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Facet joint loading in thoracolumbar burst fractures

机译:胸腰椎爆裂骨折的小关节负荷

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摘要

A combined loading of axial compression and anterior shear on a spinal motion segment causes the severe form of burst fracture, often associated with serious neurological problems. The shear force transmitted through the facet joint and the pedicles (wedging effect) to the posterior upper half of the vertebral body is an essential component of the injury mechanism. Burst fractures were created in four thoracolumbar motion segments by axial compression at 100 mm/sec. Each specimen was instrumented with two strain gages (one on the middle of the anterior wall, the other near the base of the pedicles). Two samples were tested in the neutral position while the other two were tested in full extension to maximize facet joint loading. The samples tested in the neutral position experienced crush fractures of the vertebrae, with horizontal fracture lines located at mid height of the cortical shell and minimal spread of the pedicles (failure loads: 2950 and 2004 N). The ratios of strain at the base of the pedicles to strain at the anterior wall prior to failure were 1.7 and 2.0. The samples tested in extension showed collapse of the middle column with vertical fractures in the cortical shell near the base of the pedicles and an increase in interpedicular distance (failure loads: 7377 and 6126 N). The strain ratios were 13.7 and 19.9, with tensile strains in the anterior walls. These results suggest that facet joint loading plays a pivotal role in the burst fracture injury mechanism.
机译:脊柱运动区段上的轴向压缩和前剪切的组合负载导致严重的爆裂裂缝,通常与严重的神经问题有关。通过小关节和椎弓根(楔入效果)传递到椎体的后上半部分的剪切力是损伤机制的必要组分。通过轴向压缩以100mm / sec在四个胸腰带运动段中产生突发骨折。每个试样用两个应变计(一个在前壁中间的一个标本,另一个靠近椎弓根的底部)。在中性位置测试两个样品,而另外两个在全延伸中测试以最大化刻面关节载荷。在中性位置测试的样品经历了椎骨的压碎裂缝,水平裂缝线位于皮质壳的中高,椎弓根的最小扩散(破坏载荷:2950和2004n)。在发生故障之前,椎弓本底座的菌株的菌株比率为1.7和2.0。在延伸中测试的样品显示中间柱的塌陷,在椎弓根基部附近的皮质壳中的垂直骨折和内在距离的增加(故障载荷:7377和6126N)。应变比为13.7和19.9,在前壁中具有拉伸菌株。这些结果表明,面关节载荷在突发断裂损伤机制中起着枢轴作用。

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