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A novel design for application of pure moments in-vitro: Application to the kinematic analysis of the cervical spine

机译:体外应用纯矩的新颖设计:在颈椎运动分析中的应用

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摘要

The simple and cost-effective cable-pulley apparatus proposed by Crawford et al. (1995) has been long and widely used to assess the kinematics and biomechanics of the spine in-vitro. A major limitation of that fixed-ring system relies on the manual readjustment of the cable guides, which is required to maintain parallelism of the tension-cables during spine rotations. While several solutions have since been suggested to improve this loading approach, their implementation may be challenging for research groups with limited resources.In this study we propose an upgrade to the traditional fixed-ring design which aims to improve its usability while retaining the simplicity. The main novelty of this setup is the coupling of a through-hole along the diameter of the pulley with a rod fixated to the top of the spine. The coupling allows relative translation of the pulley along the rod's axis, thus permitting readjustment of the tension-cables' orientation with minimal manual intervention. The effectiveness of the system was demonstrated by measuring intervertebral kinematics in three 7-vertebra cervical spines.During sagittal and frontal-plane rotations, tension-cables parallelism could be easily and quickly restored by pushing the pulley along the rod's axis. The measured intervertebral rotations were consistent with data from the literature. The interspecimen standard deviation of the total range of motion ranged between 2.1° and 9.6° across all loading configurations.The simple and light mobile-pulley fixture presented in this study has shown to be easy to use and its application may represent a viable alternative to the original fixed-ring design.
机译:Crawford等人提出的一种简单且具有成本效益的电缆滑轮设备。 (1995年)长期以来被广泛用于评估脊柱的运动学和生物力学。该固定环系统的主要局限性在于手动调整电缆导管,这是在脊柱旋转过程中保持张力电缆平行度所必需的。虽然已经提出了几种解决方案来改进这种加载方法,但对于资源有限的研究小组而言,其实施可能会面临挑战。在本研究中,我们提出了对传统固定环设计的升级,旨在在保持简单性的同时提高其可用性。这种装置的主要新颖之处是沿着皮带轮直径的通孔与固定在书脊顶部的杆的连接。联轴器允许皮带轮沿杆的轴线相对平移,从而允许以最小的人工干预来重新调整张力电缆的方向。该系统的有效性通过测量三个7个椎骨颈椎的椎间运动来证明。在矢状面和额面旋转过程中,通过沿杆的轴推动滑轮可以轻松快速地恢复张力电缆的平行度。测量的椎间旋转度与文献数据一致。在所有载荷配置下,总运动范围的标本间标准偏差在2.1°至9.6°之间。本研究中介绍的简单轻便的移动皮带轮夹具易于使用,其应用可能是一种可行的替代方案原始的固定环设计。

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