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Molecular MR imaging for the evaluation of the effect of dynamic stabilization on lumbar intervertebral discs

机译:分子核磁共振成像评估动态稳定度对腰椎间盘的影响

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摘要

The dynamic stabilization of lumbar spine is a non-fusion stabilization system that unloads the disc without the complete loss of motion at the treated motion segment. Clinical outcomes are promising but still not definitive, and the long-term effect on instrumented and adjacent levels is still a matter of discussion. Several experiments have been devised in order to gain a better understanding of the effect of the device on the intervertebral disc. One of the hypotheses was that while instrumented levels are partially relieved from loading, adjacent levels suffer from the increased stress. But this has not been proved yet. The aim of this study was to investigate the long-term effect of dynamic stabilization in vivo, through the quantification of glycosaminoglycans (GAG) concentration within instrumented and adjacent levels by means of the delayed Gadolinium-Enhanced Magnetic Resonance Imaging of Cartilage (dGEMRIC) protocol. Ten patients with low back pain, unresponsive to conservative treatment and scheduled for Dynesys implantation at one to three lumbar spine levels, underwent the dGEMRIC protocol to quantify GAG concentration before and 6 months after surgery. Each patient was also evaluated with visual analog scale (VAS), Oswestry, Prolo, Modic and Pfirrmann scales, both at pre-surgery and at follow-up. Six months after implantation, VAS, Prolo and Oswestry scales had improved in all patients. Pfirrmann scale could not detect any change, while dGEMRIC data already showed a general improvement in the instrumented levels: GAG was increased in 61% of the instrumented levels, while 68% of the non-instrumented levels showed a decrease in GAG, mainly in the posterior disc portion. In particular, seriously GAG-depleted discs seemed to have the greatest benefit from the Dynesys implantation, whereas less degenerated discs underwent a GAG depletion. dGEMRIC was able to visualize changes in both instrumented and non-instrumented levels. Our results suggest that the dynamic stabilization of lumbar spine is able to stop and partially reverse the disc degeneration, especially in seriously degenerated discs, while incrementing the stress on the adjacent levels, where it induces a matrix suffering and an early degeneration.
机译:腰椎的动态稳定是一种非融合稳定系统,可以使椎间盘卸载,而不会在治疗的运动部分完全丧失运动。临床结果是有希望的,但仍不是确定的,对仪器水平和邻近水平的长期影响仍在讨论中。为了更好地理解该装置对椎间盘的作用,已经设计了一些实验。假设之一是,虽然仪表水平仪部分减轻了负荷,但相邻水平仪承受的压力增加。但这还没有得到证明。这项研究的目的是通过延迟的d增强软骨磁共振成像(dGEMRIC)方案,通过量化仪器内和邻近水平内的糖胺聚糖(GAG)浓度,来研究体内动态稳定的长期影响。 。十名腰背痛患者,对保守治疗无反应,计划在1至3个腰椎水平进行Dynesys植入,在手术前后6个月接受dGEMRIC方案量化GAG浓度。在手术前和随访时,还用视觉模拟量表(VAS),Oswestry,Prolo,Modic和Pfirrmann量表对每个患者进行评估。植入六个月后,所有患者的VAS,Prolo和Oswestry量表均得到改善。 Pfirrmann量表无法检测到任何变化,而dGEMRIC数据已经显示了仪器化水平的总体改善:GAG升高了仪器化水平的61%,而68%的非仪器化水平显示了GAG的降低,主要是椎间盘后部。特别是,严重消耗GAG的椎间盘似乎从Dynesys植入中获得了最大的好处,而退化程度较小的椎间盘则经历了GAG消耗。 dGEMRIC能够可视化仪器和非仪器水平的变化。我们的研究结果表明,腰椎的动态稳定能够阻止并部分扭转椎间盘退变,特别是在严重退变的椎间盘中,同时增加邻近水平的应力,从而引起基质受累和早期退变。

著录项

  • 来源
    《European Spine Journal》 |2009年第s1期|40-48|共9页
  • 作者单位

    IRCCS Istituto Ortopedico Galeazzi via R. Galeazzi 4 20126 Milan Italy;

    IRCCS Istituto Ortopedico Galeazzi via R. Galeazzi 4 20126 Milan Italy;

    IRCCS Istituto Ortopedico Galeazzi via R. Galeazzi 4 20126 Milan Italy;

    IRCCS Istituto Ortopedico Galeazzi via R. Galeazzi 4 20126 Milan Italy;

    IRCCS Istituto Ortopedico Galeazzi via R. Galeazzi 4 20126 Milan Italy;

    IRCCS Istituto Ortopedico Galeazzi via R. Galeazzi 4 20126 Milan Italy;

    IRCCS Istituto Ortopedico Galeazzi via R. Galeazzi 4 20126 Milan Italy;

    IRCCS Istituto Ortopedico Galeazzi via R. Galeazzi 4 20126 Milan Italy;

    IRCCS Istituto Ortopedico Galeazzi via R. Galeazzi 4 20126 Milan Italy;

    IRCCS Istituto Ortopedico Galeazzi via R. Galeazzi 4 20126 Milan Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Dynamic stabilization; Lumbar spine; Molecular MRI; dGEMRIC;

    机译:动态稳定;腰椎;分子MRI;dGEMRIC;

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