期刊文献+

Impact of vasculature damage on the outcome of spinal cord injury:a novel collagenase-induced model may give new insights into the mechanisms involved 被引量:4

Impact of vasculature damage on the outcome of spinal cord injury:a novel collagenase-induced model may give new insights into the mechanisms involved
暂未订购
导出
摘要 The deleterious effect of vasculature damage on the outcome of spinal cord injury has long been recognized, and numerous clinical studies have shown that the presence of hemorrhage into the spinal cord is directly associated with a poorer neurological outcome. Vascular damage leads to de- creased blood flow to the cord and the release of potentially toxic blood-borne components. Here we consider the mechanisms that may be contributing to hemorrhage-induced damage and discuss the utility of a new model of spinal cord hemorrhage, which was urgently required as most of our current understanding has been extrapolated from intracerebral hemorrhage studies. The deleterious effect of vasculature damage on the outcome of spinal cord injury has long been recognized, and numerous clinical studies have shown that the presence of hemorrhage into the spinal cord is directly associated with a poorer neurological outcome. Vascular damage leads to de- creased blood flow to the cord and the release of potentially toxic blood-borne components. Here we consider the mechanisms that may be contributing to hemorrhage-induced damage and discuss the utility of a new model of spinal cord hemorrhage, which was urgently required as most of our current understanding has been extrapolated from intracerebral hemorrhage studies.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第20期1783-1786,共4页 中国神经再生研究(英文版)
基金 supported by a grant from Medical Research Council,No.MRCG0300456
关键词 spinal cord injury VASCULATURE hemorrhage animal model COLLAGENASE stereotaxic microinjection spinal cord injury vasculature hemorrhage animal model collagenase stereotaxic microinjection
  • 相关文献

参考文献28

  • 1Allen AR (1914) Remarks on the histopathological changes in the spinal cord due to impact an experimental study. J Nerv Ment Dis 31:141-147.
  • 2Andreoli C, Colaiacomo MC, Rojas Beccaglia M, Di Biasi C, Casciani E, Gualdi G (2005) MRI in the acute phase of spinal cord traumatic le- sions: Relationship between MRI findings and neurological outcome. Radiol Med 110:636-645.
  • 3Asano T (1980) Current trend in the research of cerebral microcircula- tion. Kokyu To Junkan 28:339-345.
  • 4Boldin C, Raith J, Fankhauser F, Haunschmid C, Schwantzer G, Sch- weighofer F (2006) Predicting neurologic recovery in cervical spinal cord injury with postoperative MR imaging. Spine (Phila Pa 1976) 31:554-559.
  • 5Bosmia AN, Hogan E, Loukas M, Tubbs RS, Cohen-Gadol AA (2013) Blood supply to the human spinal cord. I. Anatomy and hemody- namics. Clin Anat doi: 10.1002/ca.22281.
  • 6Darian-Smith C (2009) Synaptic plasticity, neurogenesis, and function- al recovery after spinal cord injury. Neuroscientist 15:149-165.
  • 7Flanders AE, Spettell CM, Tartaglino LM, Friedman DP, Herbison GJ (1996) Forecasting motor recovery after cervical spinal cord injury: value of MR imaging. Radiology 201:649-655.
  • 8Fleming JC, Norenberg MD, Ramsay DA, Dekaban GA, Marcillo AE, Saenz AD, Pasquale-Styles M, Dietrich WD, Weaver LC (2006) The cellular inflammatory response in human spinal cords after injury. Brain 129:3249-3269.
  • 9Gerzanich V, Woo SK, Vennekens R, Tsymbalyuk O, Ivanova S, Ivanov A, Geng Z, Chen Z, Nilius B, Flockerzi V, Freichel M, Simard JM (2009) De novo expression of Trpm4 initiates secondary hemorrhage in spi- nal cord injury. Nat Med 15:185-191.
  • 10Hart S, Arnold SA, Sithu SD, Mahoney ET, Geralds JT, Tran P, Benton RL, Maddie MA, D'Souza SE, Whittemore SR, Hagg T (2010) Rescuing vasculature with intravenous angiopoietin-1 and alpha v beta 3 integ- rin peptide is protective after spinal cord injury. Brain 133:1026-1042.

同被引文献16

引证文献4

二级引证文献6

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