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Effects of cord pretension and stiffness of the Dynesys system spacer on the biomechanics of spinal decompression- a finite element study

机译:绳索预紧力和Dynesys系统垫片的刚度对脊柱减压生物力学的影响-有限元研究

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摘要

BackgroundThe Dynesys system provides stability for destabilized spines while preserving segmental motion. However, clinical studies have demonstrated that the Dynesys system does not prevent adjacent segment disease. Moreover, biomechanical studies have revealed that the stiffness of the Dynesys system is comparable to rigid fixation. Our previous studies showed that adjusting the cord pretension of the Dynesys system alleviates stress on the adjacent level during flexion. We also demonstrated that altering the stiffness of Dynesys system spacers can alleviate stress on the adjacent level during extension of the intact spine. In the present study, we hypothesized that omitting the cord preload and changing the stiffness of the Dynesys system spacers would abate stress shielding on adjacent spinal segments.
机译:背景技术Dynesys系统为不稳定的脊柱提供稳定性,同时保留分段运动。但是,临床研究表明Dynesys系统不能预防相邻节段疾病。此外,生物力学研究表明,Dynesys系统的刚度可与刚性固定媲美。我们以前的研究表明,调节Dynesys系统的绳索预紧力可减轻屈曲过程中相邻水平的压力。我们还证明了改变Dynesys系统垫片的刚度可以减轻完整脊柱伸展过程中相邻水平面上的应力。在本研究中,我们假设省略了绳索的预紧力并改变了Dynesys系统垫片的刚度将减轻相邻脊柱节段的应力屏蔽。

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