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Influence of Deformation and Stress between Bone and Implant from Various Bite Forces by Numerical Simulation Analysis

机译:数值模拟分析对咬合力对骨与种植体变形和应力的影响。

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摘要

Endosseous oral implant is applied for orthodontic anchorage in subjects with multiple tooth agenesis. Its effectiveness under orthodontic loading has been demonstrated clinically and experimentally. This study investigates the deformation and stress on the bone and implant for different bite forces by three-dimensional (3D) finite element (FE) methods. A numerical simulation of deformation and stress distributions around implants was used to estimate the survival life for implants. The model was applied to determine the pattern and distribution of deformations and stresses within the endosseous implant and on supporting tissues when the endosseous implant is used for orthodontic anchorage. A threaded implant was placed in an edentulous segment of a human mandible with cortical and cancellous bone. Analytical results demonstrate that maximum stresses were always located around the implant neck in marginal bone. The results also reveal that the stress for oblique force has the maximum value followed by the horizontal force; the vertical force causes the stress to have the minimum value between implant and bone. Thus, this area should be preserved clinically to maintain the structure and function of a bone implant.
机译:骨内口腔植入物用于患有多牙发育不全的受试者的正畸锚固。在正畸负荷下其有效性已在临床和实验上得到证明。本研究通过三维(3D)有限元(FE)方法研究了不同咬合力对骨骼和植入物造成的变形和应力。植入物周围的变形和应力分布的数值模拟用于估计植入物的生存期。当将骨内植入物用于正畸锚固时,该模型用于确定骨内植入物内以及支撑组织上的变形和应力的模式和分布。将带螺纹的植入物放置在具有皮质和松质骨的人类下颌骨的无牙部分中。分析结果表明,最大应力始终位于边缘骨中种植体颈部周围。结果还表明,斜向力的应力最大,其次为水平力。垂直力使应力在植入物和骨骼之间具有最小值。因此,该区域应在临床上保留下来以维持骨植入物的结构和功能。

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