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不同类型的后纵韧带骨化对脊髓动态生物力学响应的影响:有限元分析。

Effect of Different Types of Ossification of the Posterior Longitudinal Ligament on the Dynamic Biomechanical Response of the Spinal Cord: A Finite Element Analysis.

机构信息

Shanghai YangZhi Rehabilitation Hospital (Shanghai Sunshine Rehabilitation Center), School of Medicine, Tongji University, Shanghai 200092, China;Key Laboratory of Spine and Spinal Cord Injury Repair and Regeneration of the Ministry of Education, Tongji Hospital, School of Medicine, Tongji University, 389 Xincun Road, Shanghai 200065, China.

出版信息

J Biomech Eng. 2023 Dec 1;145(12). doi: 10.1115/1.4063194.

DOI:10.1115/1.4063194
PMID:37578172
Abstract

Ossification of the posterior longitudinal ligament (OPLL) has been identified as an important cause of cervical myelopathy. However, the biomechanical mechanism between the OPLL type and the clinical characteristics of myelopathy remains unclear. The aim of this study was to evaluate the effect of different types of OPLL on the dynamic biomechanical response of the spinal cord. A three-dimensional finite element model of the fluid-structure interaction of the cervical spine with spinal cord was established and validated. The spinal cord stress and strain, cervical range of motion (ROM) in different types of OPLL models were predicted during dynamic flexion and extension activity. Different types of OPLL models showed varying degrees of increase in stress and strain under the process of flexion and extension, and there was a surge toward the end of extension. Larger spinal cord stress was observed in segmental OPLL. For continuous and mixed types of OPLL, the adjacent segments of OPLL showed a dramatic increase in ROM, while the ROM of affected segments was limited. As a dynamic factor, flexion and extension of the cervical spine play an amplifying role in OPLL-related myelopathy, while appropriate spine motion is safe and permitted. Segmental OPLL patients are more concerned about the spinal cord injury induced by large stress, and patients with continuous OPLL should be noted to progressive injuries of adjacent level.

摘要

骨化的后纵韧带(OPLL)已被确定为颈椎病的重要原因。然而,OPLL 类型与脊髓病的临床特征之间的生物力学机制仍不清楚。本研究旨在评估不同类型的 OPLL 对脊髓动态生物力学反应的影响。建立并验证了具有脊髓的颈椎流固耦合的三维有限元模型。预测了在动态屈伸活动过程中不同类型的 OPLL 模型中脊髓的应力和应变以及颈椎活动范围(ROM)。不同类型的 OPLL 模型在屈伸过程中表现出不同程度的应力和应变增加,并且在伸展结束时会出现激增。节段性 OPLL 中观察到更大的脊髓应力。对于连续和混合类型的 OPLL,OPLL 的相邻节段显示出 ROM 的急剧增加,而受影响节段的 ROM 受到限制。作为一个动态因素,颈椎的屈伸在与 OPLL 相关的脊髓病中起着放大作用,而适当的脊柱运动是安全和允许的。节段性 OPLL 患者更关心大应力引起的脊髓损伤,应注意连续 OPLL 患者相邻水平的渐进性损伤。

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Effect of Different Types of Ossification of the Posterior Longitudinal Ligament on the Dynamic Biomechanical Response of the Spinal Cord: A Finite Element Analysis.不同类型的后纵韧带骨化对脊髓动态生物力学响应的影响:有限元分析。
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