Key Laboratory for Biomechanics and Mechanobiology of Ministry of Education, Beijing Advanced Innovation Center for Biomedical Engineering, School of Biological Science and Medical Engineering, Beihang University, Beijing, China.
School of Mechanical Engineering, Hebei University of Technology, Tianjin, China.
Sci Rep. 2020 Oct 9;10(1):16916. doi: 10.1038/s41598-020-73881-9.
The thoracic cage plays an important role in maintaining the stability of the thoracolumbar spine. In this study, the influence of a rib cage on static and dynamic responses in normal and scoliotic spines was investigated. Four spinal finite element (FE) models (T1-S), representing a normal spine with rib cage (N1), normal spine without rib cage (N2), a scoliotic spine with rib cage (S1) and a scoliotic spine without rib cage (S2), were established based on computed tomography (CT) images, and static, modal, and steady-state analyses were conducted. In S2, the Von Mises stress (VMS) was clearly decreased compared to S1 for four bending loadings. N2 and N1 showed a similar VMS to each other, and there was a significant increase in axial compression in N2 and S2 compared to N1 and S1, respectively. The U magnitude values of N2 and S2 were higher than in N1 and S1 for five loadings, respectively. The resonant frequencies of N2 and S2 were lower than those in N1 and S1, respectively. In steady-state analysis, maximum amplitudes of vibration for N2 and S2 were significantly larger than N1 and S1, respectively. This study has revealed that the rib cage improves spinal stability in vibrating environments and contributes to stability in scoliotic spines under static and dynamic loadings.
胸廓在维持胸腰椎稳定性方面起着重要作用。本研究旨在探讨胸廓对正常和脊柱侧凸脊柱静态和动态响应的影响。基于 CT 图像,建立了四个脊柱有限元(FE)模型(T1-S),代表带胸廓的正常脊柱(N1)、不带胸廓的正常脊柱(N2)、带胸廓的脊柱侧凸脊柱(S1)和不带胸廓的脊柱侧凸脊柱(S2),并进行了静态、模态和稳态分析。在 S2 中,与 S1 相比,四种弯曲载荷下的 Von Mises 应力(VMS)明显降低。N2 和 N1 彼此之间的 VMS 相似,与 N1 和 S1 相比,N2 和 S2 的轴向压缩分别显著增加。对于五种载荷,N2 和 S2 的 U 幅度值均高于 N1 和 S1。N2 和 S2 的共振频率均低于 N1 和 S1。在稳态分析中,N2 和 S2 的振动最大振幅均显著大于 N1 和 S1。本研究表明,胸廓在振动环境中提高了脊柱的稳定性,并有助于在静态和动态载荷下维持脊柱侧凸的稳定性。