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交通性脑积水纤维化发生机制及抗纤维化研究现状 被引量:3

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摘要 交通性脑积水可自发于老年人、新生儿或作为脑外伤、颅内出血和脑膜炎等疾病的并发症。血液、炎症因子等局部刺激引起蛛网膜、蛛网膜下腔、蛛网膜绒毛、软脑膜以及神经根周围间隙等部位的纤维增生、粘连,甚至发生闭塞,引起脑脊液(CSF)回流和吸收障碍。
出处 《中华实验外科杂志》 CAS CSCD 北大核心 2011年第11期2022-2023,共2页 Chinese Journal of Experimental Surgery
基金 中国博士后基金资助项目(20080440728) 福建省自然科学基金面上项目(2009D002) 厦门市科技局资助项目(3502220089001)
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  • 1KADISON R V, KASTLER D. Perurbations of yon Neumann algebras I, stability of type [J]. Amer.J. Math. , 1972, 94: 38-54.
  • 2CHRISTENSEN E. Perturbations of type I yon Neumann algebras [J]. J. London Math. Soc. , 1975,94: 395-405.
  • 3LANCE E C. Cohomology and perturbations of nest algebras [J]. Proc. London Math. Soc. , 1981,43: 334-346.
  • 4DAVIDSON K R. Perturbations of reflexive operator algebras [J]. J. Operator Theory, 1983, 15: 289-305.
  • 5CONNES A. Classification of injective factors [J]. Ann. Math., 1976, 104: 73-116.
  • 6孟辉,张礼均,卢佳友,李飞,王俊伟,吴国才,冯华.脑出血后慢性脑积水脑脊液中PⅠCP、PⅢNP、HA、LN的水平及意义[J].中国微侵袭神经外科杂志,2007,12(2):82-84. 被引量:12
  • 7JOHNSON B E, KADISON R V, RINGROSE J R. Cohomology of operator algebras Ⅲ [J]. Bull.Soc. Math. France, 1972, 100: 73-96.
  • 8DAVIDSON K R. Nest Algebras [M]. Pitman Research Notes in Mathematics Series, Vol. 191,Longman, London/New York, 1988.
  • 9KATSOULIS E G. Remarks on the inter polation and the similarity problem for nest subalgebras of von Neumann algebras [J]. J. Math. Anal. Appl. , 1995, 190: 755-762.
  • 10GILFEATHER F, LARSON D R. Nest subalgebras of von Neumann algebras [J]. Adv. Math. ,1982, 46: 171-199.

二级参考文献18

  • 1张良文,吴承远,朱树干,刘玉光,江玉泉,徐淑军.颅内动脉瘤术后脑血管痉挛与血浆内皮素-1、一氧化氮含量的关系[J].中华实验外科杂志,2004,21(6):676-677. 被引量:4
  • 2杨军,赵军,曾甫清,鞠文,鲁功成.转化生长因子-β1在梗阻性肾病大鼠肾小管间质纤维化中的作用[J].中华实验外科杂志,2005,22(3):349-350. 被引量:25
  • 3Lu J, Moochhala S, Shirhan M, et al. Nitric oxide induces macrophage apoptosis following traumatic brain injury in rats. Neuosci Lett, 2003,339:147-150.
  • 4Kondziella D, Ludemann W, Brinker T, et al. Alterations in brain metabolism, CNS morphology and CSF dynamics in adult rats with kaolin-induced hvdrocephalus. Brain Re.s, 2002. 927 : 35-41.
  • 5Ng WH, Moochhala S, Yeo TT, et al. Nitric oxide and subarachnoid hemorrhage:elevated level in cerebrospinal fluid and their implieations.Neurosurgery, 2001, 49:622-626.
  • 6Azumagawa K, Suzuki S, Tanabe T, et al. Neopterin, biopterin, and nitric oxide concentrations in the cerebrospinal fluid of children with central nervous system infections. Brain Dev, 2003, 25:200-202.
  • 7MAYFRANK L, KIM Y, KISSLER J, et al. Morphological changes following experimental intraventricular haemorrhage and intraventxicular fibrinolytic treatment with recombinant tissue plasminogen activator [J]. Acta Neuropathol (Berl),2000, 100(5): 561-567.
  • 8AOYAMA Y, KINOSHITA Y, YOKOTA A, et al. Neuronal damage in hydrocephalus and its restoration by shunt insertion in experimental hydrocephalus: a study involving the neurofilament-immunostaining method [J]. J Neurosurg, 2006,104(5 Suppl): 332-339.
  • 9PHAN T G, KOH M, VIERKANT R A, et al. Hydrocephalus is a determinant of early mortality in putaminal hemorrhage [J]. Stroke, 2000, 31(9): 2157-2162.
  • 10DIRINGER M N, EDWARDS D F, ZAZULIA A R. Hydrocephalus: a previously unrecognized predictor of poor outcome flom supratentorial intracerebral hemorrhage [J].Stroke, 1998, 29(7): 1352-1357.

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