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拐点:上颌中切牙腭面曲线上舌侧托槽定位的转矩参考。

The inflection point: a torque reference for lingual bracket positioning on the palatal surface curvature of the maxillary central incisor.

机构信息

Department of Developmental Sciences, Division of Orthodontics, Faculty of Dentistry, Beirut Arab University (BAU), Beirut Campus, Main Building, 1st Floor, Tareek El Jadida P.O. Box 11-5020 Riad El Solh 11072809, Beirut, Lebanon.

Department of Orthodontics and Dentofacial Orthopedics, Henry M. Goldman School of Dental Medicine, Boston University, Boston, USA.

出版信息

Prog Orthod. 2018 Oct 8;19(1):39. doi: 10.1186/s40510-018-0234-0.

Abstract

BACKGROUND

Contrary to buccal orthodontics, lingual orthodontics has no reference for vertical bracket positioning on the maxillary central incisor. The aim of this study was to provide a reference point in relation to torque for lingual bracket positioning on the palatal surface curvature (PSC) of the maxillary central incisor.

METHODS

Cone beam computed tomography (CBCT) radiographs of 50 right maxillary central incisors from archives of a dental radiographic center were transferred to Photoshop, where their PSC was traced using pen-tool. The PSC torque angle values of the incisors were calculated in Excel using cubic poly-Bezier curves at 0.5-mm increments and at the inflection point of PSC. Descriptive statistics for the torque angle values of the increments and for the inflection point for the 50 incisors were then calculated. One-way ANOVA test was used to detect systematic differences between the increments, and Tukey test was used post-hoc.

RESULTS

For all incisors, increments incisal to inflection point exhibited progressive decrease in torque angle values from the first-calculated increment to inflection point while increments cervical to inflection point exhibited progressive increase from inflection point to last-calculated increment. Mean torque angle values of all the increments and inflection point showed high standard deviations and vast range of values. One-way ANOVA test was highly statistically significant (p < 0.0001) and most pairwise comparisons of the increments using Tukey test were significant.

CONCLUSIONS

Inflection point can be used as a reference for bracket positioning on PSC. Cervically oriented shifts in vertical bracket position cause crown labial/root palatal movement cervical to inflection point and crown palatal/root labial movement incisal to it. A scientific mathematical justification for customized bracket torque prescriptions on PSC of maxillary central incisor was also provided.

摘要

背景

与颊面正畸相反,舌侧正畸对上颌中切牙的托槽垂直定位没有参考。本研究旨在为上颌中切牙腭表面曲线上(PSC)舌侧托槽定位提供一个与转矩相关的参考点。

方法

将来自牙科放射中心档案的 50 个右侧上颌中切牙的锥形束计算机断层扫描(CBCT)射线照相转移到 Photoshop 中,使用钢笔工具追踪其 PSC。使用 Excel 中的三次多项式 Bezier 曲线,以 0.5 毫米的增量和 PSC 的拐点,计算切牙 PSC 转矩角值。然后计算 50 个切牙增量和拐点的转矩角值的描述性统计数据。使用单向方差分析检验增量之间是否存在系统差异,并进行事后 Tukey 检验。

结果

对于所有切牙,从第一增量到拐点的切牙内增量表现出转矩角值逐渐减小,而从拐点到最后一增量的切牙颈增量表现出转矩角值逐渐增大。所有增量和拐点的平均转矩角值均显示出高标准差和广泛的数值范围。单向方差分析检验具有高度统计学意义(p<0.0001),Tukey 检验的大多数增量两两比较均具有显著性。

结论

拐点可作为 PSC 托槽定位的参考。垂直托槽位置的颈向移位导致冠唇向/根腭向移动至拐点颈向,冠腭向/根唇向移动至拐点切向。还为上颌中切牙 PSC 的定制托槽转矩处方提供了科学的数学依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1471/6174120/feacc2e31eb0/40510_2018_234_Fig1_HTML.jpg

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