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The rib cage reduces intervertebral disc pressures in cadaveric thoracic spines by sharing loading under applied dynamic moments

机译:通过在应用动态时刻分享负载,肋骨减少了尸体胸椎的椎间盘压力

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The effects of the rib cage on thoracic spine loading are not well studied, but the rib cage may provide stability or share loads with the spine. Intervertebral disc pressure provides insight into spinal loading, but such measurements are lacking in the thoracic spine. Thus, our objective was to examine thoracic intradiscal pressures under applied pure moments, and to determine the effect of the rib cage on these pressures. Human cadaveric thoracic spine specimens were positioned upright in a testing machine, and Dynamic pure moments (0 to +/-5 N.m) with a compressive follower load of 400 N were applied in axial rotation, flexion- extension, and lateral bending. Disc pressures were measured at T4-T5 and T8-T9 using needle-mounted pressure transducers, first with the rib cage intact, and again after the rib cage was removed. Changes in pressure vs. moment slopes with rib cage removal were examined. Pressure generally increased with applied moments, and pressure-moment slope increased with rib cage removal at T4-T5 for axial rotation, extension, and lateral bending, and at T8-T9 for axial rotation. The results suggest the intact rib cage carried about 62% and 56% of axial rotation moments about T4-T5 and T8-T9, respectively, as well as 42% of extension moment and 36-43% of lateral bending moment about T4-T5 only. The rib cage likely plays a larger role in supporting moments than compressive loads, and may also play a larger role in the upper thorax than the lower thorax. (C) 2017 Published by Elsevier Ltd.
机译:肋笼对胸椎载荷的影响尚未得到很好的研究,但肋骨可以提供稳定性或与脊柱的载荷提供载荷。椎间盘压力为脊柱载荷提供了洞察力,但胸椎缺乏这种测量。因此,我们的目的是检查应用纯片下的胸心管压力,并确定肋骨对这些压力的影响。人的尸体胸椎标本直立地定位在试验机中,动态纯矩(0至+/- 5 n.m),具有400 n的压缩从动载荷载荷,轴向旋转,屈曲 - 延伸和横向弯曲。在T4-T5和T8-T9下测量磁盘压力,使用针头安装的压力传感器,首先用肋骨完好无损,再次除去肋骨后再次。检查压力与肋骨去除的压力与时刻斜率的变化。压力通常随着施加的矩而增加,压力力矩斜率随着T4-T5的肋笼而增加,用于轴向旋转,延伸和横向弯曲,并且在T8-T9处用于轴向旋转。结果表明,完整的肋骨载有约62%和56%的轴转矩,分别约为T4-T5和T8-T9,以及约42%的延长力矩和36-43%关于T4-T5的横向弯矩只要。肋笼可能在支撑时刻起比压缩载荷的较大作用,并且在上层胸部也可能在上层胸部中发挥更大的作用。 (c)2017年由elestvier有限公司出版

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