Mendelson Kornblum Orthopaedic & Spine Surgeons, 11900 East 12 Mile Rd, Warren, MI 48093, USA.
Spine J. 2013 Jan;13(1):77-84. doi: 10.1016/j.spinee.2012.11.013. Epub 2013 Jan 5.
Stand-alone interbody cages with integrated screws potentially provide a biomechanically stable solution for anterior lumbar interbody fusion (ALIF) that alleviates the need for additional exposure for supplemental fixation, thereby reducing the chance of additional complications and morbidity.
To compare the stability of a stand-alone anterior interbody fusion system with integrated fixation screws against traditional supplemental fixation methods and to evaluate the difference between three and four fixation screws in the stand-alone cage.
In vitro cadaveric biomechanical study.
Eight cadaveric lumbar spines (L2-sacrum) were tested using a flexibility protocol consisting of three cycles to ±7.5 Nm in flexion-extension, lateral bending, and axial rotation. The conditions evaluated were intact spine; polyether-ether-ketone cage (zero integrated screws) at L4-L5; cage (zero screws)+bilateral pedicle screws (PS); cage (three screws); cage (four screws); cage (zero screws)+anterior plate; and cage (three screws)+spinous process plate. Motion at the index level was assessed using an optoelectronic system.
The cage without integrated screws reduced the motion in flexion-extension and lateral bending (p<.001) compared with that in the intact spine. In axial rotation, mean range of motion (ROM) was 8% greater than in intact spine (p>.962). The addition of three integrated screws reduced ROM significantly compared with the cage without screws in all motion planes (p<.001). A fourth screw had no statistically significant effect on the ROM, although there was a trend toward less motion with four screws compared with three. In flexion-extension, the cage with three integrated screws and the spinous process plate was the most rigid condition. There was no significant difference from the bilateral PS (p=.537); however, this was more rigid than all other conditions (p<.024). The most stable condition in lateral bending and axial rotation was the cage with bilateral PS. In lateral bending, the cage (three or four screws) was not significantly different from the cage with anterior plate or the cage (three screws) with spinous process plate fixation; however, only the latter condition was statistically comparable with bilateral PS. In axial rotation, there were no significant differences between the conditions that included integrated screws or supplemental fixation (p>.081).
Biomechanical testing revealed that the stand-alone cage with integrated screws provides more immediate stability than a cage alone and provides equivalent stability to ALIF constructs with supplemental fixation in lateral bending and axial rotation. Additional flexion-extension rigidity of the anterior cage maybe realized by the addition of a spinous process plate that was found to be as stable as supplemental bilateral PS.
带有一体式螺钉的独立椎间融合器为前路腰椎间融合术(ALIF)提供了一种生物力学稳定的解决方案,减轻了对额外固定的需求,从而降低了额外并发症和发病率的风险。
比较独立前路椎间融合系统与传统补充固定方法的稳定性,并评估独立笼中三枚和四枚固定螺钉之间的差异。
体外尸体生物力学研究。
使用包括三个周期的柔韧性方案对 8 个腰椎(L2-骶骨)进行测试,周期中脊柱在屈伸、侧屈和轴向旋转方向上施加±7.5 Nm 的力。评估的条件为完整脊柱;L4-L5 的聚醚醚酮笼(无一体式螺钉);笼(无螺钉)+双侧椎弓根螺钉(PS);笼(三枚螺钉);笼(四枚螺钉);笼(无螺钉)+前路板;笼(三枚螺钉)+棘突板。使用光电系统评估指数水平的运动。
无一体式螺钉的笼在屈伸和侧屈方向上减少了运动(p<.001),与完整脊柱相比。在轴向旋转中,平均活动范围(ROM)比完整脊柱大 8%(p>.962)。与无螺钉笼相比,三枚一体式螺钉的加入显著降低了所有运动平面的 ROM(p<.001)。第四枚螺钉对 ROM 没有统计学上的显著影响,但与三枚螺钉相比,四枚螺钉的运动趋势较小。在屈伸方向上,带有三枚一体式螺钉和棘突板的笼是最刚性的条件。与双侧 PS 无显著差异(p=.537);然而,它比所有其他条件都更刚性(p<.024)。在侧屈和轴向旋转中最稳定的条件是双侧 PS 的笼。在侧屈中,三枚或四枚螺钉的笼与前路板或三枚螺钉加棘突板固定的笼无显著差异;然而,只有后者与双侧 PS 在统计学上可比。在轴向旋转中,包含一体式螺钉或补充固定的条件之间没有显著差异(p>.081)。
生物力学测试显示,带有一体式螺钉的独立笼比单独使用笼提供了更即时的稳定性,并在侧向弯曲和轴向旋转中为补充固定的 ALIF 结构提供了等效的稳定性。通过添加棘突板可以实现前笼的额外屈伸刚性,发现其与补充双侧 PS 一样稳定。