首页> 外文期刊>Journal of Neurosurgery. Spine. >Dynamic lumbar pedicle screw-rod stabilization: In vitro biomechanical comparison with standard rigid pedicle screw-rod stabilization - Laboratory investigation
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Dynamic lumbar pedicle screw-rod stabilization: In vitro biomechanical comparison with standard rigid pedicle screw-rod stabilization - Laboratory investigation

机译:动态腰椎椎弓根钉杆稳定性:与标准刚性椎弓根钉杆稳定性的体外生物力学比较-实验室研究

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Object. It is unclear how the biomechanics of dynamic posterior lumbar stabilization systems and traditional rigid pedicle screw-rod systems differ. This study examined the biomechanical response of a hinged-dynamic pedicle screw compared with a standard rigid screw used in a 1-level pedicle screw-rod construct. Methods. Unembalmed human cadaveric L3-S1 segments were tested intact, after L4-5 discectomy, after rigid pedicle screw-rod fixation, and after dynamic pedicle screw-rod fixation. Specimens were loaded using pure moments to induce flexion, extension, lateral bending, and axial rotation while recording motion optoelectronically. Specimens were then loaded in physiological flexion-extension while applying 400 N of compression. Moment and force across instrumentation were recorded from pairs of strain gauges mounted on the interconnecting rods. Results. The hinged-dynamic screws allowed an average of 160% greater range of motion during flexion, extension, lateral bending, and axial rotation than standard rigid screws (p < 0.03) but 30% less motion than normal. When using standard screws, bending moments and axial loads on the rods were greater than the bending moments and axial loads on the rods when using dynamic screws during most loading modes (p < 0.05). The axis of rotation shifted significantly posteriorly more than 10 mm from its normal position with both devices. Conclusions. In a 1-level pedicle screw-rod construct, hinged-dynamic screws allowed a quantity of motion that was substantially closer to normal motion than that allowed by rigid pedicle screws. Both systems altered kinematics similarly. Less load was borne by the hinged screw construct, indicating that the hinged-dynamic screws allow less stress shielding than standard rigid screws.
机译:目的。尚不清楚动态后路腰椎稳定系统和传统的刚性椎弓根螺钉-杆系统的生物力学有何不同。这项研究检查了铰链动力椎弓根螺钉与1级椎弓根螺钉杆结构中使用的标准刚性螺钉相比的生物力学响应。方法。在L4-5椎间盘切除术之后,刚性椎弓根钉杆固定和动态椎弓根钉杆固定后,完整的人尸体L3-S1节段进行完整测试。使用纯力矩加载标本,以引起弯曲,伸展,横向弯曲和轴向旋转,同时以光电方式记录运动。然后在施加400 N压缩力的同时,将标本加载到生理屈伸中。通过安装在互连杆上的成对应变仪记录仪器上的力矩和力。结果。与标准刚性螺钉(p <0.03)相比,铰接动态螺钉在屈曲,伸展,横向弯曲和轴向旋转过程中的运动范围平均平均高160%(p <0.03),但比正常情况下少30%。当使用标准螺钉时,在大多数加载模式下,使用动态螺钉时,杆上的弯矩和轴向载荷要大于使用杆上的弯矩和轴向载荷(p <0.05)。使用这两种设备时,旋转轴均从其正常位置向后明显移动超过10毫米。结论。在1级椎弓根螺钉杆结构中,铰接动态螺钉允许的运动量比刚性椎弓根螺钉允许的运动量大体上接近法向运动。两种系统都类似地改变运动学。铰链螺钉结构承受的载荷较小,这表明与标准刚性螺钉相比,铰链动态螺钉可提供较小的应力屏蔽。

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