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首页> 外文期刊>The Tohoku Journal of Experimental Medicine >The effect of spinal instrumentation on lumbar intradiscal pressure.
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The effect of spinal instrumentation on lumbar intradiscal pressure.

机译:脊柱器械对腰椎间盘内压的影响。

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The purpose of this study was to investigate the effect of spinal instrumentation on the intradiscal pressure (IDP) within the fixed motion segment. In vitro biomechanical testing was performed in six single functional spinal units of fresh calf lumbar spines using a pressure needle transducer. Various loads were applied by a materials testing system device. In addition to intact spine (control), anterior spinal instrumentation (ASI) and pedicle screw fixation (PS) constructs, as well as destabilized spine were tested. Relative to the control, the destabilized spine tended to have an increased IDP; by 15% in axial compression and by 9-36% in flexion-extension. Compared to the control, PS decreased the IDP by 23% in axial loading and 51% in extension loading and increased it by 60% in flexion for each loading. ASI decreased the IDP by 32% in flexion and 1% in extension. Lateral bending produced symmetrical changes of IDP in the control and destabilized spine, but no change in the PS construct. The IDP of the ASI construct was decreased by 77% in ipsilateral bending and increased by 22% in contralateral bending. These results demonstrated that eccentric loading from the spinal instruments increased IDP and significant disc pressure may still exist despite an increase in motion segment stiffness after lumbar stabilization.
机译:这项研究的目的是调查固定运动段内脊柱器械对椎间盘内压力(IDP)的影响。使用压力针换能器在新鲜小腿腰椎的六个单功能脊柱单位中进行体外生物力学测试。材料测试系统设备施加了各种负载。除了完整的脊柱(对照)之外,还测试了脊柱前路器械(ASI)和椎弓根螺钉固定(PS)构造以及不稳定的脊柱。相对于对照,不稳定的脊柱倾向于增加IDP;轴向压缩力提高15%,屈伸力提高9-36%。与对照组相比,PS的IDP在轴向载荷下分别降低了23%,在拉伸载荷下降低了51%,在每次载荷下的挠曲度均提高了60%。 ASI使IDP的弯曲度降低了32%,伸展度降低了1%。横向弯曲在对照和不稳定的脊柱中产生IDP的对称变化,但PS结构没有变化。 ASI结构的IDP在同侧弯曲中减少了77%,在对侧弯曲中增加了22%。这些结果表明,尽管腰椎稳定后运动节段刚度增加,脊柱器械的偏心载荷仍会增加IDP,并且仍然存在明显的椎间盘压力。

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