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动态固定器的生物力学比较与杆-杆和螺钉-间隔物关节在腰椎混合固定上的比较。

Biomechanical comparisons of dynamic fixators with rod-rod and screw-spacer joints on lumbar hybrid fixation.

机构信息

Graduate Institute of Applied Science and Technology, National Taiwan University of Science and Technology, Taipei, Taiwan; Graduate Institute of Biomedical Engineering, National Taiwan University of Science and Technology, Taipei, Taiwan.

Department of Orthopedics, Shuang Ho Hospital, Taipei Medical University, Taipei, Taiwan; International Ph.D. Program in Biomedical Engineering, College of Biomedical Engineering, Taipei Medical University, Taipei, Taiwan; Department of Orthopaedics, School of Medicine, College of Medicine, Taipei Medical University, Taipei, Taiwan; Research Center of Biomedical Device, Taipei Medical University, Taipei, Taiwan.

出版信息

Clin Biomech (Bristol). 2023 Apr;104:105943. doi: 10.1016/j.clinbiomech.2023.105943. Epub 2023 Mar 11.

Abstract

BACKGROUND

Hybrid fixators with quite different joint design concepts have been widely to suppress adjacent segment degeneration problems. The kinematic and kinetic responses of the adjacent and transition segments and contact behaviors at the bone-screw interfaces served as the objective of this study.

METHODS

The moderately degenerated L4/L5 and mildly degenerative L3/L4 segments were respectively immobilized by a static fixator and further bridged by the rod-rod (Isobar) and screw-spacer (Dynesys) fixator. The joint stiffness and mobility of the rod-rod system and the cable pretension of the screw-spacer system were systematically varied.

FINDINGS

The flexion of the screw-spacer system provided higher mobility to the transition segment, reducing adjacent-segment problems. The cable pretension had a minor effect on the construct behavior. However, due to limited joint mobility, the rod-rod system showed higher constraints to the transition segment and induced more adjacent-segment compensations. The increased mobility of the rod-rod joint caused it to behave as a more dynamic fixator that increased adjacent-segment compensations at the transition segment. Comparatively, increasing the joint mobility showed more significant effects on the construct behaviors than decreasing the joint stiffness. Furthermore, increased constraint by the rod-rod joint induced higher stress and risk of loosening at the bone-screw interfaces INTERPRETATION: If the protection of the transition segment is the major concern, the rod-rod system can be used to constrain the intervertebral motion and share the higher loads through the fixator. Otherwise, the screw-spacer system is recommended in situations where higher loads onto the transition disc are allowable.

摘要

背景

具有不同关节设计理念的混合固定器已被广泛应用于抑制相邻节段的退化问题。本研究的目的是研究相邻节段和过渡节段的运动学和动力学响应以及骨-螺钉界面的接触行为。

方法

将中度退变的 L4/L5 节段和轻度退变的 L3/L4 节段分别用静态固定器固定,并进一步用棒-棒(Isobar)和螺钉-间隔器(Dynesys)固定器连接。系统地改变棒-棒系统的关节刚度和活动性以及螺钉-间隔器系统的电缆预张力。

结果

螺钉-间隔器系统的弯曲为过渡节段提供了更高的活动性,减少了相邻节段的问题。电缆预张力对结构行为的影响较小。然而,由于关节活动度有限,棒-棒系统对过渡节段的约束作用更大,导致更多的相邻节段代偿。棒-棒关节的活动度增加使其表现为更具动力性的固定器,增加了过渡节段相邻节段的代偿。相比之下,增加关节活动度比减小关节刚度对结构行为的影响更为显著。此外,棒-棒关节的约束作用增加会导致骨-螺钉界面的更高的应力和松动风险。

解释

如果保护过渡节段是主要关注点,可以使用棒-棒系统来限制椎间运动并通过固定器分担更高的负荷。否则,在允许更高的过渡盘负荷的情况下,建议使用螺钉-间隔器系统。

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