[1] Sena K, Leven R, Mazhar K, et al. Early gene response to low-intensity pulsed ultrasound in rat osteoblastic cells [J]. Ultrasound Med Biol, 2005, 31(5): 703-708. [2] Fujimoto K, Kiyosaki T, Mitsui N, et al. Low-intensity laser irradiation stimulates mineralization via increased BMPs in MC3T3-E1 cells [J]. Lasers Surg Med, 2010, 42(6): 519-526. [3] 胡文军,朱靖恺,马威.植骨材料在口腔种植中的应用概况及进展[J].中国实用口腔科杂志,2018,11(1): 17-23. [4] Bhatt RA, Rozental TD. Bone graft substitutes [J]. Hand Clin, 2012, 28(4): 457-468. [5] Galindo-Moreno P, Avila G, Fernandez-Barbero JE, et al. Clinical and histologic comparison of two different composite grafts for sinus augmentation: a pilot clinical trial [J]. Clin Oral Implants Res, 2008, 19(8): 755-759. [6] Hamblin MR, Hamblin MR, Waynant RW, et al. Mechanisms of low level light therapy [J].Proceedings of SPIE, 2006, 6140:1-12. [7] Karu TI. Multiple roles of cytochrome c oxidase in mammalian cells under action of red and IR-A radiation [J]. IUBMB Life, 2010, 62(8): 607-610. [8] Wu S, Zhou F, Wei Y, et al. Cancer phototherapy via selective photoinactivation of respiratory chain oxidase to trigger a fatal superoxide anion burst [J]. Antioxid Redox Signal, 2014, 20(5): 733-746. [9] de Freitas LF, Hamblin MR. Proposed mechanisms of photobiomodulation or low-level light therapy [J]. IEEE J Sel Top Quantum Electron, 2016, 22(3), pii: 7000417. [10] Kazancioglu HO, Ezirganli S, Aydin MS. Effects of laser and ozone therapies on bone healing in the calvarial defects [J]. J Craniofac Surg, 2013, 24(6): 2141-2146. [11] Barbosa D, De Souza RA, Xavier M, et al. Effects of low-level laser therapy (LLLT) on bone repair in rats: optical densitometry analysis [J]. Lasers Med Sci, 2013, 28(2): 651-656. [12] Zaky AA, El Shenawy HM, Harhsh TA, et al. Can low level laser therapy benefit bone regeneration in localized maxillary cystic defects? -a prospective randomized control trial [J]. Open Access Maced J Med Sci, 2016, 4(4): 720-725. [13] Metin R, Tatli U, Evlice B. Effects of low-level laser therapy on soft and hard tissue healing after endodontic surgery [J]. Lasers Med Sci, 2018, 33(8):1699-1706. [14] Chiari S. Photobiomodulation and Lasers [J]. Front Oral Biol, 2016, 18:118-123. [15] Dube A, Bansal H, Gupta P. Modulation of macrophage structure and function by low level He-Ne laser irradiation [J]. Photochem Photobiol Sci, 2003, 2(8): 851-855. [16] Çirak E, Ozyurt A, Peker T, et al. Comparative evaluation of various low-level laser therapies on bone healing following tooth extraction: An experimental animal study [J]. J Craniomaxillofac Surg, 2018, 46(7):1147-1152. [17] de Oliveira LSS, de Araújo AA, de Araújo Júnior RF, et al. Low-level laser therapy (780 nm) combined with collagen sponge scaffold promotes repair of rat cranial critical-size defects and increases TGF-beta, FGF-2, OPG/RANK and osteocalcin expression [J]. Int J Exp Pathol, 2017, 98(2): 75-85. [18] Kim K, Kim IS, Cho TH, et al. High-intensity Nd:YAG laser accelerates bone regeneration in calvarial defect models [J]. J Tissue Eng Regen Med, 2013, 9(8): 943-951. [19] Sato S, Ogura M, Ishihara M, et al. Nanosecond, high-intensity pulsed laser ablation of myocardium tissue at the ultraviolet, visible, and near-infrared wavelengths: in-vitro study [J]. Lasers Surg Med, 2001, 29(5): 464-473. [20] Kim IS, Cho TH, Kim K, et al. High power-pulsed Nd:YAG laser as a new stimulus to induce BMP-2 expression in MC3T3-E1 osteoblasts [J]. Lasers Surg Med, 2010, 42(6): 510-518. [21] Karoussis IK, Kyriakidou K, Psarros C, et al. Nd:YAG laser radiation (1.064 nm) accelerates differentiation of osteoblasts to osteocytes on smooth and rough titanium surfaces in vitro [J]. Clin Oral Implants Res, 2017, 28(7): 785-790. [22] Tsuka Y, Kunimatsu R, Gunji H, et al. Effects of Nd:YAG low-level laser irradiation on cultured human osteoblasts migration and ATP production: in vitro study [J]. Lasers Med Sci, 2019, 34(1):55-60. [23] Nagata MJ, De Campos N, Messora MR, et al. Platelet-rich plasma, low-level laser therapy, or their combination promotes periodontal regeneration in fenestration defects: a preliminary in vivo study [J]. J Periodontol, 2014, 85(6): 770-778. |