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首页> 外文期刊>The Journal of craniofacial surgery >Vertical Ridge Augmentation of the Atrophic Posterior Mandible With Custom-Made, Computer-Aided Design/Computer-Aided Manufacturing Porous Hydroxyapatite Scaffolds
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Vertical Ridge Augmentation of the Atrophic Posterior Mandible With Custom-Made, Computer-Aided Design/Computer-Aided Manufacturing Porous Hydroxyapatite Scaffolds

机译:定制的计算机辅助设计/计算机辅助制造多孔羟基磷灰石支架,用于萎缩性后颌骨的垂直隆隆

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摘要

The present study describes a new protocol for the manufacturing of custom-made hydroxyapatite scaffolds using computer-aided design/computer-aided manufacturing (CAD/CAM), to augment posterior mandibular bone and minimize surgery when severe atrophy is present. Computed tomographic images of an atrophic posterior mandible were acquired and modified into a 3-dimensional (3D) reconstruction model. This model was transferred as a stereolithographic file to a CAD program, where virtual 3D reconstructions of the alveolar ridge were performed, drawing 2 anatomically shaped, custom-made scaffolds. Computer-aided-manufacturing software generated a set of tool-paths for manufacture on a computer-numerical-control milling machine into the exact shape of the 3D projects. Clinically sized, anatomically shaped scaffolds were generated from commercially available porous hydroxyapatite blocks. The custom-made scaffolds well matched the shape of the bone defects and could be easily implanted during surgery. This matching of the shape helped to reduce the time for the operation and contributed to the good healing of the defects. At the 6-month recall, a newly formed and well-integrated bone was observed, completely filling the mandibular posterior defects, and implants were placed, with good primary stability. At the 1-year follow-up examination, the implant-supported restorations showed a good functional and esthetic integration. Although this is an interim report, this study demonstrates that anatomically shaped custom-made scaffolds can be fabricated by combining computed tomographic scans and CAD/CAM techniques. Further studies are needed to confirm these results.
机译:本研究描述了使用计算机辅助设计/计算机辅助制造(CAD / CAM)制造定制羟基磷灰石支架的新协议,以增加下颌后骨并在出现严重萎缩时最大程度地减少手术。获取萎缩性后颌骨的计算机断层图像,并将其修改为3维(3D)重建模型。该模型作为立体光刻文件传输到CAD程序,在该程序中进行了牙槽的虚拟3D重建,绘制了2个解剖学形状的定制支架。计算机辅助制造软件生成了一组在计算机数控铣削机上加工成3D项目精确形状的刀具路径。从市场上可买到的多孔羟基磷灰石块产生临床上大小,解剖学形状的支架。定制的支架可以很好地匹配骨缺损的形状,并且可以在手术过程中轻松植入。形状的这种匹配有助于减少手术时间并有助于缺陷的良好愈合。在6个月的召回中,观察到了新形成的且整合良好的骨头,完全填满了下颌后部缺损,并放置了植入物,具有良好的基本稳定性。在为期一年的随访检查中,植入物支持的修复体显示出良好的功能和美学整合性。尽管这是一份临时报告,但这项研究表明,可以结合计算机断层扫描和CAD / CAM技术来制造解剖学形状的定制支架。需要进一步的研究来确认这些结果。

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