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首页> 外文期刊>Journal of Korean Neurosurgical Society >Biomechanical Comparison of Spinal Fusion Methods Using Interspinous Process Compressor and Pedicle Screw Fixation System Based on Finite Element Method
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Biomechanical Comparison of Spinal Fusion Methods Using Interspinous Process Compressor and Pedicle Screw Fixation System Based on Finite Element Method

机译:基于有限元法的棘突间加压器和椎弓根螺钉固定系统脊柱融合方法的生物力学比较

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Objective To investigate the biomechanical effects of a newly proposed Interspinous Process Compressor (IPC) and compare with pedicle screw fixation at surgical and adjacent levels of lumbar spine. Methods A three dimensional finite element model of intact lumbar spine was constructed and two spinal fusion models using pedicle screw fixation system and a new type of interspinous devices, IPC, were developed. The biomechanical effects such as range of motion (ROM) and facet contact force were analyzed at surgical level (L3/4) and adjacent levels (L2/3, L4/5). In addition, the stress in adjacent intervertebral discs (D2, D4) was investigated. Results The entire results show biomechanical parameters such as ROM, facet contact force, and stress in adjacent intervertebral discs were similar between PLIF and IPC models in all motions based on the assumption that the implants were perfectly fused with the spine. Conclusion The newly proposed fusion device, IPC, had similar fusion effect at surgical level, and biomechanical effects at adjacent levels were also similar with those of pedicle screw fixation system. However, for clinical applications, real fusion effect between spinous process and hooks, duration of fusion, and influence on spinous process need to be investigated through clinical study.
机译:目的研究新提出的棘突间压迫器(IPC)的生物力学效果,并与椎弓根螺钉固定在手术和邻近腰椎水平进行比较。方法建立完整的腰椎三维三维有限元模型,并利用椎弓根螺钉固定系统和新型的棘突间融合器IPC开发两个脊柱融合模型。在手术水平(L3 / 4)和邻近水平(L2 / 3,L4 / 5)上分析了生物力学效应,例如运动范围(ROM)和小平面接触力。此外,还研究了相邻椎间盘(D2,D4)中的应力。结果整个结果表明,在假定植入物与脊柱完美融合的前提下,PLIF和IPC模型在所有运动中,诸如ROM,小平面接触力和相邻椎间盘应力等生物力学参数均相似。结论新提出的融合器IPC在外科手术水平上具有相似的融合效果,并且在邻近水平上的生物力学效果也与椎弓根螺钉固定系统相似。然而,对于临床应用,需要通过临床研究来研究棘突与钩之间的真正融合效果,融合持续时间以及对棘突的影响。

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