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Optimized Dental Implant Fixture Design for the Desirable Stress Distribution in the Surrounding Bone Region: A Biomechanical Analysis

机译:优化的牙科植入物夹具设计在周围骨区中所需的应力分布:生物力学分析

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摘要

The initial stability of a dental implant is known to be an indicator of osseointegration at immediate loading upon insertion. Implant designs have a fundamental role in the initial stability. Although new designs with advanced surface technology have been suggested for the initial stability of implant systems, verification is not simple because of various assessment factors. Our study focused on comparing the initial stability between two different implant systems via design aspects. A simulated model corresponding to the first molar derived from the mandibular bone was constructed. Biomechanical characteristics between the two models were compared by finite element analysis (FEA). Mechanical testing was also performed to derive the maximum loads for the two implant systems. CMI IS-III active (IS-III) had a more desirable stress distribution than CMI IS-II active (IS-II) in the surrounding bone region. Moreover, IS-III decreased the stress transfer to the nerve under the axial loading direction more than IS-II. Changes of implant design did not affect the maximum load. Our analyses suggest that the optimized design (IS-III), which has a bigger bone volume without loss of initial fixation, may minimize the bone damage during fixture insertion and we expect greater effectiveness in older patients.
机译:牙科植入物的初期稳定性被称为是在在插入时即刻加载骨整合的指标。植入物的设计在初始稳定性的基础性作用。尽管有先进的表面技术,新的设计已经被建议用于植入系统的初始稳定性,验证是因为不同的评估因素并不简单。我们的研究着重于通过设计方面的两个不同的种植系统之间的初始稳定性比较。构建对应于从下颌骨导出的第一磨牙的模拟模型。两个模型之间的生物力学特性通过有限元分析(FEA)进行比较。还进行机械测试,以获得最大载荷为两个植入系统。 CMI IS-III活性(IS-III)具有比CMI更理想的应力分布IS-II在周围的骨区域有源(IS-II)。此外,IS-III降低轴向加载方向下的应力传递到神经比IS-II更多。假体设计的变化并没有影响最大负荷。我们的分析表明,优化的设计(IS-III),其具有更大的骨体积,而不初始固定的损失,可以最小化夹具插入过程中的骨损伤,我们预计在老年患者更大的效力。

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