首页> 外文期刊>Acta of Bioengineering and Biomechanics >Load-bearing evaluation of spinal posterior column by measuring surface strain from lumbar pedicles. An in vitro study.
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Load-bearing evaluation of spinal posterior column by measuring surface strain from lumbar pedicles. An in vitro study.

机译:通过测量腰椎椎弓根的表面应变评估脊柱后柱的承重。体外研究。

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摘要

An understanding of the load transfer within spinal posterior column of lumbar spine is necessary to determine the influence of mechanical factors on potential mechanisms of the motion-sparing implant such as artificial intervertebral disc and the dynamic spine stabilization systems. In this study, a new method has been developed for evaluating the load bearing of spinal posterior column by the surface strain of spinal pedicle response to the loading of spinal segment. Six cadaveric lumbar spine segments were biomechanically evaluated between levels L1 and L5 in intact condition and the strain gauges were pasted to an inferior surface of L2 pedicles. Multidirectional flexibility testing used the Panjabi testing protocol; pure moments for the intact condition with overall spinal motion and unconstrained intact moments of +/-8 Nm were used for flexion-extension and lateral bending testing. High correlation coefficient (0.967-0.998) indicated a good agreement between the load of spinal segment and the surface strain of pedicle in all loading directions. Principal compressive strain could be observed in flexion direction and tensile strain in extension direction, respectively. In conclusion, the new method seems to be effective for evaluating posterior spinal column loads using pedicles' surface strain data collected during biomechanical testing of spine segments.
机译:必须了解腰椎脊柱后柱内的负荷转移,才能确定机械因素对诸如人工椎间盘和动态脊柱稳定系统之类的保运动植入物潜在机制的影响。在这项研究中,已开发出一种新方法,用于通过脊椎椎弓根的表面应变对脊柱节段的载荷响应来评估脊柱后柱的载荷。在完好无损的情况下,在L1和L5的水平之间进行生物力学评估了六个尸体腰椎节段,并将应变仪粘贴到L2椎弓根的下表面。多向灵活性测试使用了Panjabi测试协议;使用完整脊柱运动的完整状态的纯力矩和+/- 8 Nm的无约束完整力矩进行屈伸和横向弯曲测试。高相关系数(0.967-0.998)表明在所有载荷方向上,脊柱节段的载荷与椎弓根的表面应变之间具有良好的一致性。在弯曲方向和拉伸方向分别可以观察到主要压缩应变。总之,使用在脊柱节段的生物力学测试过程中收集的椎弓根表面应变数据,该新方法似乎对评估脊柱后负荷有效。

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