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Three-dimensional finite-element analysis of a single implant-supported zirconia framework and its effect on stress distribution in D4 (maxilla) and D2 (mandible) bone quality

机译:单个植入物支撑的氧化锆框架的三维有限元分析及其对D4(上颌骨)和D2(下颌骨)骨质量中应力分布的影响

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The aim of this in-silico study was to compare stress distributions in implants and zirconia frameworks of mandibular and maxillary implant-supported crowns. For comparison, vertical and oblique loading forces were used. Three-dimensional finite-element implant models of a mandibular section of bone (D2) and a maxillary section of bone (D4) with missing second molars and their zirconium-based superstructures were used. Zimmer dental implants of 13 mm in length and 4.7 mm in diameter were modelled. A load of 200 N was applied toward vertical and oblique (30???° to the vertical) directions. Maximum and minimum von Mises stress values of the implants and the zirconia framework were calculated. The highest stress value was concentrated in the zirconia framework of the maxillary implant-supported model with the oblique loading force (301.17 MPa). The lowest stress value was concentrated in the mandibular implant-supported model. And the stress values in the maxilla were higher than in the mandible. The maxilla (D4) showed higher stress values than in the mandible (D2), because the trabecular bone is weaker and less resistant to deformation than the cortical bone. Stress values with oblique loading forces were higher than with vertical loading forces. Because of the high Young's modulus of zirconia (low elastic properties), zirconia frameworks showed higher stress values than the implants.
机译:这项计算机模拟研究的目的是比较下颌和上颌植入物支持的牙冠的植入物和氧化锆骨架中的应力分布。为了比较,使用了垂直和倾斜加载力。使用三维骨有限的种植体模型,该模型具有缺少第二磨牙的下颌骨(D2)和上颌骨(D4)及其基于锆的超结构。建模了长度为13毫米,直径为4.7毫米的Zimmer牙科植入物。向垂直和倾斜方向(相对于垂直方向30°角)施加200牛顿的载荷。计算了植入物和氧化锆骨架的最大和最小von Mises应力值。最高应力值集中在上颌种植体支持的模型的氧化锆骨架中,其加载力为301.17 MPa。最低应力值集中在下颌植入物支持的模型中。上颌骨的应力值高于下颌骨。上颌骨(D4)的应力值比下颌骨(D2)高,这是因为小梁骨比皮质骨弱,抗变形能力差。倾斜加载力的应力值高于垂直加载力。由于氧化锆的高杨氏模量(低弹性),氧化锆骨架比植入物显示出更高的应力值。

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