Department of Neurosurgery, Jiangmen Central Hospital, Jiangmen City, PR China.
Network Information Management Center, Jiangmen Central Hospital, Jiangmen City, PR China.
Br J Neurosurg. 2024 Feb;38(1):104-110. doi: 10.1080/02688697.2021.1988056. Epub 2021 Oct 6.
The occiput-axis crossing translaminar screw (C2LAM) fixation technique can help avoid vertebral injury, while the inclusion of offset connectors can facilitate implantation. This three-dimensional finite element (FE) study compared the stability of C2LAM using offset connectors (C2LAM + OF) with other methods.
Occipital and cervical spine computed tomography images of a healthy 30-year-old man were selected to build the FE model. Four internal fixation instruments including occiput plate-C2 pedicle (C2P) and pars (C2Pars) screws, as well as C2LAM and C2LAM + OF were applied consecutively to the model respectively to establish four new models, which were subjected to all states of motion and physiological loads to simulate normal movement, including the four kinds of basic activities of human such as flexion, extension, lateral bending, and axial rotation. Physiological measures and comparison included the range of motion (ROM) and stress distribution in the model.
ROM between the fixation techniques was comparable, and the stability of the C2LAM + OF fixation technique was similar to that of C2P. Screw entry points, offset connectors and rods were the main stress distribution regions in the C2LAM + OF system. The mean von Mises stress of the inner wall was significantly smaller than that of the outer wall in flexion, extension, and rotation ( < 0.05); however, lateral bending was comparable, indicating a relatively small risk of damage to the inner wall.
The results of this study indicate that the C2LAM + OF fusion technique can provide sufficient stability and can be used as an alternative to C2P under special circumstances.
枕骨-枢椎经关节突螺钉(C2LAM)固定技术可以避免颈椎损伤,而使用偏心连接器可以便于植入。本三维有限元(FE)研究比较了使用偏心连接器的 C2LAM(C2LAM+OF)与其他方法的稳定性。
选择一位健康 30 岁男性的枕骨和颈椎 CT 图像来建立 FE 模型。连续应用四种内固定器械,包括枕骨板-C2 椎弓根(C2P)和椎板(C2Pars)螺钉,以及 C2LAM 和 C2LAM+OF,分别应用于模型,建立四个新模型,用于模拟正常运动的所有运动状态和生理负荷,包括人类的四种基本活动,如屈伸、侧屈和旋转。生理测量和比较包括模型的运动范围(ROM)和应力分布。
固定技术之间的 ROM 相似,C2LAM+OF 固定技术的稳定性与 C2P 相似。螺钉进钉点、偏心连接器和杆是 C2LAM+OF 系统中的主要应力分布区域。在屈伸和旋转时(<0.05),内板的平均 von Mises 应力明显小于外板;然而,在侧屈时,两者相当,表明内板损伤的风险相对较小。
本研究结果表明,C2LAM+OF 融合技术可以提供足够的稳定性,在特殊情况下可以替代 C2P。