Three-dimensional changes of the mandibular arch after total arch distalization in skeletal Class III malocclusion.

IF 3.2
Youi Sreng, Ji-Hyun Lee, Tung Nguyen, Kee-Joon Lee, Kyung-Ho Kim, Chooryung J Chung
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Abstract

Objectives: To assess three-dimensional (3D) changes in tooth position, arch dimensions, and gingival levels after mandibular total arch distalization in skeletal Class III malocclusion.

Materials and methods: Skeletal Class III patients treated with mandibular total arch distalization using interradicular temporary anchorage devices were analyzed using stepwise 3D superimposition and reorientation of serial cone beam computed tomography (CBCT) and digital casts (N = 19). After mandibular regional superimposition of pre- (T0) and post-treatment (T1) CBCTs, the mandibles were segmented and merged with the corresponding digital casts, generating reoriented, superimposed T0 and T1 digital casts. Changes in individual tooth position, arch dimensions, occlusal plane, and clinical crown height (CCH) were measured.

Results: Mandibular teeth exhibited posterior movement ranging from 1.74 to 2.50 mm with significant lateral movement of the premolars and increase of inter-premolar width by 2.15-2.66 mm (P < .05). Extrusive movement of the entire dentition excluding the second molar was noted (P < .05), inducing changes of the occlusal plane. The overall changes in CCH were limited to -0.23 to 0.16 mm. CCH significantly increased in the premolars and decreased in the first molar (P < .05).

Conclusions: Based on a stepwise digital superimposition, mandibular total arch distalization induced complex 3D changes in the mandibular arch, including distalization, extrusion, and increase of interpremolar width. Gingival margins generally were maintained, though mild-to-moderate recession was suggested in around 20% of the premolars, which may require attention.

ⅲ类骨错颌全弓远端后下颌弓的三维变化。
目的:评价骨性ⅲ类错颌全弓远端后牙位、牙弓尺寸和牙龈水平的三维变化。材料和方法:采用连续锥形束计算机断层扫描(CBCT)和数字模型逐步三维叠加和重定向的方法,对采用根间临时支具治疗下颌全弓远端的骨骼III类患者(N = 19)进行分析。在对治疗前(T0)和治疗后(T1) cbct进行下颌区域叠加后,对下颌骨进行分割并与相应的数字模型合并,生成重定向、叠加的T0和T1数字模型。测量个体牙位、牙弓尺寸、咬合平面和临床冠高(CCH)的变化。结果:下颌牙后移1.74 ~ 2.50 mm,前磨牙侧移明显,前磨牙间宽度增加2.15 ~ 2.66 mm (P < 0.05)。除第二磨牙外,整个牙列均有挤压运动(P < 0.05),引起咬合平面的改变。CCH的总体变化限制在-0.23 ~ 0.16 mm。前磨牙CCH升高,第一磨牙CCH降低(P < 0.05)。结论:基于逐步数字叠加,下颌总弓远端引起下颌弓复杂的三维变化,包括远端、挤压和解释磨牙宽度的增加。牙龈边缘一般得到维持,尽管大约20%的前磨牙有轻微到中度的衰退,这可能需要注意。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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