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The effects of a new shape-memory alloy interspinous process device on the distribution of intervertebral disc pressures in vitro

机译:新型形状记忆合金棘突间装置对椎间盘压力分布的影响

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摘要

This study was designed to measure the pressure distribution of the intervertebral disc under different degrees of distraction of the interspinous process, because of a suspicion that the degree of distraction of the spinous process may have a close relationship with the disc load share. Six human cadaver lumbar spine L2-L5 segments were loaded in flexion, neutral position, and extension. The L3-L4 disc load was measured at each position using pressure measuring films. Shape-memory interspinous process implants (SMID) with different spacer heights, ranging in size from 10 to 20 mm at 2 mm increments, were used. It was found that a SMID with a spacer height equal to the distance of the interspinous process in the neutral position can share the biomechanical disc load without a significant change of load in the anterior annulus. An interspinous process stabilizing device (IPD) would not be appropriate to use in those cases with serious spinal stenosis because the over-distraction of the interspinous process by the SMID would lead to overloading the anterior annulus which is a recognized cause of disc degeneration.
机译:由于怀疑棘突的分散程度可能与椎间盘的负荷分担密切相关,因此本研究旨在测量椎间盘在不同牵张程度下的椎间盘压力分布。六个人尸体腰椎L2-L5节段以屈曲,中立位置和伸展方式加载。使用压力测量膜在每个位置测量L3-L4盘负载。使用具有不同间隔物高度的形状记忆棘突间植入物(SMID),间隔物的大小范围为10至20 mm,增量为2 mm。已经发现,间隔物高度等于中性位置棘突间距离的SMID可以分担生物力学椎间盘负荷,而前环的负荷没有明显变化。棘突间稳定装置(IPD)不适合用于脊柱狭窄严重的病例,因为SMID对棘突间过度牵引会导致前环超负荷,这是公认的椎间盘退变的原因。

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