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首页> 外文期刊>Global spine journal. >A Novel Spinal Implant for Fusionless Scoliosis Correction: A Biomechanical Analysis of the Motion Preserving Properties of a Posterior Periapical Concave Distraction Device
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A Novel Spinal Implant for Fusionless Scoliosis Correction: A Biomechanical Analysis of the Motion Preserving Properties of a Posterior Periapical Concave Distraction Device

机译:一种新型的无融合的脊柱侧弯矫正脊柱植入物:后根尖凹凹牵引装置的运动保存特性的生物力学分析。

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Study Design: Biomechanical study. Objective: Recently, a posterior concave periapical distraction device for fusionless scoliosis correction was introduced. The goal of this study was to quantify the effect of the periapical distraction device on spinal range of motion (ROM) in comparison with traditional rigid pedicle screw-rod instrumentation. Methods: Using a spinal motion simulator, 6 human spines were loaded with 4 N?m and 6 porcine spines with 2 N?m to induce flexion-extension (FE), lateral bending (LB), and axial rotation (AR). ROM was measured in 3 conditions: untreated, periapical distraction device, and rigid pedicle screw-rod instrumentation. Results: The periapical distraction device caused a significant ( P P Conclusions: Although no destructive forces were applied, no device failures were observed. Spinal ROM was significantly less constrained by the periapical distraction device compared to rigid pedicle screw-rod instrumentation. Therefore, provided that scoliosis correction is achieved, a more physiological spinal motion is expected after scoliosis correction with the posterior concave periapical distraction device.
机译:研究设计:生物力学研究。目的:最近,提出了一种用于无融合性脊柱侧凸矫正的后凹型根尖周骨牵引装置。这项研究的目的是量化与传统的刚性椎弓根螺钉器械相比,根尖周端牵引装置对脊柱运动范围(ROM)的影响。方法:使用脊柱运动模拟器,将6个人类脊柱加载4 N?m,将6个猪脊柱加载2 N?m,以引起屈伸(FE),横向弯曲(LB)和轴向旋转(AR)。在3种情况下测量ROM:未经治疗的根尖撑开装置和刚性椎弓根螺钉器械。结果:根尖周端牵引装置引起显着性(PP结论:尽管未施加破坏力,但未观察到装置故障。与刚性椎弓根螺钉器械相比,根尖周端牵引装置对脊柱ROM的约束明显更少。可以实现脊柱侧弯矫正,使用后侧凹根尖周骨牵引装置进行脊柱侧弯矫正后,可以期待更多的生理脊柱运动。

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