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COMPARATIVE STUDY OF SPINE FIXATION TECHNIQUE

机译:脊柱固定技术的比较研究

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摘要

Lumbar disc degeneration is an ailment that afflicts a large population. Spinal fusion techniques have been developed to alleviate pain and reestablish spine stability. It has been found that the stress levels within the vertebrae can significantly influence bone healing and resorption. To effectively apply fixation devices, analysis of the interactions between the tissue and inserted devices is needed. This paper presents a biomechanical study using the finite element (FE) method. Specifically, patient-based intact L4-L5 motion segments were constructed through an edge detection algorithm. Intervertebral disc was modeled with composite element. The effect of an anterior lumbar interbody fusion cage with unilaminar (ULFS) and translaminar facet screws (TLFS) was then evaluated. The results were analyzed in the terms of stability and stress distribution.
机译:腰椎间盘退变是困扰许多人的疾病。已经开发出脊柱融合技术以减轻疼痛并重建脊柱稳定性。已经发现,椎骨内的应力水平可以显着影响骨骼的愈合和吸收。为了有效地应用固定装置,需要分析组织与插入的装置之间的相互作用。本文提出了一种使用有限元(FE)方法的生物力学研究。具体而言,通过边缘检测算法构建了基于患者的完整L4-L5运动段。椎间盘用复合元件建模。然后评估前腰椎椎间融合器与单侧椎板(ULFS)和经椎板小平面螺钉(TLFS)的效果。从稳定性和应力分布方面分析了结果。

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