经皮椎体成形联合椎弓根强化治疗重度骨质疏松性椎体骨折的有限元分析  

Finite element analysis of percutaneous vertebroplasty combined with pedicle augmentation in treatment of severe osteoporotic vertebral fractures

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作  者:李红桃 潘泓宇 雷杨 肖常明 Li Hongtao;Pan Hongyu;Lei Yang;Xiao Changming(Department of Spine Surgery,Hospital of Traditional Chinese Medicine Affiliated to Southwest Medical University,Luzhou 646000,Sichuan Province,China)

机构地区:[1]西南医科大学附属中医医院脊柱外科,四川省泸州市646000

出  处:《中国组织工程研究》2025年第15期3089-3094,共6页Chinese Journal of Tissue Engineering Research

摘  要:背景:椎弓根内骨水泥灌注联合椎体成形已被用于治疗Kummell病和椎弓根溶骨性转移瘤等疾病,但该手术方式对相邻椎体及椎间盘的影响尚不明确。目的:应用三维有限元模型探讨经皮椎体成形联合椎弓根强化术治疗重度骨质疏松性椎体骨折对邻近节段椎体以及椎间盘相关生物力学的影响。方法:选择1位已完成经皮椎体成形联合椎弓根强化术的重度骨质疏松性椎体骨折(L1)女性患者,并提取其术前及术后的CT文件,研究范围为T_(12)-L_(2)(包括伤椎、邻近椎体和椎间盘)。通过Mimics、SolidWorks和Geomagic等软件分别建立了术前、术后三维脊柱功能单元的有限元模型。在T_(12)上终板垂直方向加载500 N力矩和10 N·m旋转力矩,模拟前屈、后伸、侧屈和旋转等运动方位,分析手术前后相邻节段椎体终板和椎间盘的应力变化情况。结果与结论:①成功建立了术前和术后脊柱功能单元的三维有限元模型;②通过计算得出,在模拟载荷下,术后T_(12)下终板应力分布更均匀且最大应力值减小,与术前相比无显著差异(P>0.05);术后L_(2)上终板应力分布更均匀且最大应力与术前无显著差异(P>0.05);同样,术后T_(12)/L_(1)、L_(1)/L_(2)椎间盘应力分布也更均匀且最大应力值均显著减小(P<0.05);③因此,经皮椎体成形联合椎弓根强化能够有效改善术后相邻椎体终板和椎间盘的应力分布,并能够减小应力,最终降低术后再骨折风险以及显著延缓椎间盘退变。BACKGROUND:Pedicle internal bone cement augmentation combined with vertebroplasty has been used to treat diseases such as Kummell’s disease and osteolytic metastases of the pedicle.However,the impact of this surgical method on adjacent vertebrae and intervertebral discs remains unclear.OBJECTIVE:A three-dimensional finite element model was used to explore the impact of percutaneous vertebroplasty combined with pedicles augmentation in the treatment of severe osteoporotic vertebral fractures on the biomechanics of adjacent segmental vertebral bodies and intervertebral discs.METHODS:A female patient who had undergone percutaneous vertebroplasty combined with pedicles augmentation for a severe osteoporotic vertebral fracture(L1)was selected.Preoperative and postoperative CT files were extracted.The study range was T_(12) to L_(2),including the injured vertebra,adjacent vertebrae,and intervertebral discs.Software like Mimics,SolidWorks,and Geomagic was used to establish finite element models of the spinal functional unit before and after surgery.A 500 N force and a 10 N·m rotational torque were applied in the vertical direction of the T_(12) upper endplate to simulate movements such as flexion,extension,lateral bending,and rotation,analyzing the stress changes in the vertebral endplates and intervertebral discs of adjacent segments before and after surgery.RESULTS AND CONCLUSION:(1)Three-dimensional finite element models of preoperative and postoperative spinal functional units were successfully established.(2)We calculated and analyzed that under simulated load,the stress distribution of the inferior endplate of T_(12) was more uniform and the maximum stress value was reduced after surgery,with no significant difference compared with before surgery(P>0.05).The stress distribution of the superior endplate of L_(2) after surgery was more uniform and the maximum stress was not significantly different from that before surgery(P>0.05).Similarly,the stress distribution of T_(12)/L_(1) and L_(1)/L_(2) intervertebral dis

关 键 词:椎弓根强化 骨质疏松性椎体骨折 椎体成形 应力 有限元模型 骨水泥 

分 类 号:R459.9[医药卫生—治疗学] R318[医药卫生—临床医学] R331

 

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