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动力内固定对羊脊柱后外侧融合稳定性的影响

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出处 《中华外科杂志》 CAS CSCD 北大核心 2005年第24期1614-1615,共2页 Chinese Journal of Surgery
基金 浙江省自然科学基金资助项目(SZ399060)
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二级参考文献8

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  • 2Weinhoffer SL, Guyer RD, Herbert M, et al. Intradiscal pressure measurements above an instrumented fusion. Spine, 1995, 20:526-531.
  • 3Kanayama M, Cunningham TM, Weis BC, et al. Maturation of the posterolateral spinal fusion and its effect on load-sharing of spinal instrumentation:an in vivo sheep model. J Bone and Joint Surg, 1997,79:1710-1720.
  • 4Shono Y,Kaneda K, Abumi K, et al. Stibility of posterior of posteror spinal instrumentation and its effects on adjacent motion segments in the lumbosacral spine. Spine,1998,23:1550-1558.
  • 5Scifert JL, Sairyo K, Goel VK, et al. Stability analysis of an enhanced load sharing posterior fixation device and its equivalent conventional device in a calf spine model. Spine, 1999,24:2206-2213.
  • 6Papp T, Porter R, Aspden R, et al. An in vitro study of the biomechanical effects of flexible stabilization on the lumbar spine. Spine, 1997,22:151-155.
  • 7Gertzbein SD, Betz R, Clements D, et al. Semirigid instrumentation in the management of lumbar spinal conditions combined with circumferential fusion: a multicenter study.Spine,1996,21:1918-1926.
  • 8McAfee PC, Farey ID, Sutterlin CE, et al. Device-related osteoporosis with spinal instrumentation. Spine, 1989,14:9-14.

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