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首页> 外文期刊>Journal of Biomechanics >Representation of passive spinal element contributions to in vitro flexion-extension using a polynomial model: illustration using the porcine lumbar spine.
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Representation of passive spinal element contributions to in vitro flexion-extension using a polynomial model: illustration using the porcine lumbar spine.

机译:使用多项式模型表示被动脊柱元素对体外屈伸的贡献:使用猪腰椎的插图。

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摘要

A polynomial modeling approach was developed to describe the contribution of individual passive spinal elements to the lumbar spinal motion segment flexion-extension motion. Flexion-extension moment-angle curves from porcine lumbar spines tested using a robotic testing system were described using sixth-order polynomials; the polynomials describing different dissection conditions were subtracted to describe the contribution of individual spinal elements to the motion segment flexion-extension properties. This modeling approach is a powerful and straightforward method for representing the mechanics of individual spinal tissues in biomechanical models and could easily be expanded to incorporate other features such as axial load.
机译:开发了一种多项式建模方法来描述单个被动脊柱元素对腰椎运动段屈伸运动的贡献。使用六阶多项式描述了使用机器人测试系统测试的猪腰椎的屈伸力矩角曲线。减去描述不同解剖条件的多项式,以描述各个脊柱元素对运动节段屈伸特性的影响。这种建模方法是一种强大而直接的方法,用于在生物力学模型中表示单个脊柱组织的力学,并且可以轻松扩展以合并其他功能,例如轴向载荷。

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