Int J Stomatol ›› 2024, Vol. 51 ›› Issue (4): 456-466.doi: 10.7518/gjkq.2024058
• Original Articles • Previous Articles
Jingwen Han1(),Lei Wang1,Shiqi Ren1,Hongyu Wang1,Yingyi Huang1,Jiamin Li1,Yan Zheng1,2(
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CLC Number:
1 | 刘纯, 贾莹, 杨世榕, 等. 大鼠髁突软骨下骨骨微结构生长发育的特征[J]. 中国组织工程研究, 2022, 26(32): 5162-5166. |
Liu C, Jia Y, Yang SR, et al. Characteristics of the growth, development and microarchitecture of condyle subchondral bone in rats[J]. Chin J Tissue Eng Res, 2022, 26(32): 5162-5166. | |
2 | Saccucci M, Polimeni A, Festa F, et al. Do skeletal cephalometric characteristics correlate with condylar volume, surface and shape? A 3D analysis[J]. Head Face Med, 2012, 8: 15. |
3 | Al-Gumaei WS, Al-Attab R, Alhammadi MS, et al. Evaluation of spheno-occipital synchondrosis fusion in Chinese population using CBCT: a cross-sectio-nal study[J]. J Contemp Dent Pract, 2022, 23(1): 8-13. |
4 | 傅开元, 胡敏, 余强, 等. 颞下颌关节紊乱病锥形束CT检查规范及诊断标准的专家共识[J]. 中华口腔医学杂志, 2020, 55(9): 613-616. |
Fu KY, Hu M, Yu Q, et al. Experts consensus on cone-beam CT examination specification and diagnostic criteria of temporomandibular disorders[J]. Chin J Stomatol, 2020, 55(9): 613-616. | |
5 | Tun Oo L, Miyamoto JJ, Takada JI, et al. Three-dimensional characteristics of temporomandibular joint morphology and condylar movement in patients with mandibular asymmetry[J]. Prog Orthod, 2022, 23(1): 50. |
6 | Ikeda M, Miyamoto JJ, Takada JI, et al. Association between 3-dimensional mandibular morphology and condylar movement in subjects with mandibular asymmetry[J]. Am J Orthod Dentofacial Orthop, 2017, 151(2): 324-334. |
7 | Franklin D, Flavel A. Brief communication: timing of spheno-occipital closure in modern Western Australians[J]. Am J Phys Anthropol, 2014, 153(1): 132-138. |
8 | Al-Gumaei WS, Al-Attab R, Al-Tayar B, et al. Comparison of spheno-occipital synchondrosis maturation stages with three-dimensional assessment of mandibular growth[J]. BMC Oral Health, 2022, 22(1): 654. |
9 | Okamoto K, Ito J, Tokiguchi S, et al. High-resolution CT findings in the development of the sphenooccipital synchondrosis[J]. AJNR Am J Neurora-diol, 1996, 17(1): 117-120. |
10 | Pullinger AG, Solberg WK, Hollender L, et al. Relationship of mandibular condylar position to dental occlusion factors in an asymptomatic population[J]. Am J Orthod Dentofacial Orthop, 1987, 91(3): 200-206. |
11 | Berraquero R, Palacios J, Rodríguez JI. The role of the condylar cartilage in mandibular growth. A study in thanatophoric dysplasia[J]. Am J Orthod Dentofac Orthop, 1992, 102(3): 220-226. |
12 | Kajikawa A, Hirabayashi S, Harii K. An experimental study on the growth of condylar cartilage, using a new vascularized mandible heterotopic transplant model[J]. J Oral Maxillofac Surg, 2003, 61(2): 239-245. |
13 | Shen G, Darendeliler MA. The adaptive remodeling of condylar cartilage-a transition from chondrogenesis to osteogenesis[J]. J Dent Res, 2005, 84(8): 691-699. |
14 | Bjork A. Facial growth in man, studied with the aid of metallic implants[J]. Acta Odontol Scand, 1955, 13(1): 9-34. |
15 | Chen YX, Li LF, Li Y, et al. Comprehensive positional and morphological assessments of the temporomandibular joint in adolescents with skeletal Class Ⅲ malocclusion: a retrospective CBCT study[J]. BMC Oral Health, 2023, 23(1): 78. |
16 | Burke G, Major P, Glover K, et al. Correlations between condylar characteristics and facial morphology in Class Ⅱ preadolescent patients[J]. Am J Orthod Dentofacial Orthop, 1998, 114(3): 328-336. |
17 | Ma QL, Bimal P, Mei L, et al. Temporomandibular condylar morphology in diverse maxillary-mandibular skeletal patterns: a 3-dimensional cone-beam computed tomography study[J]. J Am Dent Assoc, 2018, 149(7): 589-598. |
18 | 戴微微, 王秀颖, 潘思思, 等. 替牙期功能性Ⅲ类错𬌗髁突位置的CBCT研究[J]. 实用口腔医学杂志, 2018, 34(4): 548-551. |
Dai WW, Wang XY, Pan SS, et al. The characteristic of condylar postion in the subjects with mixed dentition and Pseudo-Class Ⅲ malocclusion: a CBCT study[J]. J Pract Stomatol, 2018, 34(4): 548-551. | |
19 | 胡敏, 毕长青, 周丹, 等. 安氏Ⅲ类错𬌗正畸前后颞下颌关节形态变化的研究[J]. 现代口腔医学杂志, 2000, 14(5): 317-319. |
Hu M, Bi CQ, Zhou D, et al. The study on TMJ morphological changes in patients with Angle Class Ⅲ malocclusion pretreatment and after treatment[J]. J Mod Stomatol, 2000, 14(5): 317-319. | |
20 | Pullinger AG, Solberg WK, Hollender L, et al. Tomographic analysis of mandibular condyle position in diagnostic subgroups of temporomandibular disorders[J]. J Prosthet Dent, 1986, 55(6): 723-729. |
21 | Shokri A, Zarch HH, Hafezmaleki F, et al. Comparative assessment of condylar position in patients with temporomandibular disorder (TMD) and asympto-matic patients using cone-beam computed tomography[J]. Dent Med Probl, 2019, 56(1): 81-87. |
22 | Cohlmia JT, Ghosh J, Sinha PK, et al. Tomographic assessment of temporomandibular joints in patients with malocclusion[J]. Angle Orthod, 1996, 66(1): 27-35. |
23 | Paknahad M, Shahidi S. Association between condylar position and vertical skeletal craniofacial morphology: a cone beam computed tomography study[J]. Int Orthod, 2017, 15(4): 740-751. |
24 | Akahane Y, Deguchi T, Hunt NP. Morphology of the temporomandibular joint in skeletal Class Ⅲ symmetrical and asymmetrical cases: a study by cephalometric laminography[J]. J Orthod, 2001, 28(2): 119-128. |
25 | 韩婧文, 任诗琦, 刘星宇, 等. 成人不同垂直及矢状骨面型髁突特征的研究[J]. 国际口腔医学杂志, 2022, 49(2): 153-162. |
Han JW, Ren SQ, Liu XY, et al. Features of condyles of adult patients with different vertical and sagittal skeletal facial types[J]. Int J Stomatol, 2022, 49(2): 153-162. | |
26 | Doraczynska-Kowalik A, Nelke KH, Pawlak W, et al. Genetic factors involved in mandibular prognathism[J]. J Craniofac Surg, 2017, 28(5): e422-e431. |
27 | Moreno Uribe LM, Howe SC, Kummet C, et al. Phenotypic diversity in white adults with moderate to severe Class Ⅱ malocclusion[J]. Am J Orthod Dentofacial Orthop, 2014, 145(3): 305-316. |
28 | Arnett GW, Bergman RT. Facial keys to orthodontic diagnosis and treatment planning. Part Ⅰ [J]. Am J Orthod Dentofacial Orthop, 1993, 103(4): 299-312. |
29 | Arnett GW, Bergman RT. Facial keys to orthodontic diagnosis and treatment planning. Part Ⅱ[J]. Am J Orthod Dentofacial Orthop, 1993, 103(5): 395-411. |
30 | Katsavrias EG, Halazonetis DJ. Condyle and fossa shape in Class Ⅱ and Class Ⅲ skeletal patterns: a morphometric tomographic study[J]. Am J Orthod Dentofacial Orthop, 2005, 128(3): 337-346. |
31 | 柳汀. 不同矢状骨面型高角错𬌗畸形患者颞下颌关节的CBCT研究[D]. 天津: 天津医科大学, 2017. |
Liu T. Morphological study on temporomandibular joint in high-angle patients with different sagittal skeletal pattern by CBCT[D]. Tianjin: Tianjin Medical University, 2017. | |
32 | Lv WX, Nie Q, Gu Y. Three-dimensional analysis of mandibular characteristics in patients with skeletal Class Ⅱ malocclusion and chin deviation[J]. Am J Orthod Dentofac Orthop, 2021, 160(3): 392-400. |
33 | Liu W, Wang Y, Zhang Y, et al. Study of condylar asymmetry in Angle Class Ⅲ malocclusion with mandibular deviation[J]. J Craniofac Surg, 2015, 26(3): e264-e268. |
34 | Kim HO, Lee W, Kook YA, et al. Comparison of the condyle-fossa relationship between skeletal Class Ⅲ malocclusion patients with and without asymmetry: a retrospective three-dimensional cone-beam computed tomograpy study[J]. Korean J Orthod, 2013, 43(5): 209-217. |
35 | Obwegeser HL, Makek MS. Hemimandibular hyperplasia: hemimandibular elongation[J]. J Maxillofac Surg, 1986, 14(4): 183-208. |
36 | Santander P, Quast A, Olbrisch C, et al. Comprehensive 3D analysis of condylar morphology in adults with different skeletal patterns-a cross-sectional study[J]. Head Face Med, 2020, 16(1): 33. |
37 | Björk A. Prediction of mandibular growth rotation[J]. Am J Orthod, 1969, 55(6): 585-599. |
38 | Shirley NR, Jantz RL. Spheno-occipital synchondrosis fusion in modern Americans[J]. J Forensic Sci, 2011, 56(3): 580-585. |
39 | Alhazmi A, Vargas E, Palomo JM, et al. Timing and rate of spheno-occipital synchondrosis closure and its relationship to puberty[J]. PLoS One, 2017, 12(8): e0183305. |
40 | Ferrillo M, Curci C, Roccuzzo A, et al. Reliability of cervical vertebral maturation compared to hand-wrist for skeletal maturation assessment in growing subjects: a systematic review[J]. J Back Musculos-kelet Rehabil, 2021, 34(6): 925-936. |
41 | Gabriel DB, Southard KA, Qian F, et al. Cervical vertebrae maturation method: poor reproducibility[J]. Am J Orthod Dentofacial Orthop, 2009, 136(4): 478.e1-478.e7, 478-480. |
42 | Zhao XG, Lin JX, Jiang JH, et al. Validity and re-liability of a method for assessment of cervical vertebral maturation[J]. Angle Orthod, 2012, 82(2): 229-234. |
43 | Scarfe WC, Farman AG, Sukovic P. Clinical applications of cone-beam computed tomography in dental practice[J]. J Can Dent Assoc, 2006, 72(1): 75-80. |
44 | Schlueter B, Kim KB, Oliver D, et al. Cone beam computed tomography 3D reconstruction of the mandibular condyle[J]. Angle Orthod, 2008, 78(5): 880-888. |
45 | Diwakar R, Bucci R, Kaushik A, et al. Three-dimensional assessment of temporomandibular joint morphology and facial asymmetry in individuals with different vertical skeletal growth patterns[J]. Int J Environ Res Public Health, 2023, 20(2): 1437. |
46 | Lim YS, Chung DH, Lee JW, et al. Reliability and validity of mandibular posterior vertical asymmetry index in panoramic radiography compared with cone-beam computed tomography[J]. Am J Orthod Dentofacial Orthop, 2018, 153(4): 558-567. |
47 | Al-Gumaei WS, Long H, Al-Attab R, et al. Compa-rison of three-dimensional maxillary growth across spheno-occipital synchondrosis maturation stages[J]. BMC Oral Health, 2023, 23(1): 100. |
48 | Manabe A, Ishida T, Kanda E, et al. Evaluation of maxillary and mandibular growth patterns with cephalometric analysis based on cervical vertebral maturation: a Japanese cross-sectional study[J]. PLoS One, 2022, 17(4): e0265272. |
49 | 陶珂金, 刘光俊, 冯剑颖. 颞下颌关节间隙改变与关节盘移位及程度的关系[J]. 口腔颌面修复学杂志, 2022, 23(3): 196-200. |
Tao KJ, Liu GJ, Feng JY. Relationship of temporomandibular joint space to disc displacement and degree[J]. Chin J Prosthodont, 2022, 23(3): 196-200. |
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