Department of Prosthodontics, Gangnam Severance Dental Hospital, Yonsei University College of Dentistry, 211 Eonju-ro, Gangnam-gu, Seoul, 06273, Korea.
Department of Prosthodontics, Yonsei University College of Dentistry, 50-1 Yonsei-ro, Seodaemun-gu, Seoul, 03722, Korea.
Sci Rep. 2024 Aug 19;14(1):19185. doi: 10.1038/s41598-024-69300-y.
Axial displacement of prosthetic components is a major concern in implant dentistry, particularly during screw tightening. However, implant manufacturers provide different recommended torques for tightening implant prosthetic components, which can lead to errors in prosthesis fit before and after impression making. Implant-abutment connection angle or abutment geometries can affect axial displacement. This study aimed to compare the axial displacement between conventional and digital components based on the tightening torque and differences in the implant-abutment connection angles and geometries. The results showed that scan bodies with different implant-abutment connection geometries exhibited smaller axial displacement with increasing tightening torque than other prosthetic components. Except for the scan bodies, there was no difference in the axial displacement of prosthetic components when tightened with the same torque. However, regardless of the use of digital or conventional method of impression making, the axial displacement between the impression making component and the abutment when tightened to the recommended torques were significantly different. In addition, axial displacement was affected by the internal connection angle. The results of this study indicate that the tightening torque and geometry of prosthetic components should be considered to prevent possible misfits which can occur before and after impression making.
种植体修复组件的轴向位移是种植体牙科的主要关注点,尤其是在螺丝拧紧过程中。然而,种植体制造商为拧紧种植体修复组件提供了不同的建议扭矩,这可能导致印模制作前后修复体适配出现误差。种植体-基台连接角度或基台几何形状会影响轴向位移。本研究旨在比较基于拧紧扭矩以及种植体-基台连接角度和几何形状差异的传统和数字化组件之间的轴向位移。结果表明,与其他修复体组件相比,具有不同种植体-基台连接几何形状的扫描体在增加拧紧扭矩时表现出较小的轴向位移。除了扫描体之外,当以相同的扭矩拧紧时,修复体组件的轴向位移没有差异。然而,无论使用数字化还是传统的印模制作方法,在拧紧到建议扭矩时,印模制作组件和基台之间的轴向位移差异显著。此外,轴向位移受到内部连接角度的影响。本研究结果表明,为了防止印模制作前后可能出现的不匹配,应考虑修复体组件的拧紧扭矩和几何形状。