[1] Stamenkovic Z, Raickovic V, Ristic V.Changes in soft tissue profile using functional appliances in the treatment of skeletal class II malocclusion[J]. Srp Arh Celok Lek, 2015, 143(1-2): 12-15.
[2] 邓海艳, 刘海霞. 影响种植支抗稳定性的因素分析[J].口腔医学, 2013, 33(7): 496-497.
[3] Watanabe H, Deguchi T, Hasegawa M, et al.Orthodontic miniscrew failure rate and root proximity,insertion angle,bone contact length,and bone density[J]. Orthod Craniofac Res, 2013, 16(1): 44-55.
[4] Kuroda S, Yamada K, Deguchi T, et al.Root proximity is a major factor for screw failure in orthodontic anchorage[J]. Am J Orthod Dentofacial Orthop, 2007, 131(4 Suppl): S68-73.
[5] Deguchi T, Nasu M, Murakami K, et al.Quantitative evaluation of cortical bone thickness with computed tomographic[J]. Am J Orthod Dentofacial Orthop, 2006, 129(6): e7-12.
[6] Yang L, Li F, Cao M, et al.Quantitative evaluation of maxillary interradicular bone with cone-beam computed tomography for bicortical placement of orthodontic mini-implants[J]. Am J Orthod Dentofacial Orthop, 2015, 147(6): 725-737.
[7] 曾祥龙, 唐志慧. 矢状骨面型与上气道形态和舌骨位置关系的研究[J]. 现代口腔医学杂志, 2004, 18(3): 231-234.
[8] 余红梅, 罗艳虹, 萨建, 等. 组内相关系数及其软件实现[J]. 中国卫生统计, 2011, 28(5): 497-500.
[9] Rodriguez JC, Suarez F, Chan HL, et al.Implants for orthodontic anchorage: success rates and reasons of failures[J]. Implant Dent, 2014, 23(2): 155-161.
[10] Min KI, Kim SC, Kang KH, et al.Root proximity and cortical bone thickness effects on the success rate of orthodontic micro-implants using cone beam computed tomography[J]. Angle Orthod, 2012, 82(6): 1014-1021.
[11] Baumgaertel S.Cortical bone thickness and bone depth of the posterior palatal alveolar process for mini-implant insertion in adults[J]. Am J Orthod Dentofacial Orthop, 2011, 140(6): 806-811.
[12] Kim SH, Yoon HG, Choi YS, et al.Evaluation of interdental space of the maxillary posterior area for orthodontic mini-implants with cone-beam computed tomography[J]. Am J Orthod Dentofacial Orthop, 2009, 135(5): 635-641.
[13] Garg KK, Gupta M.Assessment of stability of orthodontic mini-implants under orthodontic loading: A computed tomography study[J]. Indian J Dent Res, 2015, 26(3): 237-243.
[14] Kim H, Kim TW.Histologic evaluation of root-surface healing after root contact or approximation[J]. Am J Orthod Dentofacial Orthop, 2011, 139(6): 752-760.
[15] Shan LH, Guo N, Zhou GJ, et al.Finite element analysis of bone stress for miniscrew implant proximal to root under occlusal force and implant loading[J]. J Craniofac Surg, 2015, 26(7): 2072-2076.
[16] Yanaguizawa MS, Suzuki SS, Martinez EF, et al.Effects of low-level laser therapy in orthodontic patients on immediate inflammatory response after mini-implants insertion: A preliminary report[J]. Photomed Laser Surg, 2017, 35(1): 57-63.
[17] Lim WH, Lee SK, Wikesjö UM, et al.A descriptive tissue evaluation at maxillary interradicular sites: implications[J]. Clin Anat, 2007, 20(7): 760-765.
[18] 赵晟楠, 高承志, 杨咪咪, 等. CBCT研究上颌窦形态及其与上颌后牙的关系[J]. 实用医学杂志, 2016, 32(16): 2680-2682.
[19] Motoyoshi M, Sanuki-Suzuki R, Uchida Y, et al.Maxillary sinus perforation by orthodontic anchor screws[J]. J Oral Sci, 2015, 57(2): 95-100.
[20] 姚宇, 蔡斌, 麦理想, 等. 青少年上颌后牙区微种植钉的植入角度研究[J]. 中华口腔医学研究杂志(电子版), 2013, 7(6): 460-465.
[21] Tozlu M, Germeç Cakan D, Ulkur F, et al.Maxillary buccal cortical plate inclination at mini-screw insertion sites[J]. Angle Orthod, 2015, 85(5): 868-873. |