首页> 外文期刊>Journal of biomechanical engineering. >Biomechanical Effects on Cervical Spinal Cord and Nerve Root Following Laminoplasty for Ossification of the Posterior Longitudinal Ligament in the Cervical Spine: A Comparison Between Open-Door and Double-Door Laminoplasty Using Finite Element Analysis
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Biomechanical Effects on Cervical Spinal Cord and Nerve Root Following Laminoplasty for Ossification of the Posterior Longitudinal Ligament in the Cervical Spine: A Comparison Between Open-Door and Double-Door Laminoplasty Using Finite Element Analysis

机译:宫颈脊柱后纵向韧带骨质成形术后颈髓脊髓和神经根系的生物力学作用:使用有限元分析的门门和双门叠片成形术的比较

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Many clinical case series have reported the predisposing factors for C5 palsy and have presented comparisons of the two types of laminoplasty. However, there have been no biomechanical studies focusing on cervical spinal cord and nerve root following laminoplasty. The purpose of this study is to investigate biomechanical changes in the spinal cord and nerve roots following the two most common types of laminoplasty, open-door and double-door laminoplasty, for cervical ossification of the posterior longitudinal ligament (OPLL). A finite element (FE) model of the cervical spine and spinal cord with nerve root complex structures was developed. Stress changes in the spinal cord and nerve roots, posterior shift of the spinal cord, and displacement of the cervical nerve roots were analyzed with two types of cervical laminoplasty models for variations in the degree of canal occupying ratio and shape of the OPLL. The shape and degree of spinal cord compression caused by the OPLL had more influence on the changes in stress, posterior shift of the spinal cord, and displacement of the nerve root than the type of laminoplasty. The lateral-type OPLL resulted in imbalanced stress on the nerve roots and the highest nerve root displacement. Type of laminoplasty and shape and degree of spinal cord compression caused by OPLL were found to influence the changes in stress and posterior displacement of the cervical spinal cord and nerve roots. Lateral-type OPLL might contribute to the development of C5 palsy due to the imbalanced stress and tension on the nerve roots after laminoplasty.
机译:许多临床案例系列报道了C5麻痹的易感因素,并呈现了两种类型的层压术比较。然而,没有生物力学研究,重点是颈髓脊髓和椎体术后的神经根。本研究的目的是探讨脊髓和神经根部后两种最常见类型的层压术,门门和双门叠层术后的生物力学变化,用于后纵韧带(OPLL)的颈椎骨化。开发了宫颈脊柱和神经根复合结构脊髓的有限元素(Fe)模型。脊髓和神经根部的应力变化,用两种类型的宫颈层压术模型分析​​了脊髓的后偏移和宫颈神经根的位移,用于占据占用比例的管道占据率和形状的变化。由OP11引起的脊髓压缩的形状和程度对脊髓脊髓的应力,后偏移和神经根部的偏移的变化产生更多影响,而不是椎体根术的类型。横向型OP11导致神经根部的压力不平衡和最高神经根位移。发现孔板术的型号和椎间帘线压缩的形状和脊髓压缩程度,以影响颈脊髓和神经根的应力和后部位移的变化。由于椎板成形术后神经根的压力和张力,横向型OPLL可能有助于C5麻痹的发展。

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