Department of Diagnostic and Surgery, Division of Periodontics, UNESP, São Paulo State University, Araraquara, Brazil.
Int J Oral Maxillofac Implants. 2011 Nov-Dec;26(6):1279-87.
To evaluate the influence of different implant designs on the biomechanical environment of immediately placed implants.
Computed tomography (CT)-based finite element models comprising a maxillary central incisor socket and four commercially available internal-connection implants (SIN SW, 3i Certain, Nobel Replace, and ITI Standard) of comparable diameters and lengths were constructed. Biomechanical scenarios of immediate placement, immediate loading, and delayed loading protocols were simulated. Analysis of variance at the 95% confidence level was used to evaluate peak equivalent strain (EQV strain) in bone and bone-to-implant relative displacement.
Loading magnitude (77.6%) and the clinical situation (15.0%) (ie, presence or absence of an extraction socket defect, condition of the bone-to-implant interface) presented the highest relative contributions to the results. Implant design contributed significantly to strains and displacements in the immediate placement protocol. Whereas a greater contribution of implant design was observed for strain values and distributions for immediately placed and immediately loaded protocols, a smaller contribution was observed in the delayed loading scenario.
Implant design contributes significantly to changing biomechanical scenarios for immediately placed implants. The results also suggest that avoiding implant overloading and ensuring high primary implant stability are critical in encouraging the load-bearing capability of immediately placed implants.
评估不同种植体设计对即刻植入种植体生物力学环境的影响。
构建了基于计算机断层扫描(CT)的有限元模型,包括上颌中切牙牙槽窝和四个商业上可获得的内部连接种植体(SIN SW、3i Certain、Nobel Replace 和 ITI Standard),这些种植体具有可比的直径和长度。模拟了即刻植入、即刻负载和延迟负载方案的生物力学情况。使用方差分析在 95%置信水平评估骨和骨-种植体相对位移的峰值等效应变(EQV 应变)。
加载幅度(77.6%)和临床情况(15.0%)(即是否存在拔牙窝缺损,骨-种植体界面的情况)对结果的贡献最大。种植体设计对即刻植入方案中的应变和位移有显著影响。虽然在即刻植入和即刻负载方案中,种植体设计对应变值和分布的贡献更大,但在延迟负载方案中,贡献较小。
种植体设计对即刻植入种植体的生物力学方案有显著影响。研究结果还表明,避免种植体过载并确保高初始种植体稳定性对于鼓励即刻植入种植体的承载能力至关重要。