论文标题

骨植入术界面的应力屏蔽:表面粗糙度和骨植入式接触比的影响

Stress shielding at the bone-implant interface: influence of surface roughness and of the bone-implant contact ratio

论文作者

Raffa, Maria Letizia, Nguyen, Vu-Hieu, Hernigou, Philippe, Lachaniette, Charles-Henri Flouzat-, Haiat, Guillaume

论文摘要

水泥植入物的短期和长期稳定性由植入物和骨组织之间的界面载荷转移强烈确定。由于骨骼和植入物之间的材料特性差异,剪切应力引起的应力屏蔽效应。测量周围骨组织的应力场仍然很难。这项研究建议研究周围骨组织中应力场对i)植入物表面粗糙度的依赖性,ii)骨骼和植入物的材料特性,iii)骨 - 植入物接触率。为此,开发了骨整合骨植物界面的显微镜2-D有限元模型,在其中通过正弦表面对表面粗糙度进行了建模。结果表明,同层压力不受骨出植物界面的存在影响,而剪切应力是由于几何奇异性(对于低表面粗糙度)和骨 - 植入物界面(对于高表面粗糙度)的剪切应力而产生的。当骨骼植入物接触率值较低时,应力屏蔽效应可能更为重要,这对应于植入物稳定性相对较低的情况。剪切应力达到距离界面距离为0到0.1时粗糙度波长$λ$的距离的最大值,并且在距植入物表面高于$λ$的距离的距离上倾向于0,独立于骨 - 植入物接触率和波动率。与分析模型的比较允许验证数值结果。未来的工作应使用当前的方法来建模骨整合现象。

Short and long-term stabilities of cementless implants are strongly determined by the interfacial load transfer between implants and bone tissue. Stress-shielding effects arise from shear stresses due to the difference of material properties between bone and the implant. It remains difficult to measure the stress field in periprosthetic bone tissue. This study proposes to investigate the dependence of the stress field in periprosthetic bone tissue on i) the implant surface roughness, ii) material properties of bone and of the implant, iii) the bone-implant contact ratio. To do so, a microscale 2-D finite element model of an osseointegrated boneimplant interface was developed where the surface roughness was modeled by a sinusoidal surface. The results show that the isostatic pressure is not affected by the presence of the bone-implant interface while shear stresses arise due to the combined effects of a geometrical singularity (for low surface roughness) and of shear stresses at the bone-implant interface (for high surface roughness). Stress-shielding effects are likely to be more important when the bone-implant contact ratio value is low, which corresponds to a case of relatively low implant stability. Shear stress reach a maximum value at a distance from the interface comprised between 0 and 0.1 time roughness wavelength $λ$ and tend to 0 at a distance from the implant surface higher than $λ$, independently from bone-implant contact ratio and waviness ratio. A comparison with an analytical model allows validating the numerical results. Future work should use the present approach to model osseointegration phenomena.

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