首页> 美国卫生研究院文献>Case Reports in Dentistry >Custom-Made Computer-Aided-Design/Computer-Aided-Manufacturing Biphasic Calcium-Phosphate Scaffold for Augmentation of an Atrophic Mandibular Anterior Ridge
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Custom-Made Computer-Aided-Design/Computer-Aided-Manufacturing Biphasic Calcium-Phosphate Scaffold for Augmentation of an Atrophic Mandibular Anterior Ridge

机译:定制的计算机辅助设计/计算机辅助制造双相磷酸钙支架用于增强萎缩的下颌前突

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摘要

This report documents the clinical, radiographic, and histologic outcome of a custom-made computer-aided-design/computer-aided-manufactured (CAD/CAM) scaffold used for the alveolar ridge augmentation of a severely atrophic anterior mandible. Computed tomographic (CT) images of an atrophic anterior mandible were acquired and modified into a 3-dimensional (3D) reconstruction model; this was transferred to a CAD program, where a custom-made scaffold was designed. CAM software generated a set of tool-paths for the manufacture of the scaffold on a computer-numerical-control milling machine into the exact shape of the 3D design. A custom-made scaffold was milled from a synthetic micromacroporous biphasic calcium phosphate (BCP) block. The scaffold closely matched the shape of the defect: this helped to reduce the time for the surgery and contributed to good healing. One year later, newly formed and well-integrated bone was clinically available, and two implants (AnyRidge, MegaGen, Gyeongbuk, South Korea) were placed. The histologic samples retrieved from the implant sites revealed compact mature bone undergoing remodelling, marrow spaces, and newly formed trabecular bone surrounded by residual BCP particles. This study demonstrates that custom-made scaffolds can be fabricated by combining CT scans and CAD/CAM techniques. Further studies on a larger sample of patients are needed to confirm these results.
机译:该报告记录了用于严重萎缩性前颌骨的牙槽增高的定制计算机辅助设计/计算机辅助制造(CAD / CAM)支架的临床,影像学和组织学结果。获取萎缩性前颌骨的计算机断层扫描(CT)图像,并将其修改为3维(3D)重建模型;这被转移到CAD程序中,在那里设计了一个定制的脚手架。 CAM软件生成了一组在计算机数控铣床上将支架制造成3D设计精确形状的工具路径。从合成的微巨相双相磷酸钙(BCP)块研磨定制的支架。支架紧密匹配缺损的形状:这有助于减少手术时间并有助于良好的愈合。一年后,临床上可获得新近形成且整合良好的骨骼,并放置了两个植入物(AnyRidge,MegaGen,庆北,韩国)。从植入部位取回的组织学样本显示,致密的成熟骨经历了重塑,骨髓间隙,并被残留的BCP颗粒包围着新形成的小梁骨。这项研究表明,可以通过结合CT扫描和CAD / CAM技术来制造定制支架。需要对更大样本的患者进行进一步研究以证实这些结果。

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