后纵韧带矢状位和轴位骨化类型对颈髓机械应力的影响:有限元分析
Influence of sagittal and axial types of ossification of posterior longitudinal ligament on mechanical stress in cervical spinal cord: A finite element analysis.
作者信息
Khuyagbaatar Batbayar, Kim Kyungsoo, Park Won Man, Kim Yoon Hyuk
机构信息
Department of Mechanical Engineering, Kyung Hee University, Yongin, Korea.
Department of Applied Mathematics, Kyung Hee University, Yongin, Korea.
出版信息
Clin Biomech (Bristol). 2015 Dec;30(10):1133-9. doi: 10.1016/j.clinbiomech.2015.08.013. Epub 2015 Aug 29.
BACKGROUND
There are few studies focusing on the prediction of stress distribution according to the types of ossification of the posterior longitudinal ligament, which can be fundamental information associated with clinical aspects such as the relationship between stress level and neurological symptom severity. In this study, the influence of sagittal and axial types of ossification of the posterior longitudinal ligament on mechanical stress in the cervical spinal cord was investigated.
METHODS
A three-dimensional finite element model of the cervical spine with spinal cord was developed and validated. The von Mises stresses in the cord and the reduction in cross-sectional areas and volume of the cord were investigated for various axial and sagittal types according to the occupying ratio of ossification of the posterior longitudinal ligament in the spinal canal.
FINDINGS
The influence of axial type was less than that of the sagittal type, even though the central type showed higher maximum stresses in the cord, especially for the continuous type. With a 60% occupying ratio of ossification of the posterior longitudinal ligament, the maximum stress was significantly high and the cross-sectional area of the spinal cord was reduced by more than 30% of the intact area regardless of sagittal or axial types. Finally, a higher level of sagittal extension would increase the peak cord tissue stress, which would be related to the neurological dysfunction and tissue damage.
INTERPRETATION
Quantitative investigation of biomechanical characteristics such as mechanical stress may provide fundamental information for pre-operative planning of treatment for ossification of the posterior longitudinal ligament.
背景
很少有研究关注根据后纵韧带骨化类型预测应力分布,而这可能是与应力水平和神经症状严重程度之间关系等临床方面相关的基础信息。在本研究中,调查了后纵韧带矢状位和轴位骨化类型对颈脊髓机械应力的影响。
方法
建立并验证了包含脊髓的颈椎三维有限元模型。根据后纵韧带骨化在椎管内的占位比例,研究了不同轴位和矢状位类型下脊髓内的von Mises应力以及脊髓横截面积和体积的减小情况。
结果
尽管中央型在脊髓内显示出较高的最大应力,尤其是连续型,但轴位类型的影响小于矢状位类型。当后纵韧带骨化占位比例为60%时,无论矢状位或轴位类型,最大应力均显著升高,且脊髓横截面积减少超过完整面积的30%。最后,矢状位伸展程度越高,脊髓组织应力峰值越高,这可能与神经功能障碍和组织损伤有关。
解读
对应力等生物力学特性进行定量研究可为后纵韧带骨化的术前治疗规划提供基础信息。