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用于颈椎前路椎间盘切除融合术的新型双节段笼式植入物的生物力学分析:有限元分析

Biomechanical Analysis of Two-Level Novel Cage-Type Implant for Anterior Cervical Discectomy and Fusion: A Finite Element Analysis.

作者信息

Kumar Ram, Kumar Amit

机构信息

Department of Mechanical Engineering, National Institute of Technology, Patna, Bihar, India.

出版信息

J Long Term Eff Med Implants. 2023;33(4):43-52. doi: 10.1615/JLongTermEffMedImplants.2022044668.

Abstract

One of the standard treatments for spinal diseases is anterior cervical discectomy and fusion (ACDF). ACDF is a secure and successful operation that prevents patients to improve their pain and function. The mechanical goal of the ACDF is to prevent motion between adjoining vertebrae by a novel cage-screw implant. The objective of this study is to analyze the biomechanical flexibility in terms of the range of motion (ROM) of two-level ACDF fixation using the finite element method (FEM). A CT scan-based FEM model of the cervical spine (C2-C7) is used and two-level cage is implanted at C4-C6 segments. A 50-N compressive force and 1-Nm moment are applied on C2 vertebrae and C7 is fixed in all directions. The ROM at two-level fixation (C4-C5-C6) is reduced by 55 to 88% compared with intact spine during all physiological movement. The ROM slightly increase (3-9%) at the adjacent segment. The maximum von Mises stress variations are 25-65 MPa during flexion-extension, lateral bending, and axial rotations under given loading. The maximum von Mises stress found in cage and screw is below the yield stress during all physiological movement.

摘要

脊柱疾病的标准治疗方法之一是颈椎前路椎间盘切除融合术(ACDF)。ACDF是一种安全且成功的手术,可使患者的疼痛和功能得到改善。ACDF的力学目标是通过一种新型的椎间融合器-螺钉植入物来防止相邻椎体之间的活动。本研究的目的是使用有限元方法(FEM)分析两级ACDF固定在活动范围(ROM)方面的生物力学灵活性。使用基于CT扫描的颈椎(C2-C7)有限元模型,并在C4-C6节段植入两级椎间融合器。在C2椎体上施加50 N的压缩力和1 N·m的力矩,并将C7在所有方向上固定。在所有生理运动过程中,两级固定(C4-C5-C6)处的ROM与完整脊柱相比降低了55%至88%。相邻节段的ROM略有增加(3%至9%)。在给定载荷下的屈伸、侧弯和轴向旋转过程中,最大von Mises应力变化为25-65 MPa。在所有生理运动过程中,椎间融合器和螺钉中发现的最大von Mises应力低于屈服应力。

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