山东大学学报 (医学版) ›› 2024, Vol. 62 ›› Issue (3): 77-86.doi: 10.6040/j.issn.1671-7554.0.2024.0209
赵天然1,2,刘东旭1
ZHAO Tianran1,2, LIU Dongxu1
摘要: 目的 通过锥形束断层扫描技术(cone beam computed tomography, CBCT)研究评价上颌快速扩弓联合前方牵引对替牙期骨性Ⅲ类错牙合横向不足的治疗效果。 方法 选择替牙期骨性Ⅲ类错牙合患儿19例,平均(8.47±0.70)岁。分别于上颌快速扩弓联合前方牵引治疗前(T1)及扩弓结束3个月后(T2)拍摄CBCT,测量上颌第一磨牙倾斜度、上颌前磨牙段及第一磨牙牙冠宽度、牙槽突宽度、上颌基骨宽度、牙槽嵴高度、第二前磨牙牙胚在牙槽骨中的位置等,比较治疗前后各测量项目的差异。 结果 从T1到T2阶段,上颌第一前磨牙牙冠宽度增加(2.37±3.47)mm(P=0.008),第二乳磨牙牙冠宽度增加量中位数为3.37 mm(P=0.009),第一磨牙牙冠宽度增加(2.60±2.53)mm(P<0.001),上颌第一前磨牙、第二乳磨牙、第一磨牙对应牙槽突宽度分别增加(1.63±2.45)mm(P=0.010)、(2.12±2.59)mm(P=0.002)、(1.98±2.10)mm(P<0.001),第一磨牙腭根根尖宽度、第一磨牙阻抗中心宽度分别增加(2.00±2.40)mm(P=0.002)、(2.00±2.07)mm(P<0.001),差异具有统计学意义;上颌第一磨牙倾斜度(P左=0.196、P右=0.251)、上颌基骨宽度(P=0.192)、下颌基骨宽度(P=0.266)及第一磨牙根分叉宽度(P=0.678)、上颌第一前磨牙牙槽骨高度(P=0.136)、第二乳磨牙牙槽骨高度(P=0.638)、第一磨牙牙槽骨高度(P=0.274)、第二前磨牙牙胚在牙槽骨中的相对位置(P=0.058)治疗前后差异均无统计学意义。 结论 上颌快速扩弓联合前方牵引可明显改善替牙期骨性Ⅲ类错牙合患儿中后段牙弓及颌骨横向不调,治疗对前磨牙牙胚在牙槽骨中的相对位置无影响。
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[1] Clemente R, Contardo L, Greco C, et al. Class Ⅲ treatment with skeletal and dental anchorage: a review of comparative effects[J]. Biomed Res Int, 2018, 2018: 7946019. doi:10.1155/2018/7946019. [2] 张晓艳, 贺颖, 刘东旭. 骨性安氏Ⅲ类错牙合上颌骨慢扩弓结合前方牵引的疗效评价[J].山东大学学报(医学版), 2006(6): 618-621. ZHANG Xiaoyan, HE Ying, LIU Dongxu. Effects of skeletal class Ⅲ malocclusions by maxillary protraction[J]. Journal of Shandong University(Health Sciences), 2006, 44(6): 618-621. [3] Priyadarshini J, Mahesh CM, Chandrashekar BS, et al. Stress and displacement patterns in the craniofacial skeleton with rapid maxillary expansion-a finite element method study[J]. Prog Orthod, 2017, 18(1): 17. [4] Ardani IGAW, Wicaksono A, Hamid T. The occlusal plane inclination analysis for determining skeletal Class III malocclusion diagnosis[J]. Clin Cosmet Investig Dent, 2020,12:163-171. doi:10.2147/CCIDE.S248983. [5] Alexander AE, McNamara JA Jr, Franchi L, et al. Semilongitudinal cephalometric study of craniofacial growth in untreated Class Ⅲ malocclusion[J]. Am J Orthod Dentofacial Orthop, 2009,135(6): 700.e1-14; discussion 700-1. [6] 徐舒豪, 黄诗言, 饶南荃, 等.上颌横向发育不足的临床治疗进展[J]. 临床口腔医学杂志, 2016, 32(4): 251-253. XU Shuhao, HUANG Shiyan, RAO Nanquan, et al. Clinical treatment development of maxillary transverse deficiency[J]. Journal of Clinical Stomatology, 2016, 32(4): 251-253. [7] 王春玲, 宋宇, 刘东旭. 前方牵引结合上颌扩弓装置早期治疗骨性Ⅲ类错牙合的硬组织变化[J]. 山东医科大学学报, 2000, 38(2): 205-207. WANG Chunling, SONG Yu, LIU Dongxu. Effects of face mask/expansion therapy on hard tissues in class III children[J]. Journal of Shandong Medical University, 2000,38(2): 205-207. [8] 刘从华, 毛琴, 王春林.上颌横向扩弓技术的应用及研究进展[J].口腔疾病防治, 2020, 28(11): 689-697. LIU Conghua, MAO Qin, WANG Chunlin. Advances and applications of the maxillary expansion technique[J]. Journal of Prevention and Treatment for Stomatological Diseases, 2020, 28(11): 689-697. [9] Lee KJ, Choi SH, Choi TH, et al. Maxillary transverse expansion in adults: rationale, appliance design, and treatment outcomes[J]. Semin Orthod, 2018, 24(1): 52-65. [10] Bazargani F, Lund H, Magnuson A,et al. Skeletal and dentoalveolar effects using tooth-borne and tooth-bone-borne RME appliances: a randomized controlled trial with 1-year follow-up[J]. Eur J Orthod, 2021,43(3):245-253. [11] Lagravère MO, Ling CP, Woo J, et al. Transverse, vertical, and anterior-posterior changes between tooth-anchored versus Dresden bone-anchored rapid maxillary expansion 6 months post-expansion: a CBCT randomized controlled clinical trial[J]. Int Orthod, 2020, 18(2): 308-316. [12] Solano MP, Aceytuno PP, Solano RE, et al. Skeletal, dentoalveolar and dental changes after "mini-screw assisted rapid palatal expansion" evaluated with cone beam computed tomography[J]. J Clin Med, 2022, 11(16): 4652-4661. [13] 王蕊蕊, 刘洪, 刘东旭. 基于三维图像识别颅面部标志点的准确性及可靠性评价[J]. 山东大学学报(医学版), 2011, 49(9): 83-87. WANG Ruirui, LIU Hong, LIU Dongxu. Accuracy and reliability of craniofacial landmark identification based on three-dimensional images[J]. Journal of Shandong University(Health Sciences), 2011, 49(9): 83-87. [14] 王嘉艺,王珊,王林. CBCT在口腔正畸学头影测量中的应用与发展[J].口腔医学, 2016, 36(11): 1047-1050. WANG Jiayi, WANG Shan, WANG Lin. Application and development of CBCT in the orthodontics cephalometrics[J]. Stomatology, 2016, 36(11): 1047-1050. [15] 陈雪凌, 吴子忠, 刘东旭,等. 前方牵引联合快速扩弓对安氏Ⅲ类错牙合畸形患者上气道影响的CBCT研究[J]. 山东大学学报(医学版), 2015, 53(8): 71-78. CHEN Xueling, WU Zizhong, LIU Dongxu, et al. CBCT evaluation of the upper airway morphological changes in skeletal Class Ⅲ malocclusion patients using protraction and rapid maxillary expansion appliance. Journal of Shandong University(Health Sciences), 2015, 53(8): 71-78. [16] Christie KF, Boucher N, Chung CH. Effects of bonded rapid palatal expansion on the transverse dimensions of the maxilla: a cone-beam computed tomography study[J]. Am J Orthod Dentofacial Orthop, 2010,137(4 Suppl):S79-85. [17] 王延海, 刘尹莉, 刘东旭. 30例骨性Ⅲ类畸形扁桃体肥大儿童扁桃体切除术后模拟上气道内部气流的变化[J]. 山东大学学报(医学版), 2021, 59(8): 67-73. WANG Yanhai, LIU Yinli, LIU Dongxu. Simulation of upper airway hydrodynamic characteristics in 30 skeletal Class Ⅲ children with hypertrophic tonsils before and after tonsillectomy[J]. Journal of Shandong University(Health Sciences), 2021, 59(8): 67-73. [18] Buck LM, Dalci O, Darendeliler MA, et al.Volumetric upper airway changes after rapid maxillary expansion: a systematic review and meta-analysis[J]. Eur J Orthod, 2017, 39(5): 463-473. [19] Caldas LD, Takeshita WM, Machado AW, et al. Effect of rapid maxillary expansion on nasal cavity assessed with cone-beam computed tomography[J]. Dental Press J Orthod, 2020, 25(3): 39-45. [20] 韩筱. 成人上颌骨宽度不足MSE治疗后的鼻、牙及上颌骨宽度变化[D].济南,山东大学, 2021. [21] 谭晓明, 张凯莉, 张纯溪,等. 骨性Ⅲ类错(牙合)与Ⅰ类个别正常(牙合)患者基骨及牙弓宽度的比较研究[J].口腔医学, 2021, 41(4): 309-311, 366. TAN Xiaoming, ZHANG Kaili, ZHANG Chunxi, et,al. A comparative study of basal and dental arch width in skeletal Class Ⅲ malocclusion and Class Ⅰ normal occlusion[J]. Stomatology, 2021, 41(4): 309-311,366. [22] 黄仲敏, 张赟, 李小兵. 替牙列早期上颌慢速扩弓对上颌中段牙及牙槽嵴的影响[J].上海口腔医学, 2023, 32(5): 501-507. HUANG Zhongmin, ZHANG Yun, LI Xiaobing. Efficacy of early maxillary slow expansion in mixed dentition on maxillary teeth and alveolar crest in the central segment[J]. Shanghai Journal of Stomatology, 2023, 32(5): 501-507. [23] Jibin J, Anilkumar. Methods of maxillary arch expansion in orthodontics: a literature review[J]. Int J Appl Dent Sci, 2021, 7(2): 251-254. [24] Corbridge JK, Campbell PM, Taylor R, et al. Transverse dentoalveolar changes after slow maxillary expansion[J]. Am J Orthod Dentofacial Orthop, 2011, 140(3): 317-325. [25] Garrett B, Caruso JM, Rungcharassaeng K, et al. Skeletal effects to the maxilla after rapid maxillary expansion assessed with cone-beam computed tomography[J]. Am J Orthod Dentofacial Orthop. 2008, 134(1): 8-9. [26] Andrews LF, Andrews WA. The six elements of orofacial harmony[J]. Androws J, 2000, 1(1): 13-22. [27] Ricketts RM. Perspectives in the clinical application of cephalometrics. the first fifty years[J]. Angle Orthod, 1981, 51(2): 115-150. [28] Leonardi R, Annunziata A, Caltabiano M. Landmark identification error in posteroanterior cephalometric radiography. a systematic review[J]. Angle Orthods. 2008, 78(4): 761-765. [29] 史晓扬, 刘东旭. 上颌横向发育不足的研究进展[J]. 口腔医学, 2022, 42(6): 557-561. SHI Xiaoyang, LIU Dongxu. Research advances in maxillary transverse deficiency[J]. Stomatology, 2022, 42(6): 557-561. [30] Tamburrino R, Boucher N,Vanarsdall R, et al. The transverse dimension: diagnosis and relevance to functional occlusion?[J]. RWISO J, 2010, 2(1): 13-22. [31] Koo YJ, Choi SH, Keum BT, et al. Maxillomandibular arch width differences at estimated centers of resistance:comparison between normal occlusion and skeletal Class III malocclusion[J]. Korean J Orthod, 2017, 47(3): 167-175. [32] Pereira JDS, Jacob HB, Locks A, et al. Evaluation of the rapid and slow maxillary expansion using cone-beam computed tomography: a randomized clinical trial[J]. Dental Press J Orthod, 2017, 22(2): 61-68. [33] Bazargani F, Lund H, Magnuson A, et al. Skeletal and dentoalveolar effects using tooth-borne and tooth-bone-borne RME appliances: a randomized controlled trial with 1-year follow-up[J]. Eur J Orthod, 2021, 43(3): 245-253. [34] ColinoGP, Del Fresno AI, CastilloML, et al. Skeletal and dentoalveolar changes in growing patients treated with rapid maxillary expansion measured in 3D cone-beam computed tomography[J]. Biomedicines, 2023, 11(12): 3305-3317. [35] Park JJ, Park YC, Lee KJ,et al. Skeletal and dentoalveolar changes after miniscrew-assisted rapid palatal expansion in young adults: a cone-beam computed tomography study[J]. Korean J Orthod, 2017, 47(2): 77-86. [36] Bastos R, Blagitz MN, Aragón MLSC,et al.Periodontal side effects of rapid and slow maxillary expansion: a systematic review[J]. Angle Orthod, 2019, 89(4): 651-660. [37] Zhang Y, Yang J, Li X. Assessment of early dental arch growth modification with removable maxillary expansion by cone-beam computed tomography and lateral cephalometric radiographs: a retrospective study[J]. BMC Oral Health, 2023, 23(1): 727-739. [38] 付鼎,厉松. 快速上颌扩展中颊侧骨板改建的研究进展[J]. 北京口腔医学, 2012, 20(5): 296-297. FU Ding, LI Song. Advances of buccal alveolar bone remodeling in rapid maxillary expansion[J]. Beijing Journal of Stomatology, 2012, 20(5): 296-297. [39] McMullen C, Al Turkestani NN, Ruellas ACO, et al. Three-dimensional evaluation of skeletal and dental effects of treatment with maxillary skeletal expansion[J]. Am J Orthod Dentofacial Orthop, 2022, 161(5): 666-678. [40] Lin L, Ahn HW, Kim SJ, et al. Tooth-borne vs bone-borne rapid maxillary expanders in late adolescence[J]. Angle Orthod, 2015, 85(2): 253-262. [41] Abdalla Y, Brown L, Sonnesen L. Effects of rapid maxillary expansion on upper airway volume: a three-dimensional cone-beam computed tomography study[J]. Angle Orthod, 2019, 89(6): 917-923. [42] Hakan El, Palomo JM. Three-dimensional evaluation of upper airway following rapid maxillary expansion: a CBCT study[J]. Angle Orthod, 2014, 84(2): 265-273. [43] Seubert BJ, Gaalaas L, Larson BE, et al. Evaluation of transverse maxillary growth on cone-beam computed tomography images[J]. Sci Rep, 2021, 11(1): 17462-17471. [44] Björk A, Skieller V. Growth in width of the maxilla studied by the implant method[J]. Scand J Plast Reconstr Surg, 1974, 8(1-2): 26-33. [45] Kartalian A, Gohl E, Adamian M, et al. Cone-beam computerized tomography evaluation of the maxillary dentoskeletal complex after rapid palatal expansion[J]. Am J Orthod Dentofacial Orthop, 2010, 138(4): 486-492. [46] 刘施瑶, 曾婧婧, 林久祥,等. 快速扩弓对生长发育期患者的上颌扩弓疗效[C] //中华口腔医学会口腔正畸专业委员会. 2016中国国际正畸大会暨第十五次全国口腔正畸学术会议论文汇编. 西安, 中华口腔医学会口腔正畸专业委员会, 2016: 259-261. [47] 罗卫红, 徐晓南, 李晓明,等. Hass矫治器与MSE矫治器治疗青少年上颌骨宽度不足的比较研究[J]. 实用口腔医学杂志, 2021, 37(6): 795-798. LUO Weihong, XU Xiaonan, LI Xiaoming et al. A comparative study of Hass appliance and MSE appliance in the treatment of juvenile with maxillary transverse deficiency[J]. Journal of Practical Stomatology, 2021, 37(6): 795-798. [48] 王娜娜, 曹丛, 刘东旭. 前方前牵引矫治前牙反牙合后下颌位置的变化[J]. 山东大学学报(医学版), 2013, 51(9): 95-99. WANG Nana, CAO Cong, LIU Dongxu. Changes in mandibular direction during and after protraction headgear treatment[J]. Journal of Shandong University(Health Sciences), 2013, 51(9): 95-99. [49] Haas AJ. Long-term posttreatment evaluation of rapid palatal expansion[J]. Angle Orthod, 1980, 50(3): 189-217. [50] Grassia VD apuzzo F, Jamilian A, et al. Comparison between rapid and mixed maxillary expansion through an assessment of arch changes on dental casts[J]. Prog Orthod, 2015, 16: 20-26. doi:10.1186/s40510-015-0089-6. [51] Laganà G, Paoloni V, Pavoni C, et al. Tridimensional changes in mandibular arch after rapid maxillary expansion therapy: a clinical study[J]. Children(Basel), 2023,10(5): 775-782. [52] Lagravère MO, Heo G, Major PW, et al. Meta-analysis of immediate changes with rapid maxillary expansion treatment[J]. J Am Dent Assoc, 2006, 137(1): 44-53. [53] 李菲菲, 丁寅, 夏春鹏,等. 犬下颌骨牵张成骨后恒牙胚牙周组织TGF-β1、BMP-2的表达[J]. 临床口腔医学杂志, 2006, 22(3): 154-156. LI Feifei, DING Yin, XIA Chunpeng, et al. Expressions of BMP-2, TGF-β1in periodontal tissue of dogs fourth premolar germ during mandibular distraction osteogenesis[J]. Journal of Clinical Stomatology, 2006, 22(3): 154-156. [54] 金作林, 林珠, 李红. 正畸移动狗乳磨牙对恒牙胚的影响[J]. 中华口腔医学杂志, 2003, 38(6): 466. JIN Zuolin, LIN Zhu, LI Hong. Effects of permanent tooth germ and its eruption during primary molar orthodontic movement in dog[J]. Chinese Journal of Stomatology, 2003, 38(6): 466. [55] 秦燕军, 沈云娟, 谷妍,等.骨性Ⅲ类畸形上颌前方牵引治疗的三维测量分析[J]. 上海口腔医学, 2014, 23(6): 699-703. QIN Yanjun, SHEN Yunjuan, GU Yan, et al. Three dimensional measurement and analysis of maxillary protraction treatment in skeletal Class Ⅲ malocclusion[J]. Shanghai Journal of Stomatology, 2014, 23(6): 699-703. |
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