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The assessment of orthodontic bonding defects: optical coherence tomography followed by three dimensional reconstruction

机译:正畸粘接缺陷的评估:光学相干断层扫描,然后进行三维重建

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摘要

Orthodontic bonding is a simple yet important procedure that can influence the outcome of treatment in case it is performed incorrectly. An orthodontic treatment shadowed by repeated bonding failures can become unduly long and will decrease patient trust and compliance. Optical coherence tomography has been widely used in ophtalmology but is relatively new to dentistry. Using OCT one can detect aerial inclusions within the orthodontic adhesive or even identify incongruence between the bracket base and the tooth surface. The aim of our study was to identify bonding defects and reconstruct them three-dimensionally in order to be able to characterize them more accurately. We bonded 30 sound human permanent teeth with ceramic orthodontic brackets using a no-mix self-curing orthodontic adhesive. Prior to bonding all teeth were stored in tap water at 4℃ and then professionally cleaned with rotary brushes and pumice. The samples were processed by the same person and the rotary brushes were changed after every fifth tooth. All interfaces were investigated by means of OCT and 4 defects were found. Subsequently, the defects were reconstructed three-dimensionally using an open-source program. By identifying and reconstructing bonding defects we could assess the quality of the bonding procedure. Since bonding tends to be more accurate in vitro where the environmental conditions are close to ideal, it is probable that defects found in vivo be even greater in number, which leads to the conclusion that this type of investigation is potentially valuable.
机译:正畸粘接是一个简单但重要的过程,如果操作不正确,会影响治疗效果。重复粘合失败导致的正畸治疗时间过长,会降低患者的信任度和依从性。光学相干断层扫描技术已在眼科领域得到了广泛的应用,但对于牙科领域来说却相对较新。使用OCT可以检测到正畸粘合剂中的气含物,甚至可以识别托槽底座和牙齿表面之间的不一致。我们研究的目的是识别键合缺陷并对其进行三维重构,以便能够更准确地表征它们。我们使用不混合自固化正畸粘合剂将30颗健全的人类恒牙与陶瓷正畸托槽粘合在一起。粘接之前,将所有牙齿储存在4℃的自来水中,然后用旋转刷和浮石进行专业清洁。样品由同一个人处理,每刷完五颗牙齿就更换一次旋转刷。通过OCT检查所有界面,发现4个缺陷。随后,使用开源程序对缺陷进行三维重建。通过识别和重建键合缺陷,我们可以评估键合过程的质量。由于在环境条件接近理想的情况下,体外结合趋于更精确,因此体内发现的缺陷数量可能更多,这得出结论,这类研究具有潜在的价值。

著录项

  • 来源
    《Optical complex systems : OCS11》|2011年|p.817214.1-817214.6|共6页
  • 会议地点 Marseille(FR);Marseille(FR)
  • 作者单位

    'Victor Babes' University of Medicine and Pharmacy, School of Dentistry, Timisoara, RO;

    'Victor Babes' University of Medicine and Pharmacy, School of Dentistry, Timisoara, RO;

    'Victor Babes' University of Medicine and Pharmacy, School of Dentistry, Timisoara, RO;

    'Victor Babes' University of Medicine and Pharmacy, School of Dentistry, Timisoara, RO;

    'Victor Babes' University of Medicine and Pharmacy, School of Dentistry, Timisoara, RO;

    'Victor Babes' University of Medicine and Pharmacy, School of Dentistry, Timisoara, RO;

    Applied Optics Group, University of Kent, Canterbury, UK;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 基础理论;
  • 关键词

    optical coherence tomography; orthodontic bonding; adhesive dentistry; noninvasive investigation;

    机译:光学相干断层扫描;正畸粘接粘合牙科无创调查;
  • 入库时间 2022-08-26 13:44:37

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