Institute for Materials Applications in Mechanical Engineering, RWTH-Aachen University, Aachen, Germany.
J Biomech. 2013 Sep 3;46(13):2250-7. doi: 10.1016/j.jbiomech.2013.06.025. Epub 2013 Jul 19.
The objective of this study was to predict time-dependent bone remodeling around tissue- and bone-level dental implants used in patients with reduced bone width. The remodeling of bone around titanium tissue-level, and titanium and titanium-zirconium alloy bone-level implants was studied under 100 N oblique load for one month by implementing the Stanford theory into three-dimensional finite element models. Maximum principal stress, minimum principal stress, and strain energy density in peri-implant bone and displacement in x- and y- axes of the implant were evaluated. Maximum and minimum principal stresses around tissue-level implant were higher than bone-level implants and both bone-level implants experienced comparable stresses. Total strain energy density in bone around titanium implants slightly decreased during the first two weeks of loading followed by a recovery, and the titanium-zirconium implant showed minor changes in the axial plane. Total strain energy density changes in the loading and contralateral sides were higher in tissue-level implant than other implants in the cortical bone at the horizontal plane. The displacement values of the implants were almost constant over time. Tissue-level implants were associated with higher stresses than bone-level implants. The time-dependent biomechanical outcome of titanium-zirconium alloy bone-level implant was comparable to the titanium implant.
本研究旨在预测在骨量减少患者中使用的组织水平和骨水平牙科种植体周围的时间依赖性骨重塑。通过将斯坦福理论应用于三维有限元模型,研究了在 100 N 斜向载荷下,钛组织水平和钛及钛-锆合金骨水平种植体周围骨骼的重塑。评估了种植体周围骨中的最大主应力、最小主应力和应变能密度以及种植体 x 和 y 轴的位移。组织水平种植体周围的最大和最小主应力高于骨水平种植体,两种骨水平种植体均承受相当的应力。钛种植体周围骨中的总应变能密度在加载的前两周略有下降,随后恢复,而钛-锆种植体在轴向平面上仅发生微小变化。在水平骨皮质中,加载侧和对侧的总应变能密度变化在组织水平种植体中高于其他种植体。种植体的位移值随时间几乎保持不变。组织水平种植体的应力高于骨水平种植体。钛-锆合金骨水平种植体的时间依赖性生物力学结果与钛种植体相当。