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不同结扎系统的自锁托槽和传统托槽的摩擦行为

Friction behavior of self-ligating and conventional brackets with different ligature systems.

作者信息

Szczupakowski Alexandra, Reimann Susanne, Dirk Cornelius, Keilig Ludger, Weber Anna, Jäger Andreas, Bourauel Christoph

机构信息

Endowed Chair for Oral Technology, Rheinische Friedrich-Wilhelms University of Bonn, Welschnonnenstrasse 17, 53111, Bonn, Germany.

Department of Orthodontics, Rheinische Friedrich-Wilhelms University of Bonn, Bonn, Germany.

出版信息

J Orofac Orthop. 2016 Jul;77(4):287-95. doi: 10.1007/s00056-016-0035-3. Epub 2016 May 24.

Abstract

OBJECTIVES

Self-ligating brackets are widely believed to offer better clinical efficiency and, in particular, less friction. Thus, the goal of this in vitro investigation was to assess the friction behavior of different bracket/archwire/ligature combinations during simulated canine retraction. An important aspect of this work was to determine whether conventional bracket systems behave differently in passive or active self-ligating brackets used with a Slide™ ligature, an elastic ligature, or a steel ligature.

METHODS

Three conventional (Contour, Class One; Discovery(®), Dentaurum; Mystique MB, GAC) and six self-ligating (Carriere SL, Class One; Clarity™ SL, 3M Unitek; Damon3, Ormco; In-Ovation(®) C, GAC; Speed Appliance, Speed System™; QuicKlear(®), Forestadent(®)) bracket systems were analyzed. All brackets featured a 0.022″ slot (0.56 mm). Each conventional system was tested with a steel ligature (0.25 mm; Remanium(®), Dentaurum), an elastic ligature (1.3 mm in diameter; Dentalastics, Dentaurum), and a modified elastic ligature (Slide™; Leone(®)). Each combination was used with four archwires, including rectangular stainless steel (0.46 × 0.64 mm, 0.018 × 0.025″, Dentaurum), rectangular nickel-titanium with Teflon coating (0.46 × 0.64 mm, 0.018 × 0.025″, Forestadent(®)), round coaxial nickel-titanium (0.46 mm, 0.018″, Speed), and half-round/half-square (D-profile) stainless steel (0.46 mm, 0.018″, Speed). In the orthodontic measurement and simulation system (OMSS), retraction of a canine was simulated on a Frasaco model replicated in resin. Based on the force systems, the respective friction values were determined. For each combination of materials, five brackets of the same type were tested and five single measurements performed.

RESULTS

Friction values were found to vary distinctly with the different combinations, modifiers being the ligature systems and the archwire types. Any significant friction differences between the steel-ligated, Slide™-ligated, and self-ligated brackets were sporadic. All three systems were associated with average friction values of 40 %. Active self-ligating brackets and elastic-ligated conventional brackets, by contrast, generally differed significantly from the three above-mentioned bracket systems and showed distinctly higher friction values averaging 59 and 67 %, respectively.

CONCLUSIONS

While passive self-ligating bracket systems have frequently been touted as advantageous in the literature, they should not be regarded as the only favorable system. Steel-ligated and Slide™-ligated conventional bracket systems are capable of offering similar friction performance.

摘要

目的

人们普遍认为自锁托槽具有更高的临床效率,尤其是摩擦力更小。因此,本体外研究的目的是评估在模拟尖牙后移过程中不同托槽/弓丝/结扎方式组合的摩擦行为。这项研究的一个重要方面是确定传统托槽系统在与Slide™结扎丝、弹性结扎丝或不锈钢结扎丝配合使用时,在被动或主动自锁托槽中的表现是否不同。

方法

分析了三种传统托槽(Contour,Class One;Discovery(®),Dentaurum;Mystique MB,GAC)和六种自锁托槽(Carriere SL,Class One;Clarity™ SL,3M Unitek;Damon3,Ormco;In-Ovation(®) C,GAC;Speed Appliance,Speed System™;QuicKlear(®),Forestadent(®))系统。所有托槽均为0.022英寸槽沟(0.56毫米)。每个传统托槽系统分别与不锈钢结扎丝(0.25毫米;Remanium(®),Dentaurum)、弹性结扎丝(直径1.3毫米;Dentalastics,Dentaurum)和改良弹性结扎丝(Slide™;Leone(®))进行测试。每种组合搭配四种弓丝使用,包括矩形不锈钢弓丝(0.46×0.64毫米,0.018×0.025英寸,Dentaurum)、带聚四氟乙烯涂层的矩形镍钛弓丝(0.46×0.64毫米,0.018×0.025英寸,Forestadent(®))、圆形同轴镍钛弓丝(0.46毫米,0.018英寸,Speed)和半圆/半方(D形)不锈钢弓丝(0.46毫米,0.018英寸,Speed)。在正畸测量与模拟系统(OMSS)中,在树脂复制的Frasaco模型上模拟尖牙后移。根据力系统确定各自的摩擦值。对于每种材料组合,测试五个相同类型的托槽,并进行五次单独测量。

结果

发现摩擦值因不同组合而有明显差异,影响因素为结扎丝系统和弓丝类型。不锈钢结扎、Slide™结扎和自锁托槽之间的任何显著摩擦差异都是偶发的。所有三种系统的平均摩擦值均为40%。相比之下,主动自锁托槽和弹性结扎的传统托槽通常与上述三种托槽系统有显著差异,摩擦值明显更高,平均分别为59%和67%。

结论

虽然被动自锁托槽系统在文献中经常被吹捧为具有优势,但不应将其视为唯一有利的系统。不锈钢结扎和Slide™结扎的传统托槽系统能够提供类似的摩擦性能。

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