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Strain Distribution around Dental Implants in Cortical/Cancellous Bone Models using DIC Method

机译:使用DIC方法的皮质/松质骨模型中牙科植入物周围的应变分布

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For normal healthy teeth, the percussive energy generated by mastication is attenuated by the periodontal ligament at the healthy bone/natural tooth interface. However, when a natural tooth must be replaced by an implant because of damage or disease, the ligament is lost and the implant will transmit the percussive forces to the bone directly. Studies have evaluated the deformation distribution of the alveolar bone in the vicinity of implants using finite element analysis and photoelasticity. However, finite element analysis requires clinical verification or a determination of material properties, and photoelastic materials generally have material properties and structure quite different from those of actual bone. Therefore, this study examined the deformation distribution around dental implants in cortical/cancellous bone experimentally using sawbone cortical/cancellous bone models. Dental implants were placed in the bone models and the displacement distribution was measured using the digital image correlation method, and the strain distribution was visualized under a compressive load that simulated the occlusion force.
机译:对于正常健康的牙齿,通过健康骨/天然牙齿界面处的牙周韧带产生的咀嚼能量衰减。然而,当由于损伤或疾病而必须被植入物取代天然牙齿时,韧带丢失,植入物将直接将冲击力传递给骨骼。研究使用有限元分析和光弹性评估了植入物附近的肺泡骨的变形分布。然而,有限元分析需要临床验证或确定材料性能的测定,并且光弹性材料通常具有与实际骨骼完全不同的材料性质和结构。因此,本研究通过锯骨皮质/松质骨模型实验研究了皮质/松质骨中牙科植入物周围的变形分布。牙科植入物被置于骨模型中,并且使用数字图像相关方法测量位移分布,并且在模拟闭塞力的压缩载荷下可视化应变分布。

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