期刊文献+

剪切应力对椎体终板的影响 被引量:7

Effects of shear force on vertebral endplate
在线阅读 下载PDF
导出
摘要 目的:通过建立剪切应力加载椎间盘的在体动物模型,探索剪切应力与椎体终板退变间的关系.方法:设计剪切应力加载装置(夹持于L4、L5椎体),用于研究剪切应力加载下L4/5椎体终板的变化.选用38只成年雌性日本大耳白兔,随机分成4组.A组(n=10)加载50N的剪切力4周;B组(n=10)加载50N的剪切力8周;C组(n=10)为对照组,只置入加载装置但不加载剪切力,置入加载装置时间为8周;D组(n=8)为非手术空白组.在4周或8周时将各组兔子全麻后进行X线及MRI检查,对透视下椎体终板变化和MRI T2加权像上椎间盘信号强度的改变情况进行观察分析.检查完毕后处死动物取材(兔L4/5椎间盘及椎体终板),固定后HE染色观察椎体终板组织学变化情况,分析剪切应力对椎体终板和椎间盘退变的影响,并行micro-CT检测,通过计算孔隙率(1-相对骨体积)分析剪切应力对椎间盘渗透率的影响.结果:X线观察发现造模后4周(A组)椎间隙开始出现狭窄,椎体终板尚平整,钙化不明显.第8周时(B组)椎间隙狭窄明显,椎体终板出现不同程度钙化,表面不平且发生轻微移位;相对于对照组(C、D组),A、B组椎间隙明显狭窄,两组MRI(TT2加权像)椎间盘信号明显降低.HE染色检查发现A、B组椎体终板组织排列紊乱,病理性增生.micro-CT检测计算孔隙率发现A组实验节段范围为28.4%~37.0%,较B组(范围为26.2%~40.0%)无明显统计学差异,但与C、D两组比较可见统计学差异.结论:一定的剪切应力可导致动物椎体终板退变及孔隙率下降,这可能与椎间盘退变有密切的关系. Objectives: To investigate the effect of shear force on the endplate of rabbit lumbar vertebra and the relationship between shear force and degeneration of the IVD. Methods: A stainless external shear loading attaching to IA and L5 vertebral bones of the rabbit in a dorsoventral direction device was made to apply a constant shear. 38 skeletally mature female Japanese white rabbits (aging 5-6 months) weighing an average of 3kg were used. The rabbits were randomly assigned into non-operated group (n=8), non-loaded group (n=10) and two experimental groups of shear loading for 1 and 2 months (n=10 for each group) respectively. In the experimental groups, the discs were subjected to shear force by using an external loading device. In non-loaded group, the external loading device was situated, but the discs remained unloaded. After loading, the loading devices were removed at 4 and 8 weeks and the animals were given X-ray and MRI examination, then radiological hallmarks and the signal intenity on T2-weighted MRI were analyzed. After X-ray and MRI examination, the rabbits were killed and lumbar vertebra samples were harvested for micro- CT and histologic studies to demonstrate the influences of shear force on the endplate and disc degeneration in animal model. Then, the porosity was calculated as the average of 1-BV/TV for analyzing the influences of shear force on endplate mobility. Results All the animals tolerated the application of the external loading device. After 1 month of loading, radiographic findings showed narrowing of L4/5 discs, and the surfaces of endplates were flat. The narrowing of intervertebral space at 2 months was significant less and rough surface or slight lumbar spondylolisthesis was observed. MRI showed a significant decrease in nucleus pulposus area and signal intensity in T2-weighted images. Histologically, disorganization and hyperplasia of the chondrocyteoccurred. The porosity of the endplate in group A ranged from 28.4% to 37.0%, which showed no significant differences with group B(ranging 26.2% to 40.0%). However, significant differences were found between the experimental and control groups. Conclusions: Shear force can relieve the injury to the vertebral body. Cartilage degeneration and the reduction of endplate mobility can be induced by long term shear force loading, which may result in disc degeneration.
出处 《中国脊柱脊髓杂志》 CAS CSCD 北大核心 2015年第3期245-251,共7页 Chinese Journal of Spine and Spinal Cord
关键词 椎间盘退变 动物模型 剪切应力 椎体终板 Disc degeneration Animal model Shear force Vertebral endplate
  • 相关文献

参考文献23

  • 1Bramono DS,Richmond JC,Weitzel PP,et al.Matrix Metalloproteinases and Their Clinical Applications in Orthopaedics[J].Clin Orthop Relat Res,2004,428:272-285.
  • 2Le Maitre CL,Pockert A,Buttle DJ,et al.Matrix synthesis and degradation in human intervertebral disc degeneration[J].Biochem Soc Trans,2007,35(Pt 4):652-655.
  • 3Radin EL,Paul EL,Rose EL.Role of mechanical factors in pathogenesis of primary osteoarthritis[J].Lancet,1972,1(7749):519-522.
  • 4Wong BL,Bae BL,Chun J,et al.Biomechanics of cartilage articulation:effects of lubrication and degeneration on shear deformation[J].Arthritis Rheum,2008,58(7):2065-2074.
  • 5夏冬冬,林胜磊,赵浩增,沈中海,李耀,王向阳,徐华梓,池永龙.建立剪切应力导致椎间盘退变模型[J].医用生物力学,2013,28(5):490-495. 被引量:7
  • 6Moore RJ.The vertebral end-plate:what do we know[J]?Eur Spine J,2000,9(2):92-96.
  • 7Fields AJ,Lee AJ,Keaveny TM.Mechanisms of initial endplate failure in the human vertebral body[J].J Biomech,2010,43(16):3126-3131.
  • 8Hee TM,Chuah TM,Tan BHM,et al.Vascularization and morphological changes of tbe endplate after axial compression and distraction of the intervertebral disc[J].Spine,2011,36(7):505-511.
  • 9Richardson SM,Freemont AJ,Hoyland JA.Pathogenesis of Intervertebral Disc Degeneration[M].Vienna:Springer-Verlag Wien,2014.177-200.
  • 10Bian Q,Liang QQ,Hou W,et al.Prolonged and repeated upright posture promotes bone formation in rat lumbar vertebrae[J].Spine,2011,36(6):E380-E387.

二级参考文献16

  • 1Adams MA, Roughley PJ. What is intervertebral disc de- generation, and what causes it [J]. Spine (Phila Pa 1976), 2006, 31(18): 2151-2161.
  • 2Walsh AJ, kotz JC. Biological response of the interverte- bral disc to dynamic loading [ J ]. J Biomech, 2004, 37 ( 3 ) : 329-337.
  • 3Wuertz K, Godburn K, MacLean J J, et aL In vivo remode- ling of intervertebral discs in response to short- and long- term dynamic compression [ J]. J Orthop Res, 2009, 2? (9) : 1235-1242.
  • 4Ching CT, Chow DH, Yao FY, et aL Changes in nuclear composition following cyclic compression of the interverte- bral disc in an in vivo rat-tail model [ J]. Med Eng Phys, 2004, 26(7) : 587-594.
  • 5Barbir A, Godburn KE, Michalek AJ, et aL Effects of tor- sion on intervertebral disc gene expression and biomechan- ics, using a rat tail model [J]. Spine (Phila Pa 1976), 2011, 36(8) : 607-614.
  • 6Kroeber MW, Unglaub F, Wang H, etaL New in vivo ani- mal model to create intervertebral disc degeneration and to investigate the effects of therapeutic strategies to stimulate disc regeneration [ J]. Spine ( Phila Pa 1976), 2002, 27 (23) : 2684-2690.
  • 7latridis JC, Mente PL, Stokes IA, et aL Compression-in- duced changes in intervertebral disc properties in a rat tail model [J]. Spine (Phila Pa 1976), ]999, 24(10) : 996-1002.
  • 8Hutton WC, Toribatake Y, Elmer WA, et aL The effect of compressive force applied to the intervertebral disc in vivo.A study of proteoglycans and collagen [ J]. Spine (Phila Pa 1976), 1998, 23(23) : 2524-2537.
  • 9Lotz JC, Colliou OK, Chin JR, et aL Compression-induced degeneration of the interver{ebral disc: An in vivo mouse model and finite-element study [J] Spine (Phila Pa ]976), ]998, 23(23): 2493-2506.
  • 10Hee HT, Chuah Y J, Tan BH, et aL Vascularization and morphological changes of the endplate after axial compres- sion and distraction of the intervertebral disc [ J]. Spine (Phila Pa 1976), 2011, 36(7): 505-511.

共引文献6

同被引文献77

引证文献7

二级引证文献73

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部