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耐磨与耐疲劳性能:三种用于真空成型保持器的聚对苯二甲酸乙二醇酯和热塑性聚氨酯材料的体外比较。

Wear and fatigue resistance: An in-vitro comparison of three polyethylene terephthalate glycol and thermoplastic polyurethane materials for vacuum-formed retainers.

机构信息

Division of Orthodontics, School of Dentistry, University of Minnesota, Minneapolis, Minnesota, USA.

Private Practice, Brigham City, Utah, USA.

出版信息

Int Orthod. 2023 Jun;21(2):100748. doi: 10.1016/j.ortho.2023.100748. Epub 2023 Mar 17.

DOI:10.1016/j.ortho.2023.100748
PMID:36934632
Abstract

OBJECTIVE

To test the wear and fatigue resistance of three materials (Essix ACE®, Taglus®, and Zendura A®) for the fabrication of vacuum-formed retainers in an artificial oral environment.

MATERIAL AND METHODS

Wear resistance was tested by subjecting 21 retainers of each Essix ACE®, Taglus®, and Zendura A® to 12,000 wear cycles at 75N to simulate one year of retainer wear with moderate nighttime bruxing. Post-wear retainer thickness was compared to baseline measurements to calculate wear depth. Fatigue resistance was tested by flexing 15 retainers of each material at an angle of 25 degrees for 1,825 cycles to simulate one year of removing and reinserting a retainer five times per day. Retainers were visually inspected for fractures. Pairwise t-tests with correction using Tukey's method were used to determine significant differences between materials.

RESULTS

The mean wear depths were 0.155±0.021mm, 0.168±0.031mm, and 0.096±0.033mm for Essix ACE®, Taglus®, and Zendura A®, respectively. The wear depth of Zendura A® was significantly lower than that of both Essix ACE® (P<0.001) and Taglus® (P<0.001). There was no significant difference in wear depth between Essix ACE® and Taglus® (P=0.312). Under the parameters set for the fatigue resistance test, fractures did not occur on any of the tested materials.

CONCLUSIONS

Under the assumption of moderate nighttime bruxing for one year, Zendura A® is the most wear-resistant among the materials tested. With the assumption of retainer removal and reinsertion five times per day for one year, all three materials tested have the same ability to resist fatigue.

摘要

目的

在人工口腔环境中测试三种材料(Essix ACE®、Taglus®和 Zendura A®)用于制作真空成型保持器的耐磨性和耐疲劳性。

材料和方法

通过对 21 个 Essix ACE®、Taglus®和 Zendura A®的保持器施加 75N 的 12000 个磨损循环,模拟一年中度夜间磨牙的保持器佩戴磨损,测试耐磨性。佩戴后的保持器厚度与基线测量值进行比较,以计算磨损深度。通过对每种材料的 15 个保持器以 25 度的角度弯曲 1825 次,模拟每天五次去除和重新插入保持器一年的情况,测试耐疲劳性。通过视觉检查保持器是否有裂缝。使用 Tukey 方法校正的配对 t 检验用于确定材料之间的显著差异。

结果

Essix ACE®、Taglus®和 Zendura A®的平均磨损深度分别为 0.155±0.021mm、0.168±0.031mm和 0.096±0.033mm。Zendura A®的磨损深度明显低于 Essix ACE®(P<0.001)和 Taglus®(P<0.001)。Essix ACE®和 Taglus®的磨损深度无显著差异(P=0.312)。在耐疲劳性测试设定的参数下,三种测试材料均未发生断裂。

结论

在假设一年中度夜间磨牙的情况下,Zendura A®是三种测试材料中最耐磨的。在假设一年每天五次去除和重新插入保持器的情况下,三种测试材料都具有相同的耐疲劳性。

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