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含乳胶和不含乳胶的颌间正畸弹力线的力学特性及结构分析

Mechanical Characterization and Structural Analysis of Latex-Containing and Latex-Free Intermaxillary Orthodontic Elastics.

作者信息

Gurdán Zsuzsanna, Turzó Kinga, Lőrinc Laura, Szabó Péter, Karádi Kristóf, Lukács András, Told Roland, Kardos Kinga, Maróti Péter

机构信息

Department of Paediatric and Adolescent Dentistry, Clinical Center, Medical School, University of Pécs, Tüzér Str. 1., H-7623 Pécs, Hungary.

Environmental Analytical and Geoanalytical Research Group, University of Pécs, Ifjúság Str. 20, H-7624 Pécs, Hungary.

出版信息

Polymers (Basel). 2022 Oct 23;14(21):4488. doi: 10.3390/polym14214488.

Abstract

Class II malocclusion is one of the most common dental anomalies and the use of intermaxillary elastomers is the standard method in its treatment. However, orthodontic elastics cannot exert continuous force over a period of time due to force degradation. Our goal was to mechanically characterize the different types of elastomers during static and cyclic loads, based on uniform methodology and examine the morphological changes after loading. Ten types of latex-containing and four latex-free intermaxillary elastics were examined from six different manufacturers. To determine the mechanical characteristics of the elastomers, tensile tests, cyclical tensile fatigue tests and 24 h relaxation tests were performed, and the elastics were also subjected to scanning electron microscopy (SEM) and Raman spectroscopy. Regardless of the manufacturer, the latex-containing elastomers did not show significant differences in the percentage of elongation at break during the tensile test. Only one type of latex-containing elastomer did not tear during the 24 h cyclical fatigue test. Fatigue was confirmed by electron microscopy images, and the pulling force reduced significantly. During the force relaxation test, only one latex-free ligature was torn; the force degradation was between 7.8% and 20.3% for latex ligatures and between 29.6% and 40.1% for latex-free elastomers. The results showed that dynamic loading was more damaging to ligatures than static loading, latex-containing elastomers were more resistant than latex-free elastics, and which observation could have clinical consequences or a potential effect on patient outcome.

摘要

安氏II类错牙合是最常见的牙齿畸形之一,使用颌间弹力牵引是其治疗的标准方法。然而,由于力的衰减,正畸弹力牵引不能在一段时间内持续施力。我们的目标是基于统一的方法,对不同类型的弹力牵引在静态和循环载荷下进行力学特性表征,并检查加载后的形态变化。从六个不同制造商处选取了十种含乳胶和四种不含乳胶的颌间弹力牵引进行研究。为了确定弹力牵引的力学特性,进行了拉伸试验、循环拉伸疲劳试验和24小时松弛试验,并且还对弹力牵引进行了扫描电子显微镜(SEM)和拉曼光谱分析。无论制造商如何,含乳胶的弹力牵引在拉伸试验中的断裂伸长率百分比均未显示出显著差异。在24小时循环疲劳试验中,只有一种含乳胶的弹力牵引没有撕裂。通过电子显微镜图像证实了疲劳,并且拉力显著降低。在力松弛试验中,只有一根不含乳胶的结扎丝撕裂;含乳胶结扎丝的力衰减在7.8%至20.3%之间,不含乳胶的弹力牵引的力衰减在29.6%至40.1%之间。结果表明,动态加载对结扎丝的损害比静态加载更大,含乳胶的弹力牵引比不含乳胶的弹力牵引更具抗性,并且这一观察结果可能会对临床产生影响或对患者的治疗结果产生潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6258/9654203/ec5086877c6b/polymers-14-04488-g001.jpg

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