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β-钛正畸曲中应力松弛的影响:第二部分。

Effects of stress relaxation in beta-titanium orthodontic loops: Part II.

作者信息

Júnior Roberto S S, Caldas Sergei G F R, Martins Lídia P, Martins Renato P

机构信息

a  Private practice, Goiânia, Goiás, Brazil.

b  Professor, Department of Odontology, Universidade Federal do Rio Grande do Norte, Natal, Rio Grande do Norte, Brazil.

出版信息

Angle Orthod. 2016 May;86(3):386-90. doi: 10.2319/112614-846.1. Epub 2015 Aug 11.

Abstract

OBJECTIVE

To determine which regions of beta-titanium T-loop springs (TLSs) are more affected by the stress relaxation over a 12-week period.

MATERIALS AND METHODS

Fifty TLS were previously activated by concentrated bends and divided into five groups of 10 each according to their evaluation periods: immediate assessment (G0), 24 hours (G1), 48 hours (G2), 1 week (G3), and 12 weeks (G4). Groups 1 to 4 were mounted into a structure simulating a clinical situation. After the experimental periods, the springs were scanned for measurement of their angles and numbered from 1 to 9. A two-way analysis of variance was used to detect differences among the angles measured and differences caused by time and also to detect interactions between those two factors. Tukey's test was used to find differences among the groups.

RESULTS

Time influenced the angulations of the TLSs (P < .001). Tukey post hoc test showed that G0 (84.1°) presented a different profile, whereas G1 (90.2°), G2 (90.7°), and G3 (91.1°) had similar profiles among each other, with G4 (92.6°) showing a mean value different from all other groups. A significant interaction was detected between activation time and angular deformation in the TLSs (P < .01).

CONCLUSION

Stress relaxation was observed in the TLSs. It was greatest within 24 hours and gradually increased up to 12 weeks. Two regions were identified as responsible for the relaxation of the TLSs: one at the bend between the vertical extensions of the springs and the base arch and the other at the preactivation bends made in the base arch.

摘要

目的

确定β钛T形圈弹簧(TLSs)的哪些区域在12周内受应力松弛的影响更大。

材料与方法

50个TLSs预先通过集中弯曲激活,并根据评估期分为五组,每组10个:即时评估(G0)、24小时(G1)、48小时(G2)、1周(G3)和12周(G4)。第1至4组安装在模拟临床情况的结构中。实验期结束后,对弹簧进行扫描以测量其角度,并从1到9编号。采用双向方差分析来检测测量角度之间的差异、时间引起的差异以及这两个因素之间的相互作用。使用Tukey检验来找出各组之间的差异。

结果

时间影响TLSs的角度(P <.001)。Tukey事后检验表明,G0(84.1°)呈现出不同的轮廓,而G1(90.2°)、G2(90.7°)和G3(91.1°)彼此之间轮廓相似,G4(92.6°)的平均值与所有其他组不同。在TLSs的激活时间和角变形之间检测到显著的相互作用(P <.01)。

结论

在TLSs中观察到应力松弛。在24小时内最大,并逐渐增加至12周。确定了两个导致TLSs松弛的区域:一个在弹簧垂直延伸部分与基弓之间的弯曲处,另一个在基弓上的预激活弯曲处。

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