Lee Cameron Y S, Wong Natalie, Ganz Scott D, Mursic Jonathan, Suzuki Jon B
1 Private practice in oral, maxillofacial, and reconstructive surgery, Aiea, Hawaii.
2 Private Practice in implant dentistry and prosthodontics, Toronto, Canada.
J Oral Implantol. 2015 Aug;41(4):e126-32. doi: 10.1563/AAID-JOI-D-13-00132. Epub 2014 Jun 26.
The accuracy of a digital impression technique to fabricate the implant restoration and abutment for a dental implant using an intraoral laser scanner was evaluated in 36 patients who were missing a single posterior tooth in either the mandible or maxilla that was restored with a single implant. The spatial position of each integrated implant, including the surrounding anatomic hard and soft tissues of adjacent structures, was captured utilizing a special scanning abutment with an intraoral laser scanner. Data from the scanning protocol was then delivered via the Internet in the form of an STL file to the manufacturing site for the production of a custom computer-aided design abutment and crown. All 36 restorations and abutments were delivered to the patients and evaluated for marginal integrity, interproximal contact points, and occlusion. Of the 36 patients, 6 required contact adjustments, 7 required occlusal adjustments, and 3 required a gingivectomy around the implant to completely seat the restoration. Chair time for adjustments did not exceed 15 minutes. The findings suggest that an intraoral laser scanner can be used with confidence to obtain consistent and accurate digital impressions to fabricate custom restorations and abutments for dental implants.
对36例下颌或上颌单个后牙缺失并采用单颗种植体修复的患者,评估了使用口腔内激光扫描仪制作种植牙修复体和基台的数字印模技术的准确性。利用带有口腔内激光扫描仪的特殊扫描基台,获取每个一体化种植体的空间位置,包括相邻结构周围的解剖硬组织和软组织。然后,扫描协议的数据以STL文件的形式通过互联网传送到生产厂家,用于制作定制的计算机辅助设计基台和牙冠。所有36个修复体和基台均交付给患者,并对边缘完整性、邻间接触点和咬合进行评估。36例患者中,6例需要进行接触调整,7例需要进行咬合调整,3例需要在种植体周围进行牙龈切除术以使修复体完全就位。调整的椅旁时间不超过15分钟。研究结果表明,口腔内激光扫描仪可放心用于获取一致且准确的数字印模,以制作种植牙的定制修复体和基台。