Accuracy and stability of computer-aided customized lingual fixed retainer: a pilot study.

IF 4.8 2区 医学 Q1 Dentistry
Seung-Hyun Kang, Jae-Sung Kwon, Chooryung Judi Chung, Jung-Yul Cha, Kee-Joon Lee
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引用次数: 0

Abstract

Background: With advances in digital technology, new types of lingual fixed retainers are being developed. However, there are few studies that quantitatively evaluate the accuracy and stability of lingual fixed retainers. The aim of this study was to assess the accuracy and stability of two types of computer-aided customized lingual fixed retainers and a conventional lingual fixed retainer.

Methods: A total of 10 maxillary and 10 mandibular duplicated dental models were selected, and then, three types of retainers were fabricated on the canine-to-canine area for each model. To evaluate accuracy, wire clearance at interproximal area (WCI) was measured using superimposition analysis. Initial flatness deformation was also measured for vertical distortion of retainers. Lateral width, anteroposterior length, and flatness deformation were measured at three-time points for stability assessment. Thermocycling was used to induce 6 months of time flow.

Results: The custom-bent group showed significantly higher WCI than the custom-cut and manual groups in the maxillary arch (P = 0.002). The custom-cut group showed significantly less flatness deformation, which was followed by the custom-bent and manual groups in both the maxillary and mandibular arch (P < 0.001). There was no significant difference in stability between the three retainer groups during 5100 cycles of thermocycling (corresponding to 6-month period).

Conclusions: Since there was no difference in stability between the three groups, it is recommended to use custom-cut type retainers in light of accuracy. However, accuracy and stability are not the only factors to consider when selecting type of retainers. Because each retainer has advantages and disadvantages, the type of retainers should be decided in consideration of the clinical environment.

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计算机辅助定制语言固定固位器的准确性和稳定性:一项试点研究。
背景:随着数字技术的进步,新型的语言固定固位器正在被开发。然而,定量评价舌固定固位器的准确性和稳定性的研究很少。本研究的目的是评估两种类型的计算机辅助定制舌固定固位器和传统舌固定固位器的准确性和稳定性。方法:选取10个上颌和10个下颌骨重复牙模型,分别在犬对犬区制作3种类型的固位体。为了评估准确性,采用叠加分析测量近端间区金属丝间隙(WCI)。初始平整度变形也测量了垂直变形的保持器。在三个时间点测量横向宽度,前后长度和平整度变形以进行稳定性评估。采用热循环法诱导6个月时间流。结果:自弯组上颌弓WCI明显高于自切组和手工组(P = 0.002)。自切组在上颌弓和下颌弓的平整度变形明显较小,自弯组次之,手动组次之(P)。结论:三组间稳定性无差异,从准确性考虑,推荐使用自切型固位器。然而,精度和稳定性并不是选择固位器类型时要考虑的唯一因素。由于每一种固位体都有其优点和缺点,所以在选择固位体的类型时应结合临床环境来考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Progress in Orthodontics
Progress in Orthodontics Dentistry-Orthodontics
CiteScore
7.30
自引率
4.20%
发文量
45
审稿时长
13 weeks
期刊介绍: Progress in Orthodontics is a fully open access, international journal owned by the Italian Society of Orthodontics and published under the brand SpringerOpen. The Society is currently covering all publication costs so there are no article processing charges for authors. It is a premier journal of international scope that fosters orthodontic research, including both basic research and development of innovative clinical techniques, with an emphasis on the following areas: • Mechanisms to improve orthodontics • Clinical studies and control animal studies • Orthodontics and genetics, genomics • Temporomandibular joint (TMJ) control clinical trials • Efficacy of orthodontic appliances and animal models • Systematic reviews and meta analyses • Mechanisms to speed orthodontic treatment Progress in Orthodontics will consider for publication only meritorious and original contributions. These may be: • Original articles reporting the findings of clinical trials, clinically relevant basic scientific investigations, or novel therapeutic or diagnostic systems • Review articles on current topics • Articles on novel techniques and clinical tools • Articles of contemporary interest
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