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首页> 外文期刊>Archives of orthopaedic and trauma surgery. >Biomechanical effect of different interspinous devices on lumbar spinal range of motion under preload conditions.
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Biomechanical effect of different interspinous devices on lumbar spinal range of motion under preload conditions.

机译:不同梭菌装置对预载条件下不同梭菌装置对腰椎运动的生物力学作用。

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摘要

INTRODUCTION: Interspinous devices are used as an alternative to the current gold standard treatment, decompressive surgery with or without fusion, for lumbar spinal stenosis. They are supposed to limit extension and expand the spinal canal and foramen at the symptomatic level, but still allow lateral bending and axial rotation in the motion segment. The aim of the present study is the biomechanical evaluation of the change in the range of motion of the affected and adjacent segments following implantation of different interspinous devices under load in all directions of motion. METHOD: Eight fresh frozen human cadaver lumbar spines (L2-L5) were tested in a spinal testing device with a moment of 7.5 nm in flexion/extension, lateral bending and rotation with and without a preload (follower load of 400 N). The ROM was measured after implantation of Aperius (Kyphon, Mannheim), In-Space (Synthes, Umkirch), X-Stop (Tikom, Furth) and Coflex (Paradigm Spine, Wurmlingen) into the segment L3/L4. RESULTS: All interspinous devices caused a significant reduction in extension of the instrumented segment without significantly affecting the other directions of motion. The flexion was reduced by all implants only when the follower load was applied. All devices caused a higher ROM of the whole spine during lateral bending and rotation. CONCLUSION: The actual evaluated interspinous devices led to a significant reduction in ROM during flexion-extension, but to a significant increase in ROM for the whole specimen (L2-L5) during lateral bending and rotation, which could increase the risk of adjacent segment degeneration.
机译:介绍:障碍物用作当前黄金标准治疗,具有或不含融合的替代品的替代方案,适用于腰椎脊柱狭窄。它们应该在症状水平下限制延伸并扩大脊柱管和孔,但仍然允许在运动段中横向弯曲和轴向旋转。本研究的目的是对受影响和相邻段的运动范围变化的生物力学评估,在所有运动方向上的负载下植入载荷之后。方法:在脊柱检测装置中测试八个新鲜的冷冻人体尸体腰椎(L2-L5),弯曲/延伸,横向弯曲和旋转,横向弯曲和旋转,无需预载(400 n的从动载荷载荷为400n)。在植入aperius(kyphon,mannheim),空间(合成,umkirch),X-stop(Tikom,Furth)和Coflex(Paradigm脊柱,Wurmlingen)进入段L3 / L4后测量ROM。结果:所有灰度装置导致仪表段的延伸显着减少,而不会显着影响其他运动方向。只有在施加从属载荷载荷时,所有植入物都才会减少屈曲。所有器件在横向弯曲和旋转期间导致整个脊柱的更高rom。结论:实际评估的偶像装置在屈曲 - 延伸期间导致ROM的显着减少,但在横向弯曲和旋转期间整个样本(L2-L5)的ROM显着增加,这可能会增加相邻段变性的风险。

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