Comparison of the effects of implant locations and overdenture designs on the implants and bone stress: a finite element analysis

Elifnur zelce, E. Tokar, zg Karacaer
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Abstract

Objective The effects of implant locations and prosthesis design (palate less, full palate) on stress values of the implant and bone in maxillary overdenture prostheses were examined and compared with finite element analysis. Material and Methods Full palate and palate less four implant supported finite element overdenture models have created with different implant locations (M1: bilateral lateral 1. premolar, M2: canine 2. premolar, M3: 1. premolar 1. Molar). Static loads have applied with food stuff method on 1. Molar region. Von mises stress on implants and implant parts, maximum and minimum principal stress generated in peri-implant bone have calculated with finite element analysis method (FEA). Results As a result, it was observed that the palate less design creates more stress on the implants and bone compared to the full palate design. In addition, stress formation was observed to be higher in models with implant positions are posterior. Conclusion In implant supported overdentures (ISO), palatal coverage ensures more balanced distribution of stresses occurring around the implants and implant parts, regardless of the location of the supporting implants.
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种植体位置和覆盖义齿设计对种植体和骨应力影响的比较:有限元分析
目的探讨种植体位置和种植体设计(少腭、全腭)对上颌覆盖义齿种植体和骨应力值的影响,并与有限元分析进行比较。材料与方法采用不同种植位置(M1:双侧1)制作全腭和缺腭四种植体支撑有限元覆盖义齿模型。前磨牙,M2:犬齿2。前磨牙,M3: 1前磨牙1。摩尔)。在1上用食品材料法施加静载荷。摩尔地区。采用有限元分析法(FEA)计算种植体和种植体部件的Von mises应力、种植体周围骨产生的最大和最小主应力。结果:与全腭设计相比,少腭设计对种植体和骨产生了更大的应力。此外,在种植体位置后侧的模型中,观察到应力形成较高。结论在种植支撑覆盖义齿(ISO)中,腭覆盖可以使种植体和种植体周围的应力分布更加平衡,而与支撑种植体的位置无关。
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