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模拟后路椎间盘镜下腰椎间盘摘除术与传统术式治疗腰椎间盘突出症对腰椎生物力学稳定性的影响
引用本文:刘守应,卡索,李志军,康补晓,刘成,王永成. 模拟后路椎间盘镜下腰椎间盘摘除术与传统术式治疗腰椎间盘突出症对腰椎生物力学稳定性的影响[J]. 华北国防医药, 2010, 22(1)
作者姓名:刘守应  卡索  李志军  康补晓  刘成  王永成
作者单位:解放军253医院骨科;内蒙古医学院解剖教研室;内蒙古工业大学力学实验室;
摘    要:
目的探讨后路椎间盘镜下腰椎间盘摘除术(MED)及传统开放腰椎间盘摘除术对腰椎生物力学稳定性的影响。方法选用6具新鲜尸体脊柱标本,模拟后路腰椎间盘摘除的不同术式,依次对标本腰3~4间隙进行处理,共设计5种减压情况:MED、半椎板切除、半椎板切除并下关节突1/2切除、半椎板切除并下关节突全部切除和全椎板切除髓核摘除术。在力学实验机上分别对实验标本进行前屈/后伸、左/右侧屈及左/右轴向旋转运动,测量不同运动的最大范围。结果模拟MED手术脊柱标本向各个方向的运动与正常对照组比较差异无统计学意义(P>0.05);半椎板切除术、半椎板切除并下关节突1/2切除后,标本向各个方向的运动除半椎板切除并下关节突1/2切除后右侧旋转外与正常对照组差异无统计学意义(P>0.05),半椎板切除并下关节突全部切除后,标本向各个方向运动与正常对照组比较差异均有统计学意义(P<0.05,右侧旋转P<0.01);模拟全椎板切除标本向各个方向的运动与正常对照组比较差异均有统计学意义(P<0.01)。结论MED手术对脊柱破坏性较小,对稳定性无影响,而半椎板并小关节切除则破坏了稳定性。

关 键 词:椎间盘镜下椎间盘切除术  半椎板切除  全椎板切除  下关节切除  生物力学  稳定性  

A Biomechanical Stability Study of Microendoscopic Lumbar Discectomy (MED) and Standard Discectomy in the Treatment of Lumbar Disc Herniation
LIU Shou-ying,KA Suo,LI Zhi-jun,KANG Bu-xiao,LIU Cheng,WANG Yong-cheng. A Biomechanical Stability Study of Microendoscopic Lumbar Discectomy (MED) and Standard Discectomy in the Treatment of Lumbar Disc Herniation[J]. Medical Journal of Beijing Military Region, 2010, 22(1)
Authors:LIU Shou-ying  KA Suo  LI Zhi-jun  KANG Bu-xiao  LIU Cheng  WANG Yong-cheng
Affiliation:1.Department of Osteology;the 253rd Hospital of PLA;Hohhot 010051;China;2. Department Anatomy;Inner Mongolia Medical College;Hohhot 010050;3.Mechanics Lab;Inner Mongolia University of Technology;China
Abstract:
Objective To study the effect of the microendoscopic lumbar discectomy(MED)and standard lumbar discectomy in lumbar spine stability.Methods Six human cadaver specimens were used in this study.Five different decompression models were made between lumer 3 and 4 including imitation operation of MED,semilaminectomy,semilaminectomy combined with semifacetectomy of inferior facet,semilaminectomy combined with total inferior facetectomy and laminectomy.The largest ranges of six different orientations(foreward flex...
Keywords:Microendoscopic lumbar discectomy  Semilaminectomy  Laminectomy  Facetectomy  Biomechanics  Stability  
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