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Biomechanics of the aging spine.

机译:老化脊柱的生物力学。

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Experimental studies indicate age and degeneration affect spinal biomechanics. In vitro biomechanical experimentation is used to validate finite element cervical spine models. A high percentage of experimental studies have utilized older specimens. Computer models based on these experimental studies may not accurately represent the normal population. Younger full-column and C5-C6 motion segments were tested under pure sagittal plane moments. A review of literature was conducted, and results from previous studies were compared to present data to determine whether age was an influencing factor in spinal biomechanics. Findings indicate younger specimens under equivalent pure moment loading magnitudes underwent greater ranges of motion between 0.5 and 2.5 Nm. Based on these preliminary findings, validation of finite element modeling to ensure biofidelity should consider age as a factor that may affect biomechanics.
机译:实验研究表明年龄和变性会影响脊柱生物力学。体外生物力学实验用于验证有限元颈椎模型。高比例的实验研究已经利用了较旧的标本。基于这些实验研究的计算机模型可能无法准确代表正常人群。在纯矢状面力矩下测试了较年轻的全柱和C5-C6运动段。进行了文献综述,并将以前的研究结果与当前数据进行比较,以确定年龄是否是脊柱生物力学的影响因素。研究结果表明,在相同的纯矩荷载大小下,较年轻的试样在0.5至2.5 Nm之间的运动范围更大。基于这些初步发现,为确保生物保真度而进行的有限元建模验证应将年龄视为可能影响生物力学的因素。

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