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首页> 外文期刊>Medical engineering & physics. >In vitro flexibility of an experimental pedicle screw and plate instrumentation system on the porcine lumbar spine.
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In vitro flexibility of an experimental pedicle screw and plate instrumentation system on the porcine lumbar spine.

机译:猪腰椎上的实验性椎弓根螺钉和钢板器械系统的体外灵活性。

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摘要

The positive correlation between spinal construct stiffness and fusion rate has led to the use of increasingly rigid surgical spinal instrumentation systems. Unfortunately, however, these rigid systems have also been correlated with sub-optimal fusion quality measures. To date, in vivo studies to explore these relationships have involved the use of different implants and surgical procedures to influence the biomechanical environment at the fusion site. In order to avoid these confounding variables, a novel experimental instrumentation system has been developed which is capable of independently controlling spinal construct flexibility (inverse of stiffness). In the present study, this experimental pedicle screw and plate system was subjected to rigorous pure moment flexibility testing in flexion-extension and lateral bending using an in vitro porcine lumbar spine model. Analysis of the data showed that the system provided a reproducible, stepwise-modulated spinal construct flexibility as measured by neutral zone flexibility, laxity angle and range of motion parameters. Differences in flexibility were most evident using the neutral zone parameters (neutral zone flexibility and laxity angle). This is of particular interest given that the clinical instability of a spinal segment may be related to its behaviour within the neutral zone. This information will ultimately guide the design of improved human spinal instrumentation systems.
机译:脊柱构造刚度和融合率之间的正相关关系导致使用越来越刚性的外科脊柱器械系统。但是,不幸的是,这些刚性系统还与次优的融合质量度量相关联。迄今为止,探索这些关系的体内研究涉及使用不同的植入物和手术程序来影响融合部位的生物力学环境。为了避免这些混淆的变量,已经开发了一种新颖的实验仪器系统,其能够独立地控制脊柱构造的柔性(刚度的倒数)。在本研究中,使用体外猪腰椎模型对这个实验性椎弓根螺钉和钢板系统进行了严格的弯矩-伸展和横向弯曲的纯弯矩柔性测试。数据分析表明,该系统提供了可重现的,逐步调节的脊柱构造柔韧性,通过中性区柔韧性,松弛角度和运动参数范围进行测量。使用中性区参数(中性区柔韧性和松弛角度)最明显地体现出柔韧性差异。鉴于脊柱节段的临床不稳定性可能与其在中性区内的行为有关,因此,这尤其令人感兴趣。这些信息最终将指导改进的人体脊柱器械系统的设计。

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