Division of Prosthodontics, School of Dentistry-DOD, Universidade Federal do Rio Grande do Norte, 59056-000 Natal, Brazil.
J Prosthodont. 2013 Jun;22(4):275-81. doi: 10.1111/j.1532-849X.2012.00941.x. Epub 2012 Oct 25.
Implant-abutment connections still present failures in the oral cavity due to the loosening of mechanical integrity by detorque and corrosion of the abutment screws. The objective of this study was to evaluate the detorque of dental abutment screws before and after immersion in fluoridated solutions.
Five commercial implant-abutment assemblies were assessed in this investigation: (C) Conexão®, (E) Emfils®, (I) INP®, (S) SIN®, and (T) Titanium Fix®. The implants were embedded in an acrylic resin and then placed in a holding device. The abutments were first connected to the implants and torqued to 20 Ncm using a handheld torque meter. The detorque values of the abutments were evaluated after 10 minutes. After applying a second torque of 20 Ncm, implant-abutment assemblies were withdrawn every 3 hours for 12 hours in a fluoridated solution over a period of 90 days. After that period, detorque of the abutments was examined. Scanning electronic microscopy (SEM) associated to energy dispersive spectroscopy (EDS) was applied to inspect the surfaces of abutments.
Detorque values of systems C, E, and I immersed in the fluoridated solution were significantly higher than those of the initial detorque. ANOVA demonstrated no significant differences in detorque values between designs S and T. Signs of localized corrosion could not be detected by SEM although chemical analysis by EDS showed the presence of elements involved in corrosive processes.
An increase of detorque values recorded on abutments after immersion in fluoridated artificial saliva solutions was noticed in this study. Regarding chemical analysis, such an increase of detorque can result from a corrosion layer formed between metallic surfaces at static contact in the implant-abutment joint during immersion in the fluoridated solutions.
由于机械完整性的松动和基台螺钉的腐蚀,种植体-基台连接在口腔中仍会出现故障。本研究的目的是评估氟化物溶液浸泡前后牙科基台螺钉的松动情况。
本研究评估了 5 种商业种植体-基台组件:(C)Conexão®、(E)Emfils®、(I)INP®、(S)SIN®和(T)Titanium Fix®。将种植体嵌入丙烯酸树脂中,然后放置在固定装置中。首先将基台连接到种植体上,并使用手持扭矩计将扭矩拧紧至 20 Ncm。10 分钟后评估基台的松动值。在施加第二次 20 Ncm 的扭矩后,将种植体-基台组件在氟化物溶液中每 3 小时取出一次,共取出 12 小时,持续 90 天。在此期间,检查基台的松动情况。对基台表面进行扫描电子显微镜(SEM)和能谱分析(EDS)检查。
浸泡在氟化物溶液中的系统 C、E 和 I 的松动值明显高于初始松动值。方差分析显示,设计 S 和 T 的松动值没有显著差异。SEM 检查未发现局部腐蚀迹象,尽管 EDS 化学分析显示存在参与腐蚀过程的元素。
本研究发现,浸泡在氟化物人工唾液溶液中的基台记录的松动值增加。关于化学分析,这种松动值的增加可能是由于在氟化物溶液浸泡过程中,在种植体-基台连接的静态接触中,金属表面之间形成了腐蚀层。