Department of Oral Implantology, School and Hospital of Stomatology, China Medical University, Shenyang, Liaoning, China.
Clin Implant Dent Relat Res. 2022 Oct;24(5):720-729. doi: 10.1111/cid.13130. Epub 2022 Aug 31.
Dental implant abutments play an important role in the health and aesthetics of soft and hard tissues around implants.
To compare mechanical properties and marginal fit of prefabricated and customized dental implant abutments and provide references to evaluate the relationship between abutment choice and clinical indications.
Titanium abutments were randomly divided into prefabricated and customized abutments. Static and dynamic loads were applied according to ISO14801:2016. Mechanical properties, including fracture strength, fatigue strength, rotational torque value, and torque loss rate, were measured. The biological properties of the implant abutments were assessed using an internal marginal fit. The samples were sliced, and the internal marginal fit was examined using a scanning electron microscope before and after cyclic loading. The length of the tight contact was calculated at the level of the conical connection, lower internal connection, and screw threads. Microleakage was evaluated by immersing the samples in 1% methylene blue and measuring the absorbance.
The fracture strengths of the prefabricated abutments were greater than those of the customized abutments before and after cyclic loading. The average fatigue strengths of the prefabricated and customized abutments were 350 and 300 N, respectively. The removal torque loss of the customized abutments was significantly greater than that of the prefabricated abutments. Significant differences were found in conical connection before loading, while the screw threads showed substantial differences between the two groups after loading. Microleakage in the customized abutments was significantly higher than that in the prefabricated abutments before and after loading.
Prefabricated abutments showed superior mechanical and biological properties compared with customized abutments in vitro, suggesting a greater risk of mechanical and biological complications occurring with the use of customized abutments. This study provides a reference for the clinical selection of implant abutments.
牙种植体基台在种植体周围软硬组织的健康和美观方面起着重要作用。
比较预制式和定制式牙种植体基台的机械性能和边缘适合性,为评估基台选择与临床适应证的关系提供参考。
钛基台随机分为预制式和定制式基台。根据 ISO14801:2016 标准施加静态和动态载荷。测量机械性能,包括断裂强度、疲劳强度、旋转扭矩值和扭矩损失率。使用内部边缘适合性评估种植体基台的生物学性能。在循环加载前后,对样本进行切片,并使用扫描电子显微镜检查内部边缘适合性。在锥形连接、内部下连接和螺纹处计算紧密接触的长度。通过将样本浸入 1%亚甲基蓝并测量吸光度来评估微渗漏。
预制基台的断裂强度在循环加载前后均大于定制基台。预制和定制基台的平均疲劳强度分别为 350N 和 300N。定制基台的去除扭矩损失明显大于预制基台。在加载前的锥形连接处存在显著差异,而在加载后的螺纹处两组之间存在显著差异。在加载前后,定制基台的微渗漏均明显高于预制基台。
与定制基台相比,预制基台在体外具有更好的机械和生物学性能,这表明使用定制基台可能会增加机械和生物学并发症的风险。本研究为种植体基台的临床选择提供了参考。