[1] Pérez-Sayáns M, Somoza-Martín JM, Barros-Angueira F, et al. RANK/RANKL/OPG role in distraction osteogenesis[J]. Oral Surg Oral Med Oral Pathol Oral Radiol Endod,2010,109(5): 679-686. [2] Liou EJ, Huang CS. Rapid canine retraction through distraction of the periodontal ligament [J]. Am J Orthod Dentofacial Orthop, 1998, 114(4): 372-382. [3] Lv T, Kang N, Wang C, et al. Biologic response of rapid tooth movement with periodontal ligament distraction [J]. Am J Orthod Dentofacial Orthop, 2009, 136(3): 401-411. [4] Yeung HY, Lee KM, Fung KP, et al. Sustained expression of transforming growth factor-β1 by distraction during distraction osteogenesis [J]. Life Sci, 2002, 71(1): 67-79. [5] Kumar PS, Saxena R, Patil S, et al. Clinical investigation of periodontal ligament distraction osteogenesis for rapid orthodontic canine retraction [J]. Aust Orthod J, 2009, 25(2): 147-152. [6] Kharkar VR, Kotrashetti SM. Transport dentoalveolar distraction osteogenesis-assisted rapid orthodontic canine retraction[J]. Oral Surg Oral Med Oral Pathol Oral Radiol Endod,2010,109(5):687-693. [7] 陈曦,李宁,彭早霞, 等. 减阻-牵张快速牙移动相关影响因素及有效性探索[J]. 中南大学学报(医学版), 2013, 38(9): 931-937. [8] Orajarvi M, Hirvonen O, Yu SB, et al. Effect of estrogen and altered diet hardness on the expression of estrogen receptor alpha and matrix metalloproteinase-8 in rat condylar cartilage [J]. J Orofac Pain, 2011, 25(3): 261-268. [9] Sukurica Y, Karaman A, Gürel HG, et al. Rapid canine distalization through segmental alveolar distraction osteogenesis[J]. Angle Orthod, 2007, 77(2): 226-236. [10] Kumar N, Prashantha G, Raikar S, et al. Dento-alveolar distraction osteogenesis for rapid orthodontic canine retraction[J]. J Int Oral Health, 2013, 5(6): 31-41. [11] 张莹, 李鑫, 史俊南, 等. 转录因子MSX-1对人牙乳头间充质细胞增殖在牙胚发育中的意义 [J]. 中国临床康复, 2003, 7(20): 2796-2797. [12] Bouletreau PJ, Warren SM, Spector JA, et al. Hypoxia and VEGF up-regulate BMP-2 mRNA and protein expression in microvascular endothelial cells: implications for fracture healing[J]. Plast Reconstr Surg, 2002, 109(7): 2384-2397. [13] Park JY, Yoon YS, Park HS, et al. Molecular response of human cervical and lumbar nucleus pulposus cells from degenerated discs following cytokine treatment[J]. Genet Mol Res,2013, 12(1): 838-851. [14] Wildemann B, Lübberstedt M, Haas NP, et al. IGF-I and TGF-beta 1 incorporated in a poly (d, l-lactide) implant coating maintain their activity over long-term storage-cell culture studies on primary human osteoblast-like cells [J]. Biomaterials, 2004, 25(17): 3639-3644. [15] 王爽, 叶湘玉, 周洪, 等. 犬牙周膜牵张成骨正畸牙移动中牵张侧的组织学变化 [J]. 上海口腔医学, 2004, 13(4): 312-314. [16] Sawada M, Shimizu N. Stimulation of bone formation in the expanding mid-palatal suture by transforming growth factor-β1 in the rat [J]. Euro J Orthod, 1996, 18(2): 169-179. [17] Mulcahy LE, Taylor D, Lee TC, et al. RANKL and OPG activity is regulated by injury size in networks of osteocyte-like cells [J]. Bone, 2011, 48(2): 182-188. [18] Al-Mulla F, Leibovich SJ, Francis IM, et al. Impaired TGF-β signaling and a defect in resolution of inflammation contribute to delayed wound healing in a female rat model of type 2 diabetes[J]. Mol Biosyst, 2011, 7(11): 3006-3020. |