韦 兴,胡明涛,史亚民,侯树勋,冯西桥.腰椎侧凸螺钉内固定节段对手术矫正效果影响的有限元分析[J].中国脊柱脊髓杂志,2010,20(11):895-897.
腰椎侧凸螺钉内固定节段对手术矫正效果影响的有限元分析
The effect of instrument segments on the correction rate of lumbar scoliosis,a finite element analysis
投稿时间:2010-05-25  修订日期:2010-08-17
DOI:10.3969/j.issn.1004-406X.2010.[issue].895.2
中文关键词:  脊柱侧凸  生物力学  有限元分析
英文关键词:Spine scoliosis  Biomechanics  Finite element analysis.
基金项目:
作者单位
韦 兴 解放军总医院第一附属医院骨科 100048 北京市 
胡明涛 清华大学力学系生物力学实验室 100084 北京市 
史亚民 解放军总医院第一附属医院骨科 100048 北京市 
侯树勋  
冯西桥  
摘要点击次数: 4002
全文下载次数: 2876
中文摘要:
  【摘要】 目的:应用有限元分析的方法,模拟腰椎侧凸矫形手术,探讨内固定螺钉位置对脊柱侧凸矫形的效果。方法:利用Simpleware软件建立L1~L5侧凸的三维有限元模型,侧凸角40°。在此模型上设计6组(A~F组)凹侧椎弓根螺钉置入计划,其中A-E 组为5个椎体依次空缺1个螺钉,F组作为对照行5个椎体置钉,连接矫形棒。应用ANSYS和ADAMS软件,计算矫形过程中反旋转和回弹时置入物所受载荷(最大扭矩及最大拔出力)以及脊椎的应力应变场。结果:6组矫形结束后的侧凸角分别为30°、23°、25°、22°、29°、21°。所需最大扭矩分别为3.1N·m、3.3N·m、4.6N·m、3.4N·m、4.2N·m和3.3N·m。螺钉所承受最大拔出力分别为418N、383N、437N、395N、420N和380N。结论:在保持一定固定范围条件下,间断减少非弧顶固定螺钉,在三维有限元模型上可得到较好的矫形效果。
英文摘要:
  【Abstract】 Objective:To simulate the correction surgery of lumbar scoliosis by finite element analysis and investigate the effect of instrument segments on the correction rate of lumbar scoliosis.Method:A detailed three-dimensional finite element scoliotic model of L1-L5 with a Cobb angle of 40°on sagittal plane was established by using Simpleware software.Six types(group A-F)of pedicle screw instrumentations on concave side were designed on the model(of these,uniscrew placement in each vertebral body of group A-E,while biscrew placement in each vertebral body of group F).The spinal stress and strain field during with respect to anti-rotation and the rebound in the process of correction were meassured by using software ANSYS and ADAMS software.Result:The scoliostic angle after correction was 30°,23°,25°,22°,29°and 21°respectively for group A to E.The maximum torque was 3.1N·m,3.3N·m,4.6N·m,3.4N·m,4.2N·m and 3.3N·m,the maximum pull out force was 418N,383N,437N,395N,420N and 380N.Conclusion:Under definite circumstances,decreasing non-arc vertebrae screws can yield good correction at least in finite element model.
查看全文  查看/发表评论  下载PDF阅读器
关闭
function PdfOpen(url){ var win="toolbar=no,location=no,directories=no,status=yes,menubar=yes,scrollbars=yes,resizable=yes"; window.open(url,"",win); } function openWin(url,w,h){ var win="toolbar=no,location=no,directories=no,status=no,menubar=no,scrollbars=yes,resizable=no,width=" + w + ",height=" + h; controlWindow=window.open(url,"",win); } &et=20671175A4E105EEA80E1B61E402B78F38973716EE699FB088CE6F86043D04D4AC5E5EE28DB3849103C9E8287E48DB129ACFAB3ED149FCC8A09B1FD7A649F2E15A198311D55F6B4CC15F7456AD52EF32C3E533FD32F6A5CE64EE2E216D32E41A699BDC6CA0E8F84E3F5489446795EB9A&pcid=A9DB1C13C87CE289EA38239A9433C9DC&cid=527A01A248DACB72&jid=9262A66F274A6CFEEBE23EC40CDE54FC&yid=140ECF96957D60B2&aid=4766EE4148CA4237978AFA218265DE1D&vid=&iid=708DD6B15D2464E8&sid=2DEC3FE1EFC628C2&eid=547650636788ED84&fileno=20101104&flag=1&is_more=0"> var my_pcid="A9DB1C13C87CE289EA38239A9433C9DC"; var my_cid="527A01A248DACB72"; var my_jid="9262A66F274A6CFEEBE23EC40CDE54FC"; var my_yid="140ECF96957D60B2"; var my_aid="4766EE4148CA4237978AFA218265DE1D";