Int J Stomatol ›› 2024, Vol. 51 ›› Issue (6): 662-668.doi: 10.7518/gjkq.2024091

• Orthodontics • Previous Articles    

Research progress on the effect of orthodontic treatment on root development during mixed dentition

Junzhuo Gou(),Yafen Zhu,Dingzhuo Jiang,Zhifang Wu()   

  1. Dept. of Pediatric Dentistry, Stomatology Hospital, School of Stomatology, Zhejiang University School of Medicine, Zhe-jiang Provincial Clinical Research Center for Oral Diseases, Key Laboratory of Oral Biomedical Research of Zhejiang Province, Cancer Center of Zhejiang University, Engineering Research Center of Oral Biomaterials and Devices of Zhe-jiang Province, Hangzhou 310000, China
  • Received:2023-12-13 Revised:2024-06-28 Online:2024-11-01 Published:2024-11-04
  • Contact: Zhifang Wu E-mail:15204562011@163.com;11418288@zju.edu.cn
  • Supported by:
    National Natural Science Foundation of China(82101046)

Abstract:

Deleterious oral habits and malocclusion in mixed dentition may affect the development of dental and maxillofacial system in children. Orthodontic treatment must be performed to prevent or block malocclusion to promote occlusion development and craniofacial growth. The roots of the majority of permanent teeth in mixed dentition are not yet completely developed, and whether orthodontic treatment will affect further root development remains unclear. This study aimed to review the effect of orthodontic treatments, such as maxillary expansion treatment, fixed orthodontic treatment, functional orthodontic treatment, and orthopedic orthodontic treatment, performed during mixed dentition on root deve-lopment and to provide evidence for clinical application and research.

Key words: mixed dentition, orthodontic treatment, root development

CLC Number: 

  • R783.5

TrendMD: 
1 葛立宏. 儿童口腔医学[M]. 5版. 北京: 人民卫生出版社, 2020: 48, 176.
Ge LH. Pediatric dentistry[M]. 5th ed. Beijing: People’s Medical Publishing House, 2020: 48, 176.
2 赵燕平, 邹兆菊, 楚小玉. 恒牙发育的X线研究[J]. 中华口腔医学杂志, 2001, 36(4): 246-249.
Zhao YP, Zou ZJ, Chu XY. Radiographic study of the development of the permanent teeth[J]. Chin J Stomatol, 2001, 36(4): 246-249.
3 Gleiser I, Hunt EE. The permanent mandibular first molar: its calcification, eruption and decay[J]. Am J Phys Anthropol, 1955, 13(2): 253-283.
4 Nolla CM. The development of the permanent teeth[J]. J Dent Children, 1960, 27(4): 254-266.
5 Haavikko K. The formation and the alveolar and clinical eruption of the permanent teeth. An orthopan-tomographic study[J]. Suom Hammaslaak Toim, 1970, 66(3): 103-170.
6 Demirjian A, Goldstein H, Tanner JM. A new system of dental age assessment[J]. Hum Biol, 1973, 45(2): 211-227.
7 万均, 张若芳. 正畸治疗对不同发育阶段牙根影响的研究进展[J]. 北京口腔医学, 2020, 28(1): 50-54.
Wan J, Zhang RF. Research progress on the in-fluence of orthodontic treatment on root at different developmental stages[J]. Beijing J Stomatol, 2020, 28(1): 50-54.
8 Dalaie K, Badiee M, Behnaz M, et al. Effect of ortho-dontic forces on root length of immature mandibu-lar second premolars: a split-mouth randomized cli-nical trial[J]. Dental Press J Orthod, 2021, 26(5): e2119355.
9 Sameshima GT, Asgarifar KO. Assessment of root resorption and root shape: periapical vs panoramic films[J]. Angle Orthod, 2001, 71(3): 185-189.
10 Jerman AC, Kinsley EL, Morris CR. Absorbed ra-diation from panoramic plus bitewing exposures vs full-mouth periapical plus bitewing exposures[J]. J Am Dent Assoc, 1973, 86(2): 420-423.
11 李惠玲. CBCT检测口腔正畸中牙槽骨、牙根吸收状况的效果[J]. 解放军预防医学杂志, 2018, 36(11): 1451-1453.
Li HL. Effect of CBCT detection in alveolar bone and root resorption during orthodontic treatment[J]. J Prev Med Chin People’s Liberation Army, 2018, 36(11): 1451-1453.
12 张若芳, 王红梅, 白玉兴, 等. 正畸力对上中切牙牙根继续发育影响的初步研究[J]. 北京口腔医学, 2016, 24(6): 335-337.
Zhang RF, Wang HM, Bai YX, et al. Effects of ortho-dontic force on upper central incisor’s developing roots[J]. Beijing J Stomatol, 2016, 24(6): 335-337.
13 Deng Y, Sun Y, Xu T. Evaluation of root resorption after comprehensive orthodontic treatment using cone beam computed tomography (CBCT): a meta-analysis[J]. BMC Oral Health, 2018, 18(1): 116.
14 De Grauwe A, Ayaz I, Shujaat S, et al. CBCT in orthodontics: a systematic review on justification of CBCT in a paediatric population prior to orthodontic treatment[J]. Eur J Orthod, 2019, 41(4): 381-389.
15 Lind V. Short root anomaly[J]. Scand J Dent Res, 1972, 80(2): 85-93.
16 罗军, 尹康. 短根异常的研究进展[J]. 临床口腔医学杂志, 2016, 32(1): 61-62.
Luo J, Yin K. Research progress of short root ano-maly[J]. J Clin Stomatol, 2016, 32(1): 61-62.
17 Apajalahti S, Hölttä P, Turtola L, et al. Prevalence of short-root anomaly in healthy young adults[J]. Acta Odontol Scand, 2002, 60(1): 56-59.
18 Jakobsson R, Lind V. Variation in root length of the permanent maxillary central incisor[J]. Scand J Dent Res, 1973, 81(4): 335-338.
19 Vandevska-Radunovic V. Neural modulation of inflammatory reactions in dental tissues incident to orthodontic tooth movement. A review of the literature[J]. Eur J Orthod, 1999, 21(3): 231-247.
20 Brezniak N, Wasserstein A. Orthodontically induced inflammatory root resorption. PartⅠ: the basic s-cience aspects[J]. Angle Orthod, 2002, 72(2): 175-179.
21 Hendrix I, Carels C, Kuijpers-Jagtman AM, et al. A radiographic study of posterior apical root resorption in orthodontic patients[J]. Am J Orthod Dentofacial Orthop, 1994, 105(4): 345-349.
22 Sharab LY, Morford LA, Dempsey J, et al. Genetic and treatment-related risk factors associated with external apical root resorption (EARR) concurrent with orthodontia[J]. Orthod Craniofac Res, 2015, 18(): 71-82.
23 Weltman B, Vig KW, Fields HW, et al. Root resorption associated with orthodontic tooth movement: a systematic review[J]. Am J Orthod Dentofacial Orthop, 2010, 137(4): 462-476.
24 Fernandes LQP, Figueiredo NC, Montalvany Antonucci CC, et al. Predisposing factors for external apical root resorption associated with orthodontic treatment[J]. Korean J Orthod, 2019, 49(5): 310-318.
25 Mirabella AD, Artun J. Risk factors for apical root resorption of maxillary anterior teeth in adult ortho-dontic patients[J]. Am J Orthod Dentofacial Orthop, 1995, 108(1): 48-55.
26 Kolcuoğlu K, Oz AZ. Comparison of orthodontic root resorption of root-filled and vital teeth using micro-computed tomography[J]. Angle Orthod, 2020, 90(1): 56-62.
27 Linge L, Linge BO. Patient characteristics and treatment variables associated with apical root resorption during orthodontic treatment[J]. Am J Orthod Dentofacial Orthop, 1991, 99(1): 35-43.
28 Cutrera A, Allareddy V, Azami N, et al. Is short root anomaly (SRA) a risk factor for increased external apical root resorption in orthodontic patients? A retrospective case control study using cone beam computerized tomography[J]. Orthod Craniofac Res, 2019, 22(1): 32-37.
29 Harris DA, Jones AS, Darendeliler MA. Physical properties of root cementum: part 8. Volumetric analysis of root resorption craters after application of controlled intrusive light and heavy orthodontic forces: a microcomputed tomography scan study[J]. Am J Orthod Dentofacial Orthop, 2006, 130(5): 639-647.
30 Acar A, Canyürek U, Kocaaga M, et al. Continuous vs. discontinuous force application and root resorption[J]. Angle Orthod, 1999, 69(2): 159-163.
31 Parker RJ, Harris EF. Directions of orthodontic tooth movements associated with external apical root resorption of the maxillary central incisor[J]. Am J Orthod Dentofacial Orthop, 1998, 114(6): 677-683.
32 Cardinal L, da Rosa Zimermann G, Mendes FM, et al. The impact of rapid maxillary expansion on maxi-llary first molar root morphology of cleft subjects[J]. Clin Oral Investig, 2018, 22(1): 369-376.
33 Jacob HB, Ribeiro GLU, English JD, et al. A 3-D evaluation of transverse dentoalveolar changes and maxillary first molar root length after rapid or slow maxillary expansion in children[J]. Dental Press J Orthod, 2019, 24(3): 79-87.
34 da Silva Filho OG, Mendes Ode F, Ozawa TO, et al. Behavior of partially formed roots of teeth submitted to orthodontic movement[J]. J Clin Pediatr Dent, 2004, 28(2): 147-154.
35 Wan J, Zhou SD, Wang JW, et al. Three-dimensio-nal analysis of root changes after orthodontic treatment for patients at different stages of root development[J]. Am J Orthod Dentofacial Orthop, 2023, 163(1): 60-67.
36 程灿, 李小彤, 刘鹤. 替牙期牵引上颌埋伏阻生中切牙的疗效观察[J]. 中华口腔医学杂志, 2016, 51(5): 263-268.
Cheng C, Li XT, Liu H. Evaluation of the orthodontic treatment outcome in patients with impacted maxillary central incisor in the mixed dentition[J]. Chin J Stomatol, 2016, 51(5): 263-268.
37 李晴晴. 替牙期牵引上颌唇侧倒置埋伏中切牙的临床效果分析[D]. 大连: 大连医科大学, 2019.
Li QQ. Clinical effect analysis of maxillary labial inverted embedded central incisor traction during dentition replacement[D]. Dalian: Dalian Medical University, 2019.
38 陈国锋, 王笑辰, 王亮, 等. 垂直位埋伏阻生上颌中切牙正畸牵引治疗牙根发育的研究[J]. 口腔医学, 2020, 40(4): 330-333.
Chen GF, Wang XC, Wang L, et al. Study of the vertically impacted maxillary incisors’ root development during orthodontic traction[J]. Stomatology, 2020, 40(4): 330-333.
39 谢蕾, 肖遥, 曾锦, 等. 牙根发育对正畸牵引后埋伏前牙牙根及牙周组织的影响[J]. 上海口腔医学, 2021, 30(2): 162-166.
Xie L, Xiao Y, Zeng J, et al. Effect of root development on the root and periodontal absorptions of maxillary impacted anterior teeth after orthodontic traction[J]. Shanghai J Stomatol, 2021, 30(2): 162-166.
40 Hu H, Hu RD, Wu GS, et al. The evaluation of late-ral incisor adjacent to treated labial inversely impac-ted maxillary central incisor: a retrospective follow-up study[J]. Am J Orthod Dentofacial Orthop, 2023, 164(1): 57-66.
41 Kinzinger G, Savvaidis S, Gülden N, et al. Effects of two different functional appliances on root deve-lopment of posterior teeth: activator vs. bite-jumping appliance[J]. J Orofac Orthop, 2010, 71(3): 235-245.
42 Yilmaz BS, Seker ED, Yilmaz HN, et al. Do we pay for maxillary protraction? Evaluation of the effects of Alt-RAMEC protocol and face mask treatment on root development[J]. Clin Oral Investig, 2022, 26(3): 3203-3211.
43 Seker ED, Yagci A, Kurt Demirsoy K. Dental root development associated with treatments by rapid maxillary expansion/reverse headgear and slow ma-xillary expansion[J]. Eur J Orthod, 2019, 41(5): 544-550.
44 Killiany DM. Root resorption caused by orthodontic treatment: an evidence-based review of literature[J]. Semin Orthod, 1999, 5(2): 128-133.
45 黄丽, 徐晓梅. 替牙期正畸治疗对上中切牙牙根发育的影响[J]. 北京口腔医学, 2015, 23(6): 346-348.
Huang L, Xu XM. The relationship between root development of maxillary central incisor and orthodontic treatment[J]. Beijing J Stomatol, 2015, 23(6): 346-348.
[1] Jiaojiao Li,Jun Liu. Research progress on early fixed orthodontic treatment of traumatic teeth [J]. Int J Stomatol, 2024, 51(4): 498-504.
[2] Wang Nannan,He Hong,Hua Fang. Research progress on the risk factors of orthodontically induced enamel demineralization [J]. Int J Stomatol, 2024, 51(1): 91-98.
[3] Wang Jingnan,Deng Shuli.. Root dysplasia of teeth: a review [J]. Int J Stomatol, 2023, 50(6): 639-645.
[4] Wang Qiqiu,Zhi Qinghui.. Research progress on treatments of enamel white spot lesions [J]. Int J Stomatol, 2022, 49(6): 717-723.
[5] Zhang Qi,Fan Cunhui,Yang Qian,Li Ran,Xu Xiaolin,Ding Wei,Wang Wenhui,Yang Caixiu. Dental arch morphology between patients with unilateral complete cleft lip and palate and patients with non-cleft lip and palate with a class Ⅲ skeletal relationship in mixed dentition stage: a comparative study [J]. Int J Stomatol, 2022, 49(2): 144-152.
[6] Zhou Mengqi,Chen Xuepeng,Fu Baiping. Strategies for preventing alveolar-bone dehiscence and fenestration during orthodontic treatment [J]. Int J Stomatol, 2021, 48(5): 600-608.
[7] Liu Ling,Gong Renguo,Dong Xiuhua,Liu Rumeng. Meta-analysis of the long-term stability of serious anterior skeletal open-bite malocclusion after orthodontic surgery [J]. Int J Stomatol, 2021, 48(2): 173-179.
[8] Jin Zuolin. Craniofacial growth and development in early orthodontic and orthopedic treatment [J]. Int J Stomatol, 2021, 48(1): 7-11.
[9] Zhao Yujie,Guan Xiaoyan,Li Xiaolan,Chen Qijun,Wang Qian,Liu Jianguo. Research progress on macrophage polarization involved in the regulation of orthodontic tooth movement [J]. Int J Stomatol, 2020, 47(4): 478-483.
[10] Chen Yiyin,Liu Junqi,Li Chenghao. Effects of cleft characteristics and orthodontic treatment on alveolar bone grafting in patients with cleft lip and palate [J]. Int J Stomatol, 2020, 47(3): 345-350.
[11] Chen Yu,Jiang Huan,Liu Nan,Lu Chenmeng,Tang Zhongyuan,Han Ruyu,Hu Min. Effects of orthodontic treatment on changes in upper airway and peripheral structure in patients with skeletal Class Ⅱ malocclusion [J]. Int J Stomatol, 2019, 46(5): 578-584.
[12] Gao Jie,Ma Rui,Ge Zhenlin. Effectiveness of heat-activated Ni-Ti wires for orthodontic treatment: a systematic review [J]. Int J Stomatol, 2019, 46(4): 393-399.
[13] He Yuwei,Zhang Zhijun,Xie Yulang,Liang Yinghao. Psychological status of orthodontic adolescents [J]. Int J Stomatol, 2019, 46(4): 413-419.
[14] Li Jinjin, Pan Jian. Research progress on tooth autotransplantation combined with orthodontic treatment [J]. Inter J Stomatol, 2018, 45(1): 91-96.
[15] Xu Jing, Zhang Xiaorong. Research progress on the effects of orthodontic treatment on the upper airway [J]. Inter J Stomatol, 2017, 44(5): 544-449.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!