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A Method to Improve Experimental Validation of Finite-Element Models of Long Bones

机译:一种改进长骨有限元模型实验验证的方法

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Finite-element (FE) simulations are extremely sensitive to boundary conditions, including the position of applied forces. This is particularly critical for FE models of bones, where the lack of a univocal reference system makes identifying the boundary conditions difficult. The aims of this work were to design a transducer (FP-transducer) to accurately determine the position of the resultant joint force during in vitro tests, and to assess its accuracy for future application in validating numerical models of long bones. A strain gauge-based transducer was designed to indirectly measure the position of the force applied to the long bones during in vitro tests, by measuring the reaction moments about two perpendicular axes, generated by the force applied. Validation tests were performed to quantify the intrinsic precision of the FP-transducer (by applying calibrated forces at known locations), and the overall accuracy when the FP-transducer was included in a typical setup for long bone testing. The intrinsic accuracy of the FP-transducer when used to calculate the position of an offset force was satisfactory (0.66 mm). The overall accuracy of the FP-transducer in measuring the position of the applied force, when included in a typical set-up for long bone testing was 0.85 mm. In vitro validation of FE models of long bones may, therefore, be improved, thanks to a more accurate determination of the force application point.
机译:有限元(FE)模拟对边界条件(包括作用力的位置)极为敏感。这对于骨骼的有限元模型尤为重要,因为缺乏统一的参考系统使确定边界条件变得困难。这项工作的目的是设计一种换能器(FP换能器),以在体外测试过程中准确确定合力的位置,并评估其准确性,以备将来用于验证长骨数值模型时使用。基于应变仪的换能器被设计为通过测量由施加的力产生的绕两个垂直轴的反应力矩来间接测量在体外测试过程中施加于长骨的力的位置。进行了验证测试,以量化FP换能器的固有精度(通过在已知位置施加校准力)以及将FP换能器包括在长骨测试的典型设置中时的总体精度。当用于计算偏置力的位置时,FP传感器的固有精度令人满意(0.66 mm)。当包括在用于长骨测试的典型装置中时,FP换能器在测量施加力位置时的整体精度为0.85 mm。因此,由于可以更准确地确定施力点,因此可以改善长骨有限元模型的体外验证。

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