[1] Marciniak J, Lossdörfer S, Knaup I, et al. Orthodontic cell stress modifies proinflammatory cytokine expression in human PDL cells and induces immunomodulatory effects via TLR-4 signaling in vitro [J]. Clin Oral Investig, 2020, 24(24):1411-1419. [2] Papageorgiou SN, Koletsi D, Iliadi A, et al. Treatment outcome with orthodontic aligners and fixed appliances:a systematic review with meta-analyses [J]. Eur J Orthod, 2020, 42(3):331-343. [3] Varma SR, AlShayeb M, Narayanan J, et al. Applications of lasers in refractory periodontitis:A narrative review [J]. J Int Soc Prev Community Dent, 2020, 10(4):384-393. [4] Cronshaw M, Parker S, Anagnostaki E, et al. Photobiomodulation dose parameters in dentistry:A systematic review and meta-analysis [J]. Dent J (Basel), 2020, 8(4):114. [5] Tsuchiya T, Hasegawa N, Yugawa M, et al. Different therapeutic effects of CO2 and diode laser irradiation on tooth movement-related pain [J]. Front Neurol, 2020, 11:481. [6] Jiang Y, Feng J, Du J, et al. Clinical and biochemical effect of laser as an adjunct to non-surgical treatment of chronic periodontitis [J]. Oral Dis, 2022, 28(4):1042-1057. [7] Nagahashi T, Yahata Y, Handa K, et al. Er:YAG laser-induced cavitation can activate irrigation for the removal of intraradicular biofilm [J]. Sci Rep, 2022, 12(1):4897. [8] Li MM, Jia JH, Wu MX, et al. Clinical effectiveness of Er,Cr:YSGG lasers in non-surgical treatment of chronic periodontitis:a meta-analysis of randomized controlled trials [J]. Lasers Med Sci, 2021, 36(4):889-901. [9] Sethasathien P, Tantivitayakul P, Teparat-Burana T. The effect of Er, Cr:YSGG laser on periodontopathic bacteria elimination:an in vitro study [J]. Lasers Med Sci, 2022, 37(6):2763-2771. [10] Yamashita Y, Mae M, Oohira M, et al. Clinical efficacy and safety of antimicrobial photodynamic therapy in residual periodontal pockets during the maintenance phase [J]. Pharmaceuticals (Basel), 2022, 15(8):924. [11] Luka M, Lozar A, Perhavec T, et al. Variable heat shock response model for medical laser procedures [J]. Lasers Med Sci, 2019, 34(6):1147-1158. [12] Fernandes MRU, Suzuki SS, Suzuki H, et al. Photobiomodulation increases intrusion tooth movement and modulates IL-6, IL-8 and IL-1β expression during orthodontically bone remodeling [J]. J Biophotonics, 2019, 12(10):e201800311. [13] Rahman SU, Mosca RC, Govindool Reddy S, et al. Learning from clinical phenotypes: Low-dose biophotonics therapies in oral diseases [J]. Oral Dis, 2018, 24(1-2):261-276. [14] Behm C, Nemec M, Blufstein A, et al. Interleukin-1β induced matrix metalloproteinase expression in human periodontal ligament-derived mesenchymal stromal cells under in vitro simulated static orthodontic forces [J]. Int J Mol Sci, 2021, 22(3):1027. [15] AlShahrani I, Togoo RA, Hosmani J, et al. Photobiomodulation in acceleration of orthodontic tooth movement: A systematic review and meta analysis [J]. Complement Ther Med, 2019, 47:102220. [16] Bayer Alinca S, Sağlam E, Zengin Celik T, et al. Is low level laser therapy or ozone therapy more effective for bone healing? Understanding the mechanisms of HIF-1α, RANKL and OPG [J]. Biotech Histochem, 2020, 95(8):597-604. [17] Yang B, Pang X, Li Z, et al. Immunomodulation in the treatment of periodontitis: Progress and perspectives [J]. Front Immunol, 2021, 12:781378. [18] Jia L, Jia J, Xie M, et al. Clinical attachment level gain of lasers in scaling and root planing of chronic periodontitis:a network meta-analysis of randomized controlled clinical trials [J]. Lasers Med Sci, 2020, 35(2):473-485. [19] Michelogiannakis D, Jabr L, Barmak AB, et al. Influence of low-level-laser therapy on the stability of orthodontic mini-screw implants. A systematic review and meta-analysis [J]. Eur J Orthod, 2022, 44(1): 11-21. [20] Zhang B, Huang X, Huo S, et al. Effect of photobiomodulation therapy on mini-implant stability:a systematic review and meta-analysis [J]. Lasers Med Sci, 2021, 36(8):1557-1566. [21] Sobouti F, Chiniforush N, Saravani HJ, et al. Efficacy of compound topical anesthesia combined with photobiomodulation therapy in pain control for placement of orthodontic miniscrew:a double-blind, randomized clinical trial [J]. Lasers Med Sci, 2022, 37(1): 589-594. [22] Migliario M, Greco Lucchina A, Rocchetti V, et al. Laser surgical approach to impacted maxillary incisors:case series and brief review [J]. Eur Rev Med Pharmacol Sci, 2019, 23(22):9691-9696. [23] Allareddy V, Caplin J, Markiewicz MR, et al. Orthodontic and surgical considerations for treating impacted teeth [J]. Oral Maxillofac Surg Clin North Am, 2020, 32(1):15-26. [24] Zheng J, Yang K. Clinical research: low-level laser therapy in accelerating orthodontic tooth movement [J]. BMC Oral Health, 2021, 21(1):324. [25] Türker G, Yavuzi, Gönen ZB. Which method is more effective for accelerating canine distalization short term, low-level laser therapy or piezocision? A split-mouth study [J]. J Orofac Orthop, 2021, 82(4):236-245. [26] Li J, Ge X, Guan H, et al. The effectiveness of photobiomodulation on accelerating tooth movement in orthodontics:A systematic review and meta-analysis [J]. Photobiomodul Photomed Laser Surg, 2021, 39(4):232-244. [27] Baser Keklikci H, Yagci A. Effects of different wavelengths of low-level laser therapy on orthodontically induced inflammatory root resorption in rats investigated with micro-computerized tomography [J]. Am J Orthod Dentofacial Orthop, 2021, 159(3):e245-e251. [28] MacDonald L, Zanjir M, Laghapour Lighvan N, et al. Efficacy and safety of different interventions to accelerate maxillary canine retraction following premolar extraction:A systematic review and network meta-analysis [J]. Orthod Craniofac Res, 2021, 24(1):17-38. [29] Alfailany DT, Hajeer MY, Aljabban O, et al. The effectiveness of repetition or multiplicity of different surgical and non-surgical procedures compared to a single procedure application in accelerating orthodontic tooth movement:A systematic review and meta-analysis [J]. Cureus, 2022, 14(3):e23105. [30] Al-Jasser R, Al-Jewair T, Al-Rasheed A. One-year rotational relapse frequency following conventional circumferential supracrestal fiberotomy [J]. World J Clin Cases, 2020, 8(2): 284-293. [31] Estrin NE, Moraschini V, Zhang Y, et al. Combination of Nd:YAG and Er:YAG lasers in non-surgical periodontal therapy: a systematic review of randomized clinical studies [J]. Lasers Med Sci, 2022, 37(6):2737-2743. [32] Laky M, Müller M, Laky B, et al. Short-term results of the combined application of neodymium-doped yttrium aluminum garnet(Nd:YAG)laser and erbium-doped yttrium aluminum garnet(Er:YAG)laser in the treatment of periodontal disease:a randomized controlled trial [J]. Clin Oral Investig, 2021, 25(11):6119-6126. [33] Maldaner DR, Azzolin VF, Barbisan F, et al. In vitro effect of low-level laser therapy on the proliferative, apoptosis modulation, and oxi-inflammatory markers of premature-senescent hydrogen peroxide-induced dermal fibroblasts [J]. Lasers Med Sci, 2019, 34(7):1333-1343. [34] Salvi GE, Stáhli A, Schmidt JC, et al. Adjunctive laser or antimicrobial photodynamic therapy to non-surgical mechanical instrumentation in patients with untreated periodontitis:A systematic review and meta-analysis [J]. J Clin Periodontol, 2020, 47 Suppl 22:176-198. [35] 张荷旋,侯本祥.正畸种植体支抗致左下后牙区牙龈窦道一例[J].中华口腔医学杂志,2020,55(12):999-1002. |