Han Zhenchuan, Ma Chao, Li Bo, Ren Bowen, Liu Jianheng, Huang Yifei, Qiao Lin, Mao Keya
Department of Orthopedics, Chinese PLA General Hospital, Beijing, China.
Department of Orthopedics, PLA Rocket Force Characteristic Medical Center, Beijing, China.
Front Surg. 2022 Nov 7;9:1011808. doi: 10.3389/fsurg.2022.1011808. eCollection 2022.
The position and number of cages in minimally invasive transforaminal interbody fusion (MIS-TLIF) are mainly determined by surgeons based on their individual experience. Therefore, it is important to investigate the optimal number and position of cages in MIS-TLIF.
The lumbar model was created based on a 24-year-old volunteer's computed tomography data and then tested using three different cage implantation methods: single transverse cage implantation (model A), single oblique 45° cage implantation (model B), and double vertical cage implantation (model C). A preload of 500 N and a moment of 10 Nm were applied to the models to simulate lumbar motion, and the models' range of motion (ROM), ROM ratio, peak stress of the internal fixation system, and cage were assessed.
The ROM ratios of models A, B, and C were significantly reduced by >71% compared with the intact model under all motions. Although there were subtle differences in the ROM ratio for models A, B, and C, the trends were similar. The peak stress of the internal fixation system appeared in model B of 136.05 MPa (right lateral bending), which was 2.07 times that of model A and 1.62 times that of model C under the same condition. Model C had the lowest cage stress, which was superior to that of the single-cage model.
In MIS-TLIF, single long-cage transversal implantation is a promising standard implantation method, and double short-cage implantation is recommended for patients with severe osteoporosis.
微创经椎间孔腰椎椎间融合术(MIS-TLIF)中椎间融合器的位置和数量主要由外科医生根据个人经验决定。因此,研究MIS-TLIF中椎间融合器的最佳数量和位置很重要。
基于一名24岁志愿者的计算机断层扫描数据创建腰椎模型,然后使用三种不同的椎间融合器植入方法进行测试:单横向椎间融合器植入(模型A)、单斜45°椎间融合器植入(模型B)和双垂直椎间融合器植入(模型C)。对模型施加500 N的预载荷和10 Nm的力矩以模拟腰椎运动,并评估模型的运动范围(ROM)、ROM比率、内固定系统和椎间融合器的峰值应力。
与完整模型相比,模型A、B和C在所有运动下的ROM比率均显著降低>71%。虽然模型A、B和C的ROM比率存在细微差异,但趋势相似。内固定系统的峰值应力出现在模型B中,为136.05 MPa(右侧侧弯),在相同条件下是模型A的2.07倍,是模型C的1.62倍。模型C的椎间融合器应力最低,优于单椎间融合器模型。
在MIS-TLIF中,单长椎间融合器横向植入是一种有前景的标准植入方法,对于严重骨质疏松患者推荐双短椎间融合器植入。