经皮椎弓根螺钉皮质骨轨道技术在经椎间孔腰椎间融合术邻近节段退变中的生物力学评价-有限元分析。
Biomechanical evaluation of the hybrid pedicle screw-cortical bone trajectory technique in transforaminal lumbar interbody fusion to adjacent segment degeneration-finite element analysis.
机构信息
Second Clinical Medical College, Xinjiang Medical University, Urumqi, China.
Department of Spine Surgery, The First Affiliated Hospital of Xinjiang Medical University, 137 Liyushan South Road, Urumqi, China.
出版信息
BMC Musculoskelet Disord. 2023 May 23;24(1):409. doi: 10.1186/s12891-023-06411-z.
BACKGROUND
Transforaminal lumbar interbody fusion is an effective surgical treatment of intervertebral disk herniation. However, its clinical efficacy for adjacent segment disk degeneration (ASDD) after hybrid bilateral pedicle screw - bilateral cortical screw (pedicle screw at L4 and cortical bone trajectory screw at L5) and hybrid bilateral cortical screw - bilateral pedicle screw (bilateral cortical screw at L4 and bilateral pedicle screw at L5) remains undiscovered. Therefore, the aim of this study is to evaluate the effect of the hybrid bilateral pedicle screw - bilateral cortical screw and hybrid bilateral cortical screw - bilateral pedicle screw on the adjacent segment via a 3-dimensional (3D) finite element (FE) analysis.
METHODS
Four human cadaveric lumbar spine specimens were provided by the anatomy teaching and research department of Xinjiang Medical University. Four finite element models of L1-S1 lumbar spine segment were generated. For each of these, four lumbar transforaminal lumbar interbody fusion models at L4-L5 segment with the following instruments were created: hybrid bilateral pedicle screw - bilateral cortical screw, bilateral cortical screw - bilateral cortical screw (bilateral cortical screw at both L4 and L5 segments), bilateral pedicle screw - bilateral pedicle screw (bilateral pedicle screw at both L4 and L5 segments), and hybrid bilateral cortical screw - bilateral pedicle screw. A 400-N compressive load with 7.5 Nm moments was applied for the simulation of flexion, extension, lateral bending, and rotation. The range of motion of L3-L4 and L5-S1 segments and von Mises stress of the intervertebral disc at the adjacent segment were compared.
RESULTS
Hybrid bilateral pedicle screw - bilateral cortical screw has the lowest range of motion at L3-L4 segment in flexion, extension, and lateral bending, and the highest disc stress in all motions, while the range of motion at L5-S1 segment and disc stress was lower than bilateral pedicle screw - bilateral pedicle screw in flexion, extension, and lateral bending, and higher than bilateral cortical screw - bilateral cortical screw in all motions. The range of motion of hybrid bilateral cortical screw - bilateral pedicle screw at L3-L4 segment was lower than bilateral pedicle screw - bilateral pedicle screw and higher than bilateral cortical screw - bilateral cortical screw in flexion, extension, and lateral bending, and the range of motion at L5-S1 segment was higher than bilateral pedicle screw - bilateral pedicle screw in flexion, lateral bending, and axial rotation. The disc stress at L3-L4 segment was lowest and more dispersed in all motions, and the disc stress at L5-S1 segment was higher than bilateral pedicle screw - bilateral pedicle screw in lateral bending and axial rotation, but more dispersed.
CONCLUSION
Hybrid bilateral cortical screw - bilateral pedicle screw decreases the impact on adjacent segments after spinal fusion, reduces the iatrogenic injury to the paravertebral tissues, and provides throughout decompression of the lateral recess.
背景
经椎间孔腰椎体间融合术是治疗椎间盘突出症的有效手术方法。然而,其在杂交双侧椎弓根螺钉-双侧皮质骨螺钉(L4 椎弓根螺钉和 L5 皮质骨轨迹螺钉)和杂交双侧皮质骨螺钉-双侧椎弓根螺钉(L4 双侧皮质骨螺钉和 L5 双侧椎弓根螺钉)后对相邻节段椎间盘退行性变(ASDD)的临床疗效仍不清楚。因此,本研究旨在通过三维(3D)有限元(FE)分析评估杂交双侧椎弓根螺钉-双侧皮质骨螺钉和杂交双侧皮质骨螺钉-双侧椎弓根螺钉对相邻节段的影响。
方法
本研究共纳入 4 具新疆医科大学解剖教研室提供的人尸体腰椎标本。建立了 L1-S1 腰椎节段的 4 个有限元模型。对于每个模型,在 L4-L5 节段创建了以下 4 种腰椎经椎间孔腰椎体间融合模型:杂交双侧椎弓根螺钉-双侧皮质骨螺钉、双侧皮质骨螺钉-双侧皮质骨螺钉(双侧皮质骨螺钉在 L4 和 L5 节段)、双侧椎弓根螺钉-双侧椎弓根螺钉(双侧椎弓根螺钉在 L4 和 L5 节段)和杂交双侧皮质骨螺钉-双侧椎弓根螺钉。施加 400-N 压缩载荷和 7.5 Nm 力矩模拟屈伸、侧屈和旋转。比较了 L3-L4 和 L5-S1 节段的活动范围和相邻节段椎间盘的 von Mises 应力。
结果
在屈伸、侧屈和旋转运动中,杂交双侧椎弓根螺钉-双侧皮质骨螺钉在 L3-L4 节段的活动范围最小,椎间盘的应力最高,而在所有运动中,L5-S1 节段的活动范围和椎间盘的应力均低于双侧椎弓根螺钉-双侧椎弓根螺钉,高于双侧皮质骨螺钉-双侧皮质骨螺钉。在屈伸、侧屈和旋转运动中,杂交双侧皮质骨螺钉-双侧椎弓根螺钉在 L3-L4 节段的活动范围低于双侧椎弓根螺钉-双侧椎弓根螺钉,高于双侧皮质骨螺钉-双侧皮质骨螺钉,在 L5-S1 节段的活动范围高于双侧椎弓根螺钉-双侧椎弓根螺钉,在屈伸和旋转运动中,椎间盘的应力最低,分布更分散,在侧屈和旋转运动中,L5-S1 节段的椎间盘应力高于双侧椎弓根螺钉-双侧椎弓根螺钉,但分布更分散。
结论
杂交双侧皮质骨螺钉-双侧椎弓根螺钉可减少脊柱融合后对相邻节段的影响,减少对椎旁组织的医源性损伤,并提供外侧隐窝的全面减压。