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Optimal design of thread height and width on an immediately loaded cylinder implant: a finite element analysis.

机译:立即加载的圆柱体植入物上螺纹高度和宽度的最佳设计:有限元分析。

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摘要

In this study, we used a finite element method to evaluate the maximum Von Mises stresses in jaw bones of immediately loaded implant with different thread heights and widths, and the maximum displacements in implant-abutment complex. The implant thread height ranged from 0.20 to 0.60 mm, and the thread width ranged from 0.10 to 0.40 mm. Compared to those in standard designed implants, the maximum Von Mises stresses in cortical and cancellous bones with axially loaded implants decreased by 18.85% and 47.46%, respectively, and by 16.38% and 63.46%, respectively in buccolingually loaded implants. The maximum displacement of implant-abutment complex loaded axially and buccolingually decreased by 13.78% and 6.97%, respectively. These results indicated that thread height played more important roles in affecting bone stresses and implant-abutment complex stability than thread width. Immediately loaded cylinder implants with thread height exceeding 0.44 mm and width ranging from 0.19 to 0.23 mm caused the lowest stresses to the type B/2 bone.
机译:在这项研究中,我们使用有限元方法来评估立即加载的具有不同螺纹高度和宽度的种植体的颌骨中的最大冯·米塞斯应力,以及种植体-基台复合体的最大位移。植入物的螺纹高度为0.20至0.60 mm,螺纹宽度为0.10至0.40 mm。与标准设计的植入物相比,轴向加载的植入物在皮质和松质骨中的最大冯·米塞斯应力分别降低了18.85%和47.46%,而颊鼓加载的植入物分别降低了16.38%和63.46%。轴向和颊侧加载的种植体-基台复合体的最大位移分别降低了13.78%和6.97%。这些结果表明,螺纹高度在影响骨应力和种植体-基台复杂性方面比螺纹宽度更重要。立即加载的圆柱体植入物的螺纹高度超过0.44 mm,宽度在0.19至0.23 mm之间,对B / 2型骨的应力最小。

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