Mangano Francesco, Macchi Aldo, Shibli Jamil Awad, Luongo Giuseppe, Iezzi Giovanna, Piattelli Adriano, Caprioglio Alberto, Mangano Carlo
1 Dental School, University of Varese, Italy.
J Oral Implantol. 2014 Oct;40(5):561-9. doi: 10.1563/AAID-JOI-D-12-00122. Epub 2013 Jan 23.
Several procedures have been proposed to achieve maxillary ridge augmentation. These require bone replacement materials to be manually cut, shaped, and formed at the time of implantation, resulting in an expensive and time-consuming process. In the present study, we describe a technique for the design and fabrication of custom-made scaffolds for maxillary ridge augmentation, using three-dimensional computerized tomography (3D CT) and computer-aided design/computer-aided manufacturing (CAD/CAM). CT images of the atrophic maxillary ridge of 10 patients were acquired and modified into 3D reconstruction models. These models were transferred as stereolithographic files to a CAD program, where a virtual 3D reconstruction of the alveolar ridge was generated, producing anatomically shaped, custom-made scaffolds. CAM software generated a set of tool-paths for manufacture by a computer-numerical-control milling machine into the exact shape of the reconstruction, starting from porous hydroxyapatite blocks. The custom-made scaffolds were of satisfactory size, shape, and appearance; they matched the defect area, suited the surgeon's requirements, and were easily implanted during surgery. This helped reduce the time for surgery and contributed to the good healing of the defects.
已经提出了几种实现上颌嵴增高的方法。这些方法需要在植入时手动切割、塑形和成型骨替代材料,这导致了一个昂贵且耗时的过程。在本研究中,我们描述了一种使用三维计算机断层扫描(3D CT)和计算机辅助设计/计算机辅助制造(CAD/CAM)来设计和制造用于上颌嵴增高的定制支架的技术。获取了10例患者萎缩上颌嵴的CT图像,并将其修改为三维重建模型。这些模型作为立体光刻文件传输到CAD程序中,在该程序中生成牙槽嵴的虚拟三维重建,从而制造出符合解剖形状的定制支架。CAM软件生成一组刀具路径,以便由计算机数控铣床从多孔羟基磷灰石块开始制造出与重建形状完全一致的支架。定制支架的尺寸、形状和外观令人满意;它们与缺损区域匹配,符合外科医生的要求,并且在手术过程中易于植入。这有助于减少手术时间,并促进缺损的良好愈合。