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Multi-planar bending properties of lumbar intervertebral joints following cyclic bending.

机译:循环弯曲后腰椎关节的多平面弯曲特性。

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Objective. To assess the changes in the multi-planar bending properties of intervertebral joints following cyclic bending along different directions. Design. An in vitro biomechanical study using porcine lumbar motion segments. Background. Repeated bending has been suggested as part of the etiology of gradual prolapse of the intervertebral disc, but the multi-planar changes in bending properties following cyclic loading have not been examined in detail. Methods. Porcine lumbar motion segments were subject to 1500 cycles of bending along directions of 0 degrees (flexion), 30 degrees, 60 degrees, or 90 degrees (right lateral bending). The multi-planar bending moments and hysteresis energies were recorded before loading and after various cycle numbers. Results. Repeated bending at 30 degrees and 60 degrees resulted in greater decreases in mean bending moment and hysteresis energy than bending at 0 degrees or 90 degrees. No significant differences were seen between loading groups for the change in bending moment along the anterior testing directions, but significant differences were observed in the posterior and lateral testing directions, with bending at 30 degrees causing a significantly greater decrease in bending moment in the postero-lateral directions. Conclusions. The change in mechanical properties of porcine intervertebral joints due to cyclic bending depend on the direction of loading and the direction in which the properties are measured. Loading at 30 degrees provokes the most marked changes in bending moment and hysteresis energy.Relevance This study compares how cyclic bending along different directions affect the multi-planar bending properties of intervertebral joints, and indicates bending orientations that may be more likely to result in cumulative damage.
机译:目的。评估沿不同方向的周期性弯曲后,椎间关节的多平面弯曲特性的变化。设计。使用猪腰椎运动节段的体外生物力学研究。背景。反复弯曲是椎间盘逐渐脱出的病因之一,但循环载荷后弯曲特性的多平面变化尚未得到详细研究。方法。猪腰部运动段沿0度(弯曲),30度,60度或90度(右侧弯曲)的方向弯曲1500个循环。在加载之前和各种循环次数之后记录多平面弯曲力矩和磁滞能量。结果。与0度或90度弯曲相比,在30度和60度反复弯曲会导致平均弯曲力矩和磁滞能量的降低更大。载荷组之间沿前测试方向的弯矩变化无显着差异,但在后测试和侧向测试方向上观察到显着差异,以30度弯曲会导致后弯角的弯矩下降明显更大。横向。结论由于周期性弯曲,猪椎间关节的机械性能变化取决于载荷的方向和测量性能的方向。相关性本研究比较了沿不同方向的周期性弯曲如何影响椎间关节的多平面弯曲特性,并指出了弯曲方向更可能导致累积应力的变化。损伤。

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