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建立剪切应力导致椎间盘退变模型 被引量:7

Development of shear force-induced intervertebral disc degeneration model
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摘要 目的建立剪切应力导致椎间盘退变的在体动物模型,探索剪切应力与椎间盘退变之间的关系。方法 20只成年日本大耳白兔随机平均分成2组。加载组通过手术在动物L4/5节段植入自行研制的剪切应力加载装置,并加载50 N的剪切力4周;对照组只植入加载装置但不加载剪切力。4周后处死所有动物并对所有相关节段的椎间盘做病理检查。结果术后的影像学检查显示加载装置位于动物腰椎,手术过程和植入的加载装置对实验动物的日常活动与饮食均无影响。病理学检查发现加载组椎间盘的纤维环组织排列紊乱,正常髓核细胞明显减少。结论新型装置的设计减少了对动物椎体的创伤,并且可以提供可靠的剪切应力;在体动物模型的建立揭示一定的剪切应力可导致动物椎间盘退变,对进一步研究载荷与椎间盘退变间的关系具有较大的意义。 Objective To develop a shear force-induced intervertebral disc degeneration (IDD) in vivo animal model, and investigate the relationship between shear stress and IDD. Methods A total of 20 Japanese white rabbits were randomly divided into two groups. In loading group ( n = 10), shear force of 50 N was applied on the disc of L4/5 for 4 weeks by a custom-made external shear force loading device. In control group ( n = 10), the animals underwent a sham operation with the external loading device situated, but their discs remained unloaded. After 4 weeks, all the intervertebral discs of L4/5 were executed for the pathologic examination. Results The postoperative radiographic examination showed a perfect position of the loading device, and the operation process and implanted loading device had no effect on daily activities and diet of the experiment animals. The pathological examination showed an irregular arrangement of annulus fibrosus and a significant decrease of nor- mal nucleus pulposus cells in loading group. Conclusions The new custom-made device greatly reduced the wounds on animal vertebra and provided a reliable shear force. The development of in vivo animal model indi- cates that IDD can be induced by shear force, which is of significance to further study the relationship between loading and IDD.
出处 《医用生物力学》 EI CAS CSCD 北大核心 2013年第5期490-495,共6页 Journal of Medical Biomechanics
基金 国家自然科学基金面上项目(81371988) 浙江省大学生科技创新活动计划(2013R413042) 浙江省自然科学基金杰出青年项目(LR12H06001)
关键词 剪切应力 加载 椎间盘退变 影像学 病理学 Shear force Loading Intervertebral disc degeneration (IDD) Radiology Pathology
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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. 被引量:1
  • 2Walsh AJ, kotz JC. Biological response of the interverte- bral disc to dynamic loading [ J ]. J Biomech, 2004, 37 ( 3 ) : 329-337. 被引量:1
  • 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. 被引量:1
  • 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. 被引量:1
  • 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. 被引量:1
  • 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. 被引量:1
  • 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. 被引量:1
  • 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. 被引量:1
  • 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. 被引量:1
  • 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. 被引量:1

二级参考文献33

  • 1邓国勇,田联房,陈艺,白波.基于关节机器人的人体脊柱生物力学试验装置设计[J].医用生物力学,2008,23(6):446-453. 被引量:8
  • 2卢海俊,朱青安,黄继锋,卢万发,吴增辉.一种脊柱运动的加载装置和测量方法[J].中国临床解剖学杂志,1993,11(2):147-148. 被引量:20
  • 3胡勇,谢辉,杨述华.三维有限元分析在脊柱生物力学中应用研究[J].医用生物力学,2006,21(3):246-250. 被引量:32
  • 4Panjabi MM. Biomechanical evaluation of spinal fixation de- vices: I. A conceptual framework [J ]. Spine, 1988,13 (10) : 1129-1134. 被引量:1
  • 5Wilke H J, Wenger K, Claes L. Testing criteria for spinal implants: Recommendations for the standardization of in vitro stability testing of spinal implants [ J ]. Eur Spine J,1998, 7(2): 148-154. 被引量:1
  • 6Gerber M, Crawford NR, Chamberlain RH, et al. Biome- chanical assessment of anterior lumbar interbody fusion with an anterior lumbosacral fixation screw-plate: Compari- son to stand-alone anterior lumbar interbody fusion and an- terior lumbar interbody fusion with pedicle screws in an un- stable human cadaver model [ J ]. Spine, 2006,31 (6) : 762-768. 被引量:1
  • 7Cain CM, Schleicher P, Gerlach R, et aL A new stand-a- lone anterior lumbar interbody fusion device: Biomechanical comparison with established fixation techniques [J]. Spine, 2005,30 (23) : 2631-2636. 被引量:1
  • 8Lysack JT, Dickey JP, Dumas GA, et aL A continuous pure moment loading apparatus for biomechanical testing of multi-segment spine specimens [ J]. J Biomech, 2000, 33 (6) : 765-770. 被引量:1
  • 9Pflugmacher R, Schleicher P, Schaefer J, et aL Biome- chanical comparison of expandable cages for vertebral body replacement in the thoracolumbar spine [ J ]. Spine, 2004, 29(13) : 1413-1419. 被引量:1
  • 10Wilke H J, Krischak ST, Wenger KH, et aL Load-displace- ment properties of the thoracolumbar calf spine.. Experi- mental results and comparison to known human data [ J ]. Eur Spine J,1997,6(2) : 129-137. 被引量:1

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