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Finite Element Analysis of Dental Implants with and without Microthreads under Static and Dynamic Loading

机译:静电和动态荷载下牙科植入物的有限元分析

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摘要

The aim of this study was to assess stress and strain patterns in cortical and cancellous bones surrounding newly designed dental implants with different thread patterns. Static loading of dental implants has been well studied, but studies on dynamic loading and fatigue analysis of dental implants are scarce. This study analyzed the static, dynamic, and fatigue behaviors of dental implants using finite element analysis (FEA). Two models of dental implants were analyzed in this study. Model A was a tapered implant with V-shaped threads and model B was a tapered implant with microthreads in the uppermost region and V-shaped threads in the rest of the body. Two types of loading conditions were simulated in an FEA model and stress and strain patterns in the surrounding bone were analyzed. Dynamic loading increased the level of stress by 5–10% compared with static loading. Both implants showed acceptable results under static and dynamic loadings, but the second implant with microthreads caused lower stress and strain in cortical and cancellous bones. Dynamic and fatigue analyses can provide a more realistic understanding of the function of dental implants. Replacing the uppermost threads with microthreads can lead to more desirable stress patterns in bone, as well as a higher safety factor and longevity.
机译:本研究的目的是评估围绕具有不同螺纹图案的新设计的牙科植入物的皮质和松质骨骼中的压力和应变模式。牙科植入物的静载荷已经很好地研究,但有关牙科植入物的动态负荷和疲劳分析的研究是稀缺的。本研究分析了使用有限元分析(FEA)的牙科植入物的静态,动态和疲劳行为。在本研究中分析了两种牙科植入模型。模型A是具有V形螺纹的锥形植入物,B模型B是锥形植入物,其在最上部区域中的微生物和体内的其余部分中的V形螺纹。分析了在FEA模型中模拟了两种类型的装载条件,并分析了周围骨中的应力和应变模式。与静态载荷相比,动态负荷提高了5-10%的压力水平。两种植入物在静态和动态载荷下显示出可接受的结果,但第二个植入物在皮质和松质骨骼中引起较低的应力和应变。动态和疲劳分析可以提供对牙科植入物功能的更现实的理解。更换具有微观reads的最上面的螺纹可以导致骨骼中更理想的应力模式,以及更高的安全系数和寿命。

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