[1] |
何淼, 林仰东, 赵博, 等. 无托槽隐形矫治器远移上下磨牙矫治恒牙早期牙列拥挤的疗效分析[J]. 陆军军医大学学报, 2024, 46(13):1577-1584.
|
[2] |
郑元华, 刘少华, 龙飞, 等. 下颌种植钉临床应用的最新进展[J]. 卫生职业教育, 2023, 41(6):131-134.
|
[3] |
Park HS, Lee SK, Kwon OW. Group distal movement of teeth using microscrew implant anchorage[J]. Angle Orthod, 2005, 75(4):602-609.
|
[4] |
Yamada K, Kuroda S, Deguchi T, et al. Distal movement of maxillary molars using miniscrew anchorage in the buccal interradicular region[J]. Angle Orthod, 2009, 79(1):78-84.
doi: 10.2319/020408-68.1
pmid: 19123698
|
[5] |
Sugawara J, Daimaruya T, Umemori M, et al. Distal movement of mandibular molars in adult patients with the skeletal anchorage system[J]. Am J Orthod Dentofacial Orthop, 2004, 125(2):130-138.
|
[6] |
Sugawara Y, Kuroda S, Tamamura N, et al. Adult patient with mandibular protrusion and unstable occlusion treated with titanium screw anchorage[J]. Am J Orthod Dentofacial Orthop, 2008, 133(1):102-111.
|
[7] |
Kim HJ, Jang WS, Park HS. Anatomical limits for distalization of lower posterior molars with micro-implant anchorage[J]. J Clin Orthod, 2019, 53(5):305-313.
|
[8] |
Begtrup A, Grønastøð HÁ, Christensen IJ, et al. Predicting lower third molar eruption on panoramic radiographs after cephalometric comparison of profile and panoramic radiographs[J]. Eur J Orthod, 2013, 35(4):460-466.
|
[9] |
Kim TW, Artun J, Behbehani F, et al. Prevalence of third molar impaction in orthodontic patients treated nonextraction and with extraction of 4 premolars[J]. Am J Orthod Dentofacial Orthop, 2003, 123(2):138-145.
|
[10] |
Sable DL, Woods MG. Growth and treatment changes distal to the mandibular first molar: A lateral cephalometric study[J]. Angle Orthod, 2004, 74(3):367-374.
pmid: 15264649
|
[11] |
Chen CL, Chen CH, Pan CY, et al. Cone beam computed tomographic analysis of the spatial limitation during mandibular arch distalization[J]. BMC Med Imaging, 2020, 20(1):39.
|
[12] |
Kim SJ, Choi TH, Baik HS, et al. Mandibular posterior anatomic limit for molar distalization[J]. Am J Orthod Dentofacial Orthop, 2014, 146(2):190-197.
|
[13] |
Choi YT, Kim YJ, Yang KS, et al. Bone availability for mandibular molar distalization in adults with mandibular prognathism[J]. Angle Orthod, 2018, 88(1):52-57.
doi: 10.2319/040617-237.1
pmid: 28949768
|
[14] |
Sghaireen MG, Srivastava KC, Shrivastava D, et al. A CBCT based three-dimensional assessment of mandibular posterior region for evaluating the possibility of bypassing the inferior alveolar nerve while placing dental implants[J]. Diagnostics(Basel), 2020, 10(6):406.
|
[15] |
Xia Y, Qiao X, Huang YJ, et al. Root anatomy and root canal morphology of maxillary second permanent molars in a Chongqing population: A cone-beam computed tomography study[J]. Med Sci Monit, 2020, 26:e922794.
|
[16] |
Zambrano-De la Peña LS, Aliaga-Del Castillo A, Rodríguez-Cárdenas YA, et al. Bucco alveolar bone thickness of mandibular impacted third molars with different inclinations: A CBCT study[J]. Surg Radiol Anat, 2020, 42(9):1051-1056.
doi: 10.1007/s00276-020-02447-1
pmid: 32140764
|
[17] |
Sheng Y, Guo HM, Bai YX, et al. Dehiscence and fenestration in anterior teeth: Comparison before and after orthodontic treatment[J]. J Orofac Orthop, 2020, 81(1):1-9.
doi: 10.1007/s00056-019-00196-4
pmid: 31646344
|
[18] |
Moon HW, Kim MJ, Ahn HW, et al. Molar inclination and surrounding alveolar bone change relative to the design of bone-borne maxillary expanders: A CBCT study[J]. Angle Orthod, 2020, 90(1):13-22.
|
[19] |
Goracci C, Ruellas AC, Nieri M, et al. Three-dimensional evaluation of maxillary second molar position in untreated patients with normal occlusion: Implications for preadjusted appliance prescriptions[J]. Fortschr Der Kieferorthopadie Organ, 2022, 83(3):172-180.
|
[20] |
吴晓雪, 刘海波, 罗晨, 等. 下牙列整体远移时不同牵引钩对牙齿移动影响的有限元分析[J]. 医用生物力学, 2022, 37(4):663-668,675.
|
[21] |
王洋, 周璇, 张子旋, 等. 不同骨面型成人患者下颌第二磨牙区牙槽骨形态的CBCT测量[J]. 宜春学院学报, 2018, 40(6):53-55.
|