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首页> 外文期刊>Annals of the American Thoracic Society >3D Printed Temporary Veneer Restoring Autotransplanted Teeth in Children: Design and Concept Validation Ex Vivo
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3D Printed Temporary Veneer Restoring Autotransplanted Teeth in Children: Design and Concept Validation Ex Vivo

机译:3D印刷的临时贴面恢复儿童自动传递牙齿:设计和概念验证前体内

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摘要

(1) Background: Three-dimensional printing is progressing rapidly and is applied in many fields of dentistry. Tooth autotransplantation offers a viable biological approach to tooth replacement in children and adolescents. Restoring or reshaping the transplanted tooth to the anterior maxilla should be done as soon as possible for psychological and aesthetic reasons. However, to avoid interfering with the natural healing process, reshaping of transplanted teeth is usually delayed three to four months after transplantation. This delay creates a need for simple indirect temporary aesthetic restoration for autotransplanted teeth. The aim of this study was to develop and validate a digital solution for temporary restoration of autotransplanted teeth using 3D printing. (2) Methods: Four dry human skulls and four dry human mandibles were scanned using cone beam computed tomography to create 3D models for 15 premolars. Digital impression of the maxillary arch of one of the skulls was captured by intra oral scanner. The digital work flow for the design and fabrication of temporary veneers is presented. The seating and adaptation of the 3D printed veneers were evaluated using stereomicroscopy and micro-computed tomography. (3) Results: Evaluation of the veneer seating using stereomicroscopy showed that the mean marginal gap at all of the sides was below the cut-off value of 200 mu m. The overall mean marginal gap was 99.9 +/- 50.7 mu m (median: 87.8 (IQR 64.2-133 mu m)). The internal adaptation evaluation using micro-computed tomography showed an average median gap thickness of 152.5 +/- 47.7 (IQR 129-149.3 mu m). (4) Conclusions: The present concept of using temporary veneers that are designed and fabricated with CAD/CAM (computer-aided design/computer-aided manufacturing) technology using a DLP (digital light processing) printer may present a viable treatment option for restoration of autotransplanted teeth.
机译:(1)背景:三维印刷正在迅速发展,应用于许多牙科领域。牙齿自聚体持续物质提供了一种可行的生物方法,可以在儿童和青少年牙齿替代品。应尽快为心理和美学原因尽快进行恢复或重塑移植的牙齿。然而,为了避免干扰自然愈合过程,移植牙齿的重塑通常在移植后三到四个月延迟。这种延迟会对自动分化牙齿进行简单的间接临时美学恢复。本研究的目的是使用3D打印开发和验证用于临时修复自动包膜牙齿的数字解决方案。 (2)方法:使用锥形光束计算断层扫描扫描四种干燥人的头骨和四个干燥的人颌骨,以创建15个型号的15型磨牙。口腔扫描仪捕获了其中一个头骨的上颌拱的数字印象。介绍了临时贴面设计和制造的数字工作流程。使用立体镜检查和微计算机断层扫描评估3D印刷胶合器的座位和调整。 (3)结果:使用立体镜检查的贴面座位的评估显示,所有侧面的平均边缘间隙低于200μm的截止值。总体平均边际差距为99.9 +/- 50.7 mu m(中位数:87.8(IQR 64.2-133 mu m))。使用微型计算机断层扫描的内部适应评估显示平均中值间隙厚度为152.5 +/- 47.7(IQR 129-149.3 mu m)。 (4)结论:使用使用DLP(数字光处理)打印机的CAD / CAM(计算机辅助设计/计算机辅助制造)技术设计和制造的临时贴面的本概念可能呈现用于恢复的可行的处理选项牙齿的自肌肤。

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