Graduate School, Tianjin Medical University, Tianjin, China.
The First Affiliated Hospital of Hainan Medical University, Haikou, Hainan, China.
BMC Musculoskelet Disord. 2022 Sep 8;23(1):851. doi: 10.1186/s12891-022-05804-w.
To investigate and evaluate the biomechanical behaviour of tension-band-reconstruction (TBR) and ordinary titanium plates in open-door laminoplasty by finite element (FE) analysis.
TBR titanium plate and ordinary titanium plate were implanted into a validated finite element model of healthy adult cervical vertebrae. Among them, 5 ordinary titanium plate were used in model A, 2 TBR titanium plates and 3 ordinary titanium plates were used in model B, and 5 TBR titanium plates were used in model C. The same loading conditions was applied identically to all models. Range of motion (ROM) of the vertebral body, stress distribution of the titanium plate and intradiscal pressure (IDP) were compared in flexion, extension, lateral bending and rotation.
The ROM of model B and C was similar in flexion and extension, and both were smaller than that of model A. The highest von Mises stress in the titanium plate appears is in model C. The IDP in C2/3 was significantly higher than that in other segments in flexion. There was no significant difference in IDP among three models in left lateral bending and left axial rotation.
Application of TBR titanium plate in open-door laminoplasty can reduced ROM in flexion, extension and axial rotation of the cervical vertebrae. But the increase of stress in TBR titanium plate could lead to higher risk of adverse events such as titanium plate deformation. Moreover, compared with complete TBR titanium plate, the combination of TBR titanium plate for C3 and C7 with ordinary titanium plate for the other vertebrae largely reduce the stress of the titanium plates by ensuring stability. The proposed FE model (C2-T1) exhibits a great potential in evaluating biomechanical behaviour of TBR titanium plate for open-door laminoplasty.
通过有限元(FE)分析研究和评估张力带重建(TBR)和普通钛板在开门式椎板成形术中的生物力学行为。
将 TBR 钛板和普通钛板植入经过验证的健康成人颈椎有限元模型中。其中,模型 A 中使用 5 块普通钛板,模型 B 中使用 2 块 TBR 钛板和 3 块普通钛板,模型 C 中使用 5 块 TBR 钛板。所有模型均施加相同的加载条件。比较了颈椎屈伸、侧屈和旋转时椎体活动度(ROM)、钛板应力分布和椎间盘内压(IDP)。
模型 B 和 C 的屈伸 ROM 相似,均小于模型 A。钛板中的 von Mises 应力最大值出现在模型 C 中。在屈曲时,C2/3 节段的 IDP 明显高于其他节段。在左侧屈和左轴向旋转时,三个模型之间的 IDP 没有显著差异。
在开门式椎板成形术中应用 TBR 钛板可降低颈椎屈伸和轴向旋转的 ROM。但 TBR 钛板的应力增加可能导致钛板变形等不良事件的风险增加。此外,与完全使用 TBR 钛板相比,TBR 钛板用于 C3 和 C7 结合普通钛板用于其他椎体的组合通过确保稳定性,大大降低了钛板的应力。所提出的 FE 模型(C2-T1)在评估开门式椎板成形术中 TBR 钛板的生物力学行为方面具有很大的潜力。