[1] 李燕香, 闫利君, 凌小婉, 等. 微创器械与微动力设备在牙拔除术中的应用进展[J]. 中国口腔颌面外科杂志, 2023, 21(2):191-196. [2] Bassi F, Cicciù M, Di Lenarda R, et al.Piezoelectric bone surgery compared with conventional rotary instruments in oral surgery and implantology: Summary and consensus statements of the International Piezoelectric Surgery Academy Consensus Conference 2019[J]. Int J Oral Implantol(Berl), 2020, 13(3):235-239. [3] 肖佳灵, 徐国超. 超声骨刀与高速涡轮钻拔除下颌中低位水平阻生智齿的比较[J]. 实用医学杂志, 2020, 36(11): 1483-1487. [4] Rashid N, Subbiah V, Agarwal P, et al.Comparison of piezosurgery and conventional rotatory technique in transalveolar extraction of mandibular third molars: A pilot study[J]. J Oral Biol Craniofac Res, 2020, 10(4): 615-618. [5] Pell GJ, Gregory BT.Impacted mandibular third molars: classification and modified techniques for removal[J]. Dent Digest, 1933, 39(9):330-338. [6] Higgins JPT, Thomas J, Chandler J, et al. Cochrane Handbook for Systematic Reviews of Interventions version 6.5 (updated August2024) [M]. Cochrane, 2024. Available from www.cochrane.org/handbook. [7] 赵储欣, 岳巍, 肖猛, 等. 超声骨刀联合高速涡轮机用于拔除下颌水平骨埋伏第三磨牙效果观察[J]. 中国药业, 2023, 32(S2):132-134. [8] 余佳杰, 马宏涛, 朱亚琴. 两种微创法拔除下颌阻生第三磨牙的临床效果比较研究[J]. 中国实用口腔科杂志, 2020, 13(11):660-664. [9] 徐金伟, 张琴, 陈海苏, 等. 高速涡轮钻联合超声骨刀对下颌低位阻生智齿拔除的效果[J]. 中国医药导报, 2023, 20(21):129-132. [10] 刘朝阳, 唐璟, 唐祎, 等. 超声骨刀联合45°反角涡轮钻拔除下颌复杂阻生智齿的临床疗效观察[J]. 临床口腔医学杂志, 2018, 34(8):495-498. [11] Demirci A, Bayram F, Dergin G.Piezosurgery versus conventional rotary surgery for impacted third molars: A randomised, split-mouth, clinical pilot trial[J]. Med Oral Patol Oral Cir Bucal, 2024, 29(1):e1-e8. [12] Vucetic M, Roganovic J, Freilich M, et al.Bone microRNA-21 as surgical stress parameter is associated with third molar postoperative discomfort[J]. Clin Oral Investig, 2021, 25(1):319-328. [13] Menziletoglu D, Basturk F, Isik BK, et al.A prospective split-mouth clinical study: comparison of piezosurgery and conventional rotary instruments in impacted third molar surgery[J]. Oral Maxillofac Surg, 2020, 24(1):51-55. [14] Arakji H, Shokry M, Aboelsaad N.Comparison of Piezosurgery and Conventional Rotary Instruments for Removal of Impacted Mandibular Third Molars: A Randomized Controlled Clinical and Radiographic Trial[J]. Int J Dent, 2016, 2016:8169356. [15] Barone A, Marconcini S, Giacomelli L, et al.A randomized clinical evaluation of ultrasound bone surgery versus traditional rotary instruments in lower third molar extraction[J]. J Oral Maxillofac Surg, 2010, 68(2):330-336. [16] Khan K, Riaz M, Parvez A.Comparison of rotary hand piece and piezosurgery technique for impacted mandibular third molar surgery in terms of post-operative trismus[J]. Rawal Med J, 2019, 44(4):740-743. [17] Scott J, Huskisson EC.Graphic representation of pain[J]. Pain, 1976, 2(2):175-184. [18] 张瑞, 薛昌敖, 张凤格, 等. 电动式微动力系统与气动式手机拔除下颌阻生第三磨牙的临床效果比较[J]. 中国口腔颌面外科杂志, 2019, 17(4):342-345. [19] Walia S, Verma D, Bansal S, et al.Comparison of Piezosurgery Devices and the Use of Rotatory Devices for the Extraction of Impacted Mandibular Third Molars[J]. J Pharm Bioallied Sci, 2024, 16(Suppl 3): S2140-2142. [20] Caputo A, Rubino E, Marcianò A, et al.Three-dimensional facial swelling evaluation of piezo-electric vs conventional drilling bur surgery of impacted lower third molar: a randomized clinical trial[J]. BMC Oral Health, 2023, 23(1):233. [21] Blagova B, Krastev D, Malinova L.Conventional drilling versus ultrasound and laser osteotomy in mandibular third molar surgery: A comparative study[J]. Lasers Surg Med, 2023, 55(10):862-870. [22] Vignudelli E, Cucchi A, Righi A, et al.Histomorphometric and Immunohistochemical Evaluation of Bone Healing Around Implants Placed Using Piezosurgery vs Conventional Drills: A Split-Mouth Pilot Study[J]. J Oral Implantol, 2025, 51(2): 121-133. [23] Fujiwara S, Kato S, Bengazi F, et al.Healing at implants installed in osteotomies prepared either with a piezoelectric device or drills: an experimental study in dogs[J]. Oral Maxillofac Surg, 2021, 25(1):65-73. [24] Kotrikova B, Wirtz R, Krempien R, et al.Piezosurgery-a new safe technique in cranial osteoplasty?[J]. Int J Oral Maxillofac Surg, 2006, 35(5):461-465. [25] Rullo R, Addabbo F, Papaccio G, et al.Piezoelectric device vs. conventional rotative instruments in impacted third molar surgery: relationships between surgical difficulty and postoperative pain with histological evaluations[J]. J Craniomaxillofac Surg, 2013, 41(2): e33-e38. [26] Gülnahar Y, Hüseyin Köşger H, Tutar Y.A comparison of piezosurgery and conventional surgery by heat shock protein 70 expression[J]. Int J Oral Maxillofac Surg, 2013, 42(4):508-510. [27] Jiang Q, Qiu Y, Yang C, et al.Piezoelectric Versus Conventional Rotary Techniques for Impacted Third Molar Extraction: A Meta-analysis of Randomized Controlled Trials[J]. Medicine, 2015, 94(41): e1685-e1691. [28] Liu J, Hua C, Pan J, et al.Piezosurgery vs conventional rotary instrument in the third molar surgery: A systematic review and meta-analysis of randomized controlled trials[J]. J Dent Sci, 2018, 13(4):342-349. [29] Badenoch-Jones EK, David M, Lincoln T.Piezoelectric compared with conventional rotary osteotomy for the prevention of postoperative sequelae and complications after surgical extraction of mandibular third molars: a systematic review and meta-analysis[J]. Br J Oral Maxillofac Surg, 2016, 54(10):1066-1079. |