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Predicting time-dependent remodeling of bone around immediately loaded dental implants with different designs.

机译:预测具有不同设计的即刻加载的牙科植入物周围骨骼的时间依赖性重塑。

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The purpose of this study was to predict time-dependent biomechanics of bone around cylindrical screw dental implants with different macrogeometric designs under simulated immediate loading condition. The remodeling of bone around a parallel-sided and a tapered dental implant of same length was studied under 100N oblique load by implementing the Stanford theory into three-dimensional finite element models. The results of the analyses were examined in five time intervals consisting loading immediately after implant placement, and after 1, 2, 3 and 4 weeks following implantation. Maximum principal stress, minimum principal stress, and strain energy density in peri-implant bone and displacement in x-(implant lateral direction with a projection of the oblique force) and y-(implant longitudinal direction) axes of the implant were evaluated. The highest value of the maximum and minimum principal stresses around both implants increased in cortical bone and decreased in trabecular bone. The maximum and minimum principal stresses in cortical bone were higher around the tapered cylindrical implant, but stresses in the trabecular bone were higher around the parallel-sided cylindrical implant. Strain energy density around both implants increased in cortical bone, slightly decreased in trabecular bone, and higher values were obtained for the parallel-sided cylindrical implant. Displacement values slightly decreased in time in x-axis, and an initial decrease followed by a slight increase was observed in the y-axis. Bone responded differently in remodeling for the two implant designs under immediate loading, where the cortical bone carried the highest load. Application of oblique loading resulted in increase of stiffness in the peri-implant bone.
机译:这项研究的目的是在模拟的即时载荷条件下,预测具有不同宏观几何设计的圆柱螺钉牙种植体周围骨骼的时间依赖性生物力学。通过将斯坦福理论应用到三维有限元模型中,研究了在100N斜向载荷作用下,相同长度的平行侧面和锥形种植体周围的骨骼重塑。在五个时间间隔内检查分析结果,包括植入后立即以及植入后1、2、3和4周后的负荷。评估植入物周围骨的最大主应力,最小主应力和应变能密度,以及植入物在x轴(具有倾斜力投影的植入物横向)和y轴(植入物纵向)上的位移。两种植入物周围的最大和最小主应力的最大值在皮质骨中增加,在小梁骨中减少。在锥形圆柱状植入物周围,皮质骨的最大和最小主应力较高,而在平行侧圆柱状植入物周围,小梁骨的应力较高。两种植入物周围的应变能密度在皮质骨中均增加,在小梁骨中略有下降,并且平行侧圆柱体植入物的应力能量密度更高。位移值在时间上沿x轴略有减小,并且在y轴上观察到初始减小,然后略有增加。骨在立即负载下对两种植入物设计的重塑反应不同,其中皮质骨承担最高的负载。施加倾斜载荷导致植入物周围骨的刚度增加。

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