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首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Forces and moments applied during derotation of a maxillary central incisor with thinner aligners: An in-vitro study
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Forces and moments applied during derotation of a maxillary central incisor with thinner aligners: An in-vitro study

机译:在缩放上颌中央门牙的缩放期间应用的力和时刻:体外研究

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摘要

Introduction: Recent studies have shown that therapeutic loads applied to individual teeth by aligners may substantially exceed recommended values. The primary purpose of this study was to quantify force and moment components during derotation of a maxillary central incisor when 0.3-mm-thick or 0.4-mm-thick polyethylene terephthalate glycol aligners were used instead of conventional polyethylene terephthalate glycol aligners with a minimum thickness of 0.5 mm. Methods: The test setup consisted of an acrylic model of a maxilla with a separated right central incisor mounted on a 3-dimensional force and moment sensor. The force and moment components were recorded for aligners with thicknesses ranging from 0.3 to 0.75 mm during +/- 10(circle) rotation and derotation of the separated incisor. Results: Moments exerted by the thinnest aligner currently available, 0.5 mm, were 73.57 Nmm for the 10(circle) mesiorotation. In comparison, the corresponding moments with the 0.4-mm and 0.3-mm aligners were 41.08 and 17.84 Nmm, respectively. Moment values for derotation of the maxillary right central incisor into neutral position showed nonlinear return curves indicating viscoelastic material behavior. Conclusions: A significant load reduction can be achieved with the new thinner aligners. Because of the form instability of the 0.3-mm aligner during handling, we suggest the novel sequence 0.4, 0.5, and 0.75 mm for aligner systems based on sequentially increased material thickness. This sequence combines sufficiently low initial aligner stiffness and steady load increases in single setup steps. The viscoelastic behavior of polyethylene terephthalate glycol aligners observed during incisor derotation should lead to a reduction of the high initial load exerted directly after intraoral aligner insertion.
机译:简介:最近的研究表明,通过对准器施加到各个齿的治疗载荷可能基本上超过推荐的值。本研究的主要目的是在使用0.3mm厚的或0.4mm厚的聚对苯二甲酸二甲酸二甲酸二甲酸二甲酸乙酯对苯二甲酸乙二醇对准器代替具有最小厚度的常规聚对苯二甲酸甲醇对准器的情况下量化颌骨中央门牙的灭失期间的力和时刻组分。具有最小厚度的常规聚对苯二甲酸乙二醇对准器0.5毫米。方法:测试设置由夹具的丙烯酸模型组成,夹具的分离的右中央门牙安装在三维力和力矩传感器上。记录力和时刻组分,用于对准器,其厚度在+/- 10(圆)旋转期间0.3-0.75mm的旋转和分离的切牙的脱落。结果:由目前可用的最薄对准器施加的瞬间为0.5毫米,为10(圆圈)渗透为73.57 nmm。相比之下,具有0.4mm和0.3mm对准器的相应力矩分别为41.08和17.84nmm。将上颌右中央切入裂解成中立位置的瞬间值显示出指示粘弹性材料行为的非线性返回曲线。结论:新较薄的对准器可以实现显着的负载减少。由于在处理过程中0.3毫米对准器的不稳定性,我们建议基于顺序增加的材料厚度的对准器系统的新型序列0.4,0.5和0.75mm。该序列结合了足够低的初始对准器刚度和单个设置步骤中的稳定负载增加。在门牙灭放期间观察到的聚对苯二甲酸乙二醇酯对取对取酯的粘弹性行为应导致在口内对准器插入后直接施加的高初始载荷的降低。

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