卫生出版社, 2020. [4] Brief J, Haβfeld S, Boesecke R, et al. Robot assisted Dental Implantology [J]. Int Poster J Dent Oral Med, 2002, 4(1):109. [5] van Riet TCT, Chin Jen Sem KTH, Ho JTF, et al. Robot technology in dentistry, part two of a systematic review: an overview of initiatives [J]. Dent Mater, 2021, 37(8):1227-1236. [6] Mozer PS. Accuracy and deviation analysis of static and robotic guided implant surgery: A case study [J]. Int J Oral Maxillofac Implants, 2020, 35(5):e86-e90. [7] Bolding SL, Reebye UN. Accuracy of haptic robotic guidance of dental implant surgery for completely edentulous arches [J]. J Prosthet Dent, 2022, 128(4):639-647. [8] Xu Z, Xiao Y, Zhou L, et al. Accuracy and efficiency of robotic dental implant surgery with different human-robot interactions: An in vitro study [J]. J Dent, 2023, 137:104642. [9] Chen W, Al-Taezi KA, Chu CH, et al. Accuracy of dental implant placement with a robotic system in partially edentulous patients: A prospective, single-arm clinical trial [J]. Clin Oral Implants Res, 2023, 34(7):707-718. [10] 白石柱,冯志宏,谢瑞,等.自主式口腔种植机器人手术系统动物体内种植精度的研究[J].中华口腔医学杂志,2021,56(2):170-174. [11] Wang W, Xu H, Mei D, et al. Accuracy of the Yakebot dental implant robotic system versus fully guided static computer-assisted implant surgery template in edentulous jaw implantation: A preliminary clinical study [J]. Clin Implant Dent Relat Res, 2024, 26(2):309-316. [12] Yang J, Li H. Accuracy assessment of robot-assisted implant surgery in dentistry: A systematic review and meta-analysis [J]. J Prosthet Dent, 2024, 132(4):747.e1-747.e15. [13] Terrabuio BR, Carvalho CG, Peralta-Mamani M, et al. Cone-beam computed tomography artifacts in the presence of dental implants and associated factors: an integrative review [J]. Imaging Sci Dent, 2021, 51(2):93-106. [14] Al-Ekrish AA, Ekram M. A comparative study of the accuracy and reliability of multidetector computed tomography and cone beam computed tomography in the assessment of dental implant site dimensions [J]. Dentomaxillofac Radiol, 2011, 40(2):67-75. [15] Soteriou E, Grauvogel J, Laszig R, et al. Prospects and limitations of different registration modalities in electromagnetic ENT navigation [J]. Eur Arch Otorhinolaryngol, 2016, 273(11):3979-3986. [16] West JB, Fitzpatrick JM, Toms SA, et al. Fiducial point placement and the accuracy of point-based, rigid body registration [J]. Neurosurgery, 2001, 48(4):810-817. [17] Zhao Y, Liao Y, Wu X, et al. Effect of the number and distribution of fiducial markers on the accuracy of robot-guided implant surgery in edentulous mandibular arches: An in vitro study [J]. J Dent, 2023, 134:104529. [18] Fan S, Hung K, Bornstein MM, et al. Effect of the configurations of fiducial markers on the accuracy of surgical navigation in zygomatic implant placement: An in vitro study [J]. Int J Oral Maxillofac Implants, 2019, 34(1):85-90. [19] 白石柱,谢瑞,李志文,等.口腔种植机器人在不同视觉系统下的手术精度研究[J].中国口腔种植学杂志,2023,28(3):152-158. [20] Linn TY, Salamanca E, Aung LM, et al. Accuracy of implant site preparation in robotic navigated dental implant surgery [J]. Clin Implant Dent Relat Res, 2023, 25(5):881-891. [21] Ruppin J, Popovic A, Strauss M, et al. Evaluation of the accuracy of three different computer-aided surgery systems in dental implantology: optical tracking vs. stereolithographic splint systems [J]. Clin Oral Implants Res, 2008, 19(7):709-716. [22] 张思慧,蔡琴,林宇轩,等.比较全程引导与半程引导机器人技术对无牙颌种植精度的影响[J].中国口腔种植学杂志,2023,28(4):229-232. [23] Yang S, Chen J, Li A, et al. Accuracy of autonomous robotic surgery for single-tooth implant placement: A case series [J]. J Dent, 2023, 132:104451. [24] Shi JY, Liu BL, Wu XY, et al. Improved positional accuracy of dental implant placement using a haptic and machine-vision-controlled collaborative surgery robot: A pilot randomized controlled trial [J]. J Clin Periodontol, 2023, 51(1):24-32. [25] Chen J, Bai X, Ding Y, et al. Comparison the accuracy of a novel implant robot surgery and dynamic navigation system in dental implant surgery: an in vitro pilot study [J]. BMC Oral Health, 2023, 23(1):179. [26] 皮雪敏,任斌,潘红,等.口腔种植机器人辅助美学区种植即刻修复的临床研究[J].中国口腔种植学杂志,2023,28(3):179-185. [27] Arısan V, Karabuda ZC, Özdemir T. Accuracy of two stereolithographic guide systems for computer-aided implant placement: A computed tomography-based clinical comparative study [J]. J Periodontol, 2010, 81(1):43-51. [28] Schulte W, Kleineikenscheidt H, Schareyka R, et al. Concept and testing of the Tübingen immediate implant [J]. Dtsch Zahnarztl Z, 1978, 33(5):319-325. [29] 林周兴,高跃,张晓蕾,等.自主式口腔种植机器人模型实验的精度分析[J].实用口腔医学杂志,2023,39(4):426-432. [30] 姜雨汐,孙仕晨,万林子,等.口腔种植机器人在即刻种植中的精度研究[J].中国口腔种植学杂志,2023,28(3):165-171. [31] Sun M, Yue C, Stuhr S, et al. Autonomous dental implant robotic system utilization for implant placement and transcrestal sinus elevation using osseodensification: A case report [J]. Int J Periodontics Restorative Dent, 2023. [32] Delgado-Ruiz R, Gold J, Somohano Marquez T, et al. Under-drilling versus hybrid osseodensification technique: Differences in implant primary stability and bone density of the implant bed walls [J]. Materials (Basel), 2020, 13(2):390. [33] Cao Z, Qin C, Fan S, et al. Pilot study of a surgical robot system for zygomatic implant placement [J]. Med Eng Phys, 2020, 75:72-78. [34] Deng H, Wang J, Liu L, et al. Feasibility and accuracy of a task-autonomous robot for zygomatic implant placement [J]. J Prosthet Dent, 2023:S0022-3913(23)00710-2. [35] Deng H, Bian H, Liang Y, et al. Semi-autonomous two-stage dental robotic technique for zygomatic implants: An in vitro study [J]. 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