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Characterization of bone-implant fixation using modal analysis: application to a press-fit implant model.

机译:使用模态分析表征骨植入物固定:应用于压入式植入物模型。

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Orthopaedic implant fixation is strongly dependant upon the effective mechanical properties of newly formed tissue. In this study, we evaluated the potential of modal analysis to derive viscoelastic properties of periprosthetic tissue. We hypothesized that Young's modulus and loss factor could be obtained by a combined theoretical, computational and experimental modal analysis approach. This procedure was applied to ex vivo specimens from a cylindrical experimental implant placed in cancellous bone in an unloaded press-fit configuration, obtained after a four week observation period. Four sections each from seven textured titanium implants were investigated. The first resonant frequency and loss factor were measured. Average experimentally determined loss factor was 2% (SD 0.4%) and average first resonant frequency was 2.1 KHz (SD: 50). A 2D axisymmetric finite element (FE) model identified effective Young's modulus of tissue using experimental resonant frequencies as input. Average value was 42 MPa (SD: 2.4) and no significant difference between specimens was observed. In this pilot study, the non-destructive method allowed accurate measure of dynamic loss factor and resonant frequency and derivation of effective Young's modulus. Prior to implementing this dynamic protocol for broader mechanical evaluation of experimental implant fixation, further work is needed to determine if this affects results from subsequent destructive shear push-out tests.
机译:骨科植入物的固定在很大程度上取决于新形成的组织的有效机械性能。在这项研究中,我们评估了模态分析在假体周围组织粘弹性特性方面的潜力。我们假设可以通过组合的理论,计算和实验模态分析方法来获得杨氏模量和损耗因子。将该程序应用于从圆柱状实验植入物中获得的离体标本,该圆柱状实验植入物以无负载的压入配合构型放置在松质骨中,在四周的观察期后获得。研究了来自七个纹理化钛植入物的四个部分。测量了第一谐振频率和损耗因子。实验确定的平均损耗因子为2%(SD 0.4%),平均第一谐振频率为2.1 KHz(SD:50)。 2D轴对称有限元(FE)模型使用实验谐振频率作为输入来识别有效的组织杨氏模量。平均值为42 MPa(标准差:2.4),样品之间未观察到明显差异。在这项初步研究中,无损方法可以准确测量动态损耗因子和谐振频率,并推导有效杨氏模量。在实施此动态方案以对实验性植入物固定进行更广泛的机械评估之前,需要做进一步的工作来确定这是否影响随后的破坏性剪切推出试验的结果。

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