Chen Jianyu, Zhang Zhiguang, Chen Xianshuai, Zhang Xiao
a Guangdong Provincial Key Laboratory of Stomatology, Guanghua School of Stomatology, Hospital of Stomatology , Sun Yat-sen University , Guangzhou , China.
b Guangzhou Institute of Advanced Technology , Chinese Academy of Science , Guangzhou , China.
Comput Methods Biomech Biomed Engin. 2017 May;20(6):636-644. doi: 10.1080/10255842.2017.1283406. Epub 2017 Jan 29.
Due to the increasing adoption of immediate implantation strategies and the rapid development of the computer aided design/computer aided manufacturing technology, a therapeutic concept based on patient-specific implant dentistry has recently been reintroduced by many researchers. However, little information is available on the designs of custom-made dental implant systems, especially their biomechanical behavior. The influence of the custom-made implant designs on the biomechanical performance for both an immediate and a delayed loading protocol in the maxillary esthetic zone was evaluated by means of the finite element (FE) method. FE models of three dental implants were considered: a state of the art cylindrical implant and two custom-made implants designed by reverse engineering technology, namely a root-analogue implant and a root-analogue threaded implant. The von Mises stress distributions and micro-motions around the bone-implant interfaces were calculated using ANSYS software. In a comparison of the three implant designs for both loading protocols, a favorable biomechanical performance was observed for the use of root-analogue threaded implant which approximated the geometry of natural anterior tooth and maintained the original long-axis. The results indicated that bone-implant interfacial micro-motion was reduced and a favorable stress distribution after osseointegration was achieved.
由于即刻种植策略的日益采用以及计算机辅助设计/计算机辅助制造技术的快速发展,许多研究人员最近重新引入了基于患者特异性种植牙科的治疗理念。然而,关于定制牙科种植系统的设计,尤其是其生物力学行为的信息却很少。通过有限元(FE)方法评估了定制种植体设计对上颌美学区即刻和延迟加载方案的生物力学性能的影响。考虑了三种牙科种植体的有限元模型:一种是先进的圆柱形种植体,以及两种通过逆向工程技术设计的定制种植体,即牙根模拟种植体和牙根模拟螺纹种植体。使用ANSYS软件计算了骨-种植体界面周围的von Mises应力分布和微动。在两种加载方案的三种种植体设计的比较中,观察到使用近似天然前牙几何形状并保持原始长轴的牙根模拟螺纹种植体具有良好的生物力学性能。结果表明,骨-种植体界面微动减少,骨整合后实现了良好的应力分布。