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The direction of progressive herniation in porcine spine motion segments is influenced by the orientation of the bending axis.

机译:猪脊柱运动节段中进行性突出的方向受弯曲轴方向的影响。

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Background. It has been shown that disc herniations are a cumulative injury created by repetitive flexion motion while under modest compressive loads. There is a lack of data linking the direction of nucleus tracking to the orientation of the bending motion axis. Our purpose was to determine if the direction that the nucleus tracks through the annulus during progressive herniation is predictable from the direction of bending motion (i.e. a specific side with posterio-lateral herniation). Methods. Matched cohorts (nu=16) of porcine cervical spine (C3/4 and C5/6) motion segments were potted in aluminum cups and bent at an angle of 30 degrees to the sagittal plane flexion axis while under a sustained compressive load of 1472N. Findings. The direction of bending motion affected the tracking pattern of the nucleus through the annular fibres in a predictable pattern. Specifically, bending the motion segments at an angle of 30 degrees to the left of the sagittal plane flexion axis biased the movement of the nucleus toward the posterior right side of the disc in 15 of the 16 specimens. Interpretation. Based on this animal model, shown to have similar biomechanical behaviour to humans, the direction that the nucleus tracks through the annular fibres appears to be dependent upon the direction of bending motion. This may have implications on both herniation prevention and rehabilitation of posterio-lateral bulges and herniations.
机译:背景。已经显示出椎间盘突出症是在适度的压缩载荷下由反复屈曲运动造成的累积损伤。缺少将核跟踪方向与弯曲运动轴的方向关联的数据。我们的目的是从弯曲运动的方向(即后外侧突出的特定侧面)确定在进行性疝期间核跟踪通过瓣环的方向是否可以预测。方法。将配对的队列(nu = 16)的猪颈椎(C3 / 4和C5 / 6)运动节段装在铝杯中,并在矢向屈曲轴30度的角度下弯曲,同时承受1472N的持续压缩载荷。发现。弯曲运动的方向以可预测的方式影响通过环形纤维的核的跟踪方式。具体而言,在16个样本中的15个样本中,将运动段弯曲成与矢状面屈曲轴的左侧成30度角,会使核运动朝着椎间盘的右后侧偏移。解释。根据该动物模型(显示出与人类相似的生物力学行为),细胞核穿过环形纤维的方向似乎取决于弯曲运动的方向。这可能对预防疝气和后外侧隆起和疝的康复都有影响。

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