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A New Bone Fixation Device for Human Joint Test Rig Machine

机译:一种用于人类关节试验台机的新型骨固定装置

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In vitro experimental tests are of great importance in human joint biomechanics. These tests allow the study of the kinetostatic and dynamic behaviour of human joints: a limb specimen is connected to a rig, controlled loads are applied, and the joint displacements are measured. Fixation of the bone to the rig is a typical problem that raises in these applications. A new fixation device is presented in this paper that features several interesting and innovative characteristics: it consists of a passive parallel mechanism that allows adjustment of the pose of the bone with respect to the rig with six degrees of freedom; if needed, the bone can be removed from the rig and repositioned exactly at the same pose during the experimental tests; all six degrees of freedom of the fixation device can be locked by acting only on two screws, thus simplifying the fixation operation; the parallel structure of the mechanism guarantees a high fixation stiffness. The complete design is presented and discussed, together with the results from the workspace and stiffness analyses of the mechanism, that are particularly important for the considered applications.
机译:体外实验测试在人类关节生物力学中具有重要意义。这些测试允许研究人关节的动态和动态行为:肢体样品连接到钻机,施加受控负载,测量接合位移。将骨骼固定到钻机是在这些应用中提升的典型问题。本文提出了一种新的固定装置,其特征在于具有多种有趣和创新的特性:它包括被动并联机构,允许在具有六个自由度的钻机上调节骨骼的姿势;如果需要,可以在实验测试期间从钻机中除去骨头并在同一姿势中重新定位;通过仅在两个螺钉上仅作用,可以锁定固定装置的所有六个自由度,从而简化固定操作;该机构的平行结构可确保高固定刚度。呈现并讨论了完整的设计,以及来自机制的工作空间和刚度分析的结果,对所考虑的应用尤为重要。

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