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3D finite element study of biomechanical performances of short implant supporting fixed prosthesis

机译:支持固定假体的短种植体生物力学性能的3D有限元研究

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摘要

All-on-four oral rehabilitation by placing 2 tilted splint with 2 normal angulation implants, is one of an effective treatment but operator's experience are more required. Using short implant (not greater than 6 mm.) instead of tilted implant placement may interest. The purpose of this study is to evaluate the biomechanical performances of short implant for supporting fixed prosthesis in edentulous maxilla. Finite element models were designed into 3 conditions. In anterior region, two 4.1×8 mm. implants were used. In posterior region, a couple of short implant (4.1×6 mm. and 4.8×6 mm.) were used in condition 1 and 2, respectively. While condition 3 (original All-on-four) 2 pieces of 4.1×8 mm. implant were placed with 30° angulation. Both axial and oblique loading directions were applied with a magnitude of 150 N. at the first molar area. Strain, stress, strain energy density (SED), and implant displacement were evaluated. Results revealed that the strain, stress, and displacement from each condition were not greater than 4000 microstrains (bone's maximum strain value before resorption), 104 MPa (bone's yield strength), and 5 micrometers (physiologic movement of implant), respectively. The results indicated that marginal bone would not be affected. The application of short implant could safe to the bone in biomechanical aspect.
机译:通过将2个倾斜的夹板与2个正常的成角度的植入物放置在一起,进行全部四次口腔康复是一种有效的治疗方法,但更需要操作者的经验。可能需要使用短的植入物(不大于6毫米)代替倾斜的植入物放置。本研究的目的是评估短牙种植体在无牙颌中支持固定修复体的生物力学性能。有限元模型被设计成3个条件。在前区,两个4.1×8 mm。使用植入物。在后部区域,条件1和2分别使用了一对短种植体(4.1×6 mm和4.8×6 mm)。条件3(原始四合一)为2个4.1×8 mm。植入物以30°角放置。在第一磨牙区域施加了150 N.的轴向和倾斜载荷方向。评估了应变,应力,应变能密度(SED)和植入物位移。结果显示,每种条件下的应变,应力和位移分别不大于4000微应变(骨吸收前的最大应变值),104 MPa(骨屈服强度)和5微米(植入物的生理运动)。结果表明边缘骨不会受到影响。短植入物的应用在生物力学方面对骨骼安全。

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