皮质骨轨迹螺钉固定对相邻节段影响的有限元分析  被引量:6

Finite element analysis of cortical bone trajectory screw fixation on adjacent segments

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作  者:魏源标 郭惠智 张顺聪[4] Wei Yuanbiao;Guo Huizhi;Zhang Shuncong(Personnel Applying for Master's Degree with the Same Educational Background in Guangzhou University of Chinese Medicine,Guangzhou 510405,Guangdong Province,China;Department of Bone Orthopedics,First Affiliated Hospital,Guangdong Pharmaceutical University,Guangzhou 510080,Guangdong Province,China;First Clinical Medical College,Guangzhou University of Chinese Medicine,Guangzhou 510405,Guangdong Province,China;Department of Spine,First Affiliated Hospital of Guangzhou University of Chinese Medicine,Guangzhou 510405,Guangdong Province,China)

机构地区:[1]广州中医药大学,广东省广州市510405 [2]广东药科大学附属第一医院正骨科,广东省广州市510080 [3]广州中医药大学第一临床医学院,广东省广州市510405 [4]广州中医药大学第一附属医院脊柱科,广东省广州市510405

出  处:《中国组织工程研究》2021年第18期2799-2804,共6页Chinese Journal of Tissue Engineering Research

基  金:广州中医药大学第一附属医院创新强院项目(2019ⅡT32),项目负责人:张顺聪。

摘  要:背景:皮质骨轨迹螺钉是近年来兴起的新型脊柱内固定方式,可明显增加内固定的抗拔出力,取得和传统椎弓根螺钉相似或更优的生物力学稳定性,但其对相邻节段的影响尚不清楚。目的:比较皮质骨轨迹螺钉固定与椎弓根螺钉固定对相邻节段椎间盘和小关节的影响。方法:通过一位正常男性志愿者的腰椎CT扫描数据,建立L3至骶骨的腰骶椎有限元模型。验证完整模型的有效性后,建立L4-5节段的皮质骨轨迹螺钉固定与椎弓根螺钉固定模型,设置模型的材料属性,比较两种内固定方式对上下相邻节段(L3-4和L5-S1节段)椎间活动度、椎间盘应力和小关节应力的影响。结果与结论:①有限元验证结果显示模型可较好地模拟正常腰椎的生理活动;②在上下相邻节段活动度和椎间盘Von Mises应力上,两种固定方式在各个活动方向上差异较小(<10%);在相邻节段小关节Von Mises应力上,皮质骨轨迹螺钉固定模型在各工况下L4上关节突的应力均小于椎弓根螺钉固定模型,尤其是在左旋和右旋时明显,分别减小了30.1%和15.9%;但在尾端相邻小关节应力上,皮质骨轨迹螺钉固定模型L5下关节突的最大等效应力在前屈、后伸、左侧弯和左旋时较椎弓根螺钉固定模型分别增加10.4%,20%,9.6%和2.7%,在右侧弯和右旋时减小24.5%和7.4%;③总的来说,两种固定方式对相邻节段活动度和椎间盘应力的影响相似,但相比于椎弓根螺钉固定,皮质骨轨迹螺钉固定减小了头端相邻小关节的应力,增加了尾端相邻小关节的应力。BACKGROUND:In recent years,cortical bone trajectory screws have been used as a new type of spinal internal fixation;it can significantly increase the pull-out strength in lumbar vertebra and achieve similar biomechanical stability to traditional trajectory pedicle screw.However,the influence of cortical bone trajectory screws on adjacent segments has not been evaluated.OBJECTIVE:To compare the influence of cortical bone trajectory screws and traditional trajectory pedicle screw on adjacent intervertebral disc and facet joint.METHODS:An intact finite element model of L3 to sacrum was constructed by using CT scan data of normal male volunteers.After verifying the validity of the intact lumbosacral model,the traditional trajectory pedicle screw and cortical bone trajectory screws models of L4-5 level segment fixation were reconstructed,respectively.The material properties of the models were set up.The influences of the two internal fixation instruments on the motion range of adjacent segments,disc stress and facet joint of the upper and lower adjacent segments(L3-4 and L5-S1)were compared.RESULTS AND CONCLUSION:(1)The finite element validity showed that the model could simulate the physiological activities of normal lumbar spine well.(2)The difference of the two fixation models in adjacent segments was small(<10%)in motion range and the Von Mises stress of the intervertebral disc.As for the Von Mises stress of adjacent facet joints,the stress at L4 superior articular process in cortical bone trajectory screws model was less than that of traditional trajectory pedicle screw model in all working conditions,especially in left and right rotations(reduced by 30.1%and 15.9%,respectively).The maximum equivalent stress of at L5 inferior articular process in the cortical bone trajectory screws model increased by 10.4%,20%,9.6%and 2.7%compared with the traditional trajectory pedicle screw model in flexion,extension,left bending and left rotation,respectively,and decreased by 24.5%and 7.4%in right bending and right rotation,re

关 键 词:皮质骨轨迹螺钉 椎弓根螺钉 相邻节段退变 内固定 脊柱 有限元分析 

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

 

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