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微型螺钉辅助快速腭扩展成功相关因素的评估

Evaluation of factors related to the success of miniscrew-assisted rapid palatal expansion.

作者信息

Oliveira Cibele B, Ayub Priscila, Angelieri Fernanda, Murata Wilson H, Suzuki Selly S, Ravelli Dirceu B, Santos-Pinto Ary

出版信息

Angle Orthod. 2021 Mar 1;91(2):187-194. doi: 10.2319/051420-436.1.

Abstract

OBJECTIVES

To evaluate whether the success of miniscrew-assisted rapid palatal expansion (MARPE), performed in patients with advanced bone maturation is related to factors such as midpalatal suture (MPS) maturation, age, sex, or bicortical mini-implant anchorage.

MATERIALS AND METHODS

Twenty-eight cone beam computed tomography (CBCT) scans of adults and post-pubertal adolescents treated by MARPE were included in the sample. CBCT images before (T0) and after expansion (T1) were used to evaluate the skeletal changes and the success or failure of MARPE. Axial images of MPS were extracted from T0 and classified into one of the five maturation stages. The correlation between MARPE success and the factors of age, sex, MPS maturation, and bicortical mini-implant anchorage was investigated.

RESULTS

Only the age showed a statistically significant negative correlation with MARPE success and all the skeletal measures. There was an 83.3% success rate among individuals aged 15 to 19 years, 81.8% from 20 to 29 years, and 20% from 30 to 37 years. MPS maturation showed a negative correlation with the expansion effect. Subjects with stages B or C of MPS maturation showed a 100% success rate, followed by stage D (62.5%) and stage E (58.3%).

CONCLUSIONS

As age increased, there was a decrease in MARPE success and the skeletal effects of maxillary expansion. Sex and bicortical mini-implant anchorage were not shown to be relevant factors. There was no correlation between MPS maturation and MARPE success; however, it was observed that all cases of MARPE failure were classified as stage D or E of MPS maturation.

摘要

目的

评估在骨成熟度较高的患者中进行微螺钉辅助快速腭中缝扩展术(MARPE)的成功率是否与诸如腭中缝(MPS)成熟度、年龄、性别或双皮质微种植体支抗等因素相关。

材料与方法

样本纳入了28例接受MARPE治疗的成人及青春期后青少年的锥形束计算机断层扫描(CBCT)图像。利用扩展前(T0)和扩展后(T1)的CBCT图像评估骨骼变化以及MARPE的成功或失败情况。从T0中提取MPS的轴向图像并将其分类为五个成熟阶段之一。研究了MARPE成功率与年龄、性别、MPS成熟度和双皮质微种植体支抗等因素之间的相关性。

结果

仅年龄与MARPE成功率及所有骨骼测量指标呈统计学显著负相关。15至19岁个体的成功率为83.3%,20至29岁为81.8%,30至37岁为20%。MPS成熟度与扩展效果呈负相关。MPS成熟度为B或C阶段的受试者成功率为100%,其次是D阶段(62.5%)和E阶段(58.3%)。

结论

随着年龄增长,MARPE成功率及上颌扩展的骨骼效果降低。性别和双皮质微种植体支抗未显示为相关因素。MPS成熟度与MARPE成功率之间无相关性;然而,观察到MARPE失败的所有病例均被分类为MPS成熟度的D或E阶段。

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本文引用的文献

1
Predictors of midpalatal suture expansion by miniscrew-assisted rapid palatal expansion in young adults: A preliminary study.
Korean J Orthod. 2019 Nov;49(6):360-371. doi: 10.4041/kjod.2019.49.6.360. Epub 2019 Nov 26.
4
Effects of monocortical and bicortical mini-implant anchorage on bone-borne palatal expansion using finite element analysis.
Am J Orthod Dentofacial Orthop. 2017 May;151(5):887-897. doi: 10.1016/j.ajodo.2016.10.025.
5
Miniscrew-assisted rapid palatal expander (MARPE): the quest for pure orthopedic movement.
Dental Press J Orthod. 2016 Jul-Aug;21(4):17-23. doi: 10.1590/2177-6709.21.4.017-023.oin.
6
Nonsurgical miniscrew-assisted rapid maxillary expansion results in acceptable stability in young adults.
Angle Orthod. 2016 Sep;86(5):713-20. doi: 10.2319/101415-689.1. Epub 2016 Mar 3.
7
Tooth-borne vs bone-borne rapid maxillary expanders in late adolescence.
Angle Orthod. 2015 Mar;85(2):253-62. doi: 10.2319/030514-156.1. Epub 2014 Dec 9.
8
Midpalatal suture maturation: classification method for individual assessment before rapid maxillary expansion.
Am J Orthod Dentofacial Orthop. 2013 Nov;144(5):759-69. doi: 10.1016/j.ajodo.2013.04.022.
9
Miniscrew-assisted nonsurgical palatal expansion before orthognathic surgery for a patient with severe mandibular prognathism.
Am J Orthod Dentofacial Orthop. 2010 Jun;137(6):830-9. doi: 10.1016/j.ajodo.2007.10.065.
10
Palatal bone density in adult subjects: implications for mini-implant placement.
Angle Orthod. 2010 Jan;80(1):137-44. doi: 10.2319/011909-40.1.

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