首页> 外文期刊>Spine >The Effect of Removing the Lateral Part of the Pars Interarticularis on Stress Distribution at the Neural Arch in Lumbar Foraminal Microdecompression at L3-L4 and L4-L5 Anatomic and Finite Element Investigations
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The Effect of Removing the Lateral Part of the Pars Interarticularis on Stress Distribution at the Neural Arch in Lumbar Foraminal Microdecompression at L3-L4 and L4-L5 Anatomic and Finite Element Investigations

机译:在L3-L4和L4-L5解剖和有限元研究中,去除椎间动脉外侧部分对腰椎小孔减压椎弓根神经弓应力分布的影响

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摘要

Study Design. The assessment of L3 and L4 pars interarticularis thickness and finite element analysis of stress distribution across L3 and L4 pars interarticularis. Objective. To quantify the morphology of the region of the L3 and L4 pars interarticularis and to assess the stress increase as a function of access size using the finite element lumbar spine model. Summary of Background Data. Inadequate decompression and traction of the nerve structures are several causes of the unsatisfactory outcomes in patients after foraminal stenosis decompression and far lateral disc herniation removal by extraforaminal exposure. Enlarging the access of the foraminal exposure by the removal of the lateral aspect of the pars interarticularis may be able to diminish the inadequate decompression and traction of the nerve structures; however, it may lead to in crease stress and fracture of the neural arch. Methods. We used 15 human cadaver L3 and L4 lumbar vertebrae for measuring the thickness of the pars interarticularis. The ventral and dorsal surfaces were subdivided into 4 equal parts, and the thickness of each part was measuted using a digital caliper. An experimentally validated 3-dimensional nonlinear finite element model of the intact L3-S1 segment was used to simulate the lateral removal of one fourth and one half of the L3 and L4 pars interarticularis. Results. The mean thicknesses of the pars interarticularis showed a gradual increase toward the lateral edge. Finite element model analyses predicted stresses increased to 35% and 40% after removal of one half of the lateral part of the L3 and 1..4 pars interarticularis, respectively, and were much closer to the intact spine after removal of one fourth of the lateral part of the pars interarticularis. Conclusion. The removal of one fourth of the lateral aspect of the pars interarticularis has minimal influence on the stresses in the remaining L3 and L4 neural arches. The lateral half of the pars has the largest thickness, and its removal leads to considerable stress increases.
机译:学习规划。 L3和L4关节间厚度的评估以及跨L3和L4关节间应力分布的有限元分析。目的。为了量化L3和L4关节间区域的形态,并使用有限元腰椎模型评估应力的增加,作为入路大小的函数。背景数据摘要。减压不足和神经结构牵拉是导致椎间孔狭窄减压和通过椎间孔外暴露去除远侧椎间盘突出症患者术后结果不理想的几种原因。通过去除关节腔旁的侧面来扩大椎间孔的接触可能可以减少神经结构的减压和牵引力不足;但是,这可能会导致压力增加和神经弓断裂。方法。我们使用15具尸体L3和L4腰椎来测量关节间隙的厚度。将腹侧和背侧细分为四个相等的部分,并使用数字卡尺测量每个部分的厚度。 L3-S1完整段的经实验验证的三维非线性有限元模型用于模拟侧关节间L3和L4椎体的四分之一和二分之一的侧向去除。结果。关节间杆的平均厚度向外侧边缘逐渐增加。有限元模型分析预测,切除L3侧半部分和1..4 pars interarticularis的外侧部分的一半后,应力分别增加至35%和40%,而切除四分之一的椎体后,其应力更接近完整的脊柱。关节间隙的外侧部分。结论。关节间侧部侧面的四分之一的去除对剩余的L3和L4神经弓中的应力影响最小。杆的侧面一半具有最大的厚度,并且其去除导致相当大的应力增加。

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