Department of Specialist Surgeries Head-Neck, Modena and Reggio Emilia University, Modena, Italy.
Clin Implant Dent Relat Res. 2011 Jun;13(2):134-40. doi: 10.1111/j.1708-8208.2009.00189.x.
The clinical application of prosthetic components obtained by different manufacturing processes lacks technological foundation: the dimensional tolerance of individual parts and their assembly accuracy are not known. The rotational misfit (RM) of the hexagonal connection is critical in single-tooth implant restorations, but no standard control procedures are available for its evaluation.
The research aimed at proposing a new protocol for the dimensional assessment of implant-abutment connections, based on noncontact measurement and statistical data processing. The procedure was applied to machined- and cast-on abutments, as well of the matching implants.
Three groups of five abutments each were studied: machined titanium abutments, pre-machined calcinable abutments before casting procedures and the same specimens after casting. A group of five corresponding implants was considered as well. Twice the apothem was measured on each hexagon through an optical measuring microscope. The data were processed to obtain the international tolerance (IT) grade. The RM was then calculated using the apothems of the external and the internal hexagon.
All the components were classified between IT8 and IT9, and the maximum RM was around 3-4° for all the assemblies, inferior to the critical limits for the screw joint stability.
An original measuring protocol was developed, independent of parts assembly and based on ITs. An objective dimensional characterization of prosthetic components and assemblies has been achieved, which is the basis for their reliability in clinical applications.
不同制造工艺获得的修复体组件的临床应用缺乏技术基础:个体部件的尺寸公差及其装配精度未知。在单牙种植体修复中,六角连接的旋转不匹配(RM)至关重要,但目前还没有评估其的标准控制程序。
本研究旨在提出一种基于非接触测量和统计数据处理的种植体-基台连接的尺寸评估新方案。该方案应用于加工基台和铸造基台以及匹配的种植体。
研究了三组各 5 个基台:加工钛基台、铸造前预加工可煅烧基台和铸造后的相同基台。还考虑了一组五个相应的种植体。通过光学测量显微镜测量每个六边形的两次外接圆直径。对数据进行处理以获得国际公差(IT)等级。然后使用外部和内部六角的外接圆直径计算 RM。
所有组件均被分类为 IT8 和 IT9 之间,所有组件的最大 RM 约为 3-4°,低于螺钉连接稳定性的临界限制。
开发了一种原始的测量方案,该方案独立于部件装配,并基于 IT 分级。实现了对修复体组件和装配的客观尺寸特征描述,这是其在临床应用中可靠性的基础。