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首页> 外文期刊>Medical engineering & physics. >Effect of specimen length: are the mechanics of individual motion segments comparable in functional spinal units and multisegment specimens?
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Effect of specimen length: are the mechanics of individual motion segments comparable in functional spinal units and multisegment specimens?

机译:标本长度的影响:在功能性脊柱单位和多节标本中,各个运动节段的力学性能是否可比?

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Functional spinal units (FSUs) are frequently used for in vitro mechanical testing. This approach assumes that the mechanical behavior of the FSUs is equivalent to the mechanics of these segments within the intact spine. The purpose of this study was to determine whether normal spinal mechanics are compromised in FSU preparations. Flexion-extension pure-moment flexibility testing was performed on 13 L2-L5 porcine specimens. The moment-angle relationship of the L3/L4 segment was recorded, and then the multisegment specimens were cut down to L3/L4 FSUs and retested. Comparisons of stiffness, range of motion, and laxity zone were made between conditions. The neutral zone and range of motion parameters were significantly larger in the L3/L4 motion segment compared to the L3/L4 segment tested within the multisegment specimen; the stiffness was not significantly different. These differences were attributed to cutting the supraspinous ligament as this ligament spans several vertebral levels. Flexion mechanical tests performed on FSUs should be interpreted cautiously as the biomechanics of FSUs is altered from normal. Although the choice of spine length depends on the experimental purpose, spinal flexion studies should be performed on multisegment specimens to appropriately represent the anatomical boundary conditions.
机译:功能性脊柱单位(FSU)通常用于体外机械测试。该方法假定FSU的机械性能与完整脊柱内这些节段的机械性能相同。这项研究的目的是确定FSU制剂中正常的脊柱力学是否受到损害。对13个L2-L5猪标本进行了屈伸-纯力矩柔韧性测试。记录L3 / L4段的弯矩角关系,然后将多段试样切成L3 / L4 FSU,然后重新测试。在不同条件下比较刚度,运动范围和松弛区域。与在多段样本中测试的L3 / L4段相比,L3 / L4运动段的中性区域和运动参数范围明显更大;刚度没有显着差异。这些差异归因于切断棘上韧带,因为该韧带跨越多个椎骨水平。由于FSU的生物力学与正常情况有所不同,因此应谨慎解释对FSU进行的屈伸力学测试。尽管脊柱长度的选择取决于实验目的,但应在多节标本上进行脊柱屈曲研究,以恰当地代表解剖学边界条件。

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