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血流动力学和病理学因素在颅内动脉瘤发病机制中的作用 被引量:11

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作者 刘磊 许百男
出处 《中华老年心脑血管病杂志》 CAS 北大核心 2008年第5期391-392,共2页 Chinese Journal of Geriatric Heart,Brain and Vessel Diseases
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参考文献13

  • 1Aenis M, Stancampiano AP, Wakhloo AK, et al. Modeling of flow in a straight stented and nonstented side wall aneurysm model. J Biomech Eng, 1997,119 : 206-212.
  • 2Castro MA,Putman CM,Cebral JR,et al. Computational fluid dynamics modeling of intraeranial aneurysms: effects of parent artery segmentation on intra-aneurysmal hemodynamics. Am J Neuroradiol, 2006,27 : 1703-1709.
  • 3Cebral JR, Pergolizzi RS, Putman CM. Computational fluid dynamics modeling of intraeranial aneurysms: Qualitative comparison with cerebral angiography. Aead Radiol, 2007, 14:804-813.
  • 4Glor FP, Long Q, Hughes AD, et al. Reproducibility study of magnetic resonance image-based computational fluid dynamics prediction of carotid bifurcation flow. Ann Biomed Eng,2003, 31 : 142-151.
  • 5Masaaki S, Marie O,Kiyoshi T, et al. Magnitude and role of wall shear stress on cerebral aneurysm computational fluid dynamic study of 20 middle cerebral artery aneurysms. Stroke, 2004,35 : 2500-2505.
  • 6Masaaki S,Marie O,Kiyoshi T,et al. Role of the blood stream impacting force and the local pressure elevation in the rupture of cerebral aneurysms. Stroke, 2005,36 : 1933-1937.
  • 7Hassan T, Timofeev EV, Saito T. A proposed parent vessel geometry-based categorization of saccular intracranial aneurysms:.Computational flow dynamics analysis of the risk factors for lesion rupture. J Neurosurg, 2005,103 :662-680.
  • 8Steiger H J, Poll A, Liepsch DW, et al. H emodynamic stress in terminal aneurysms. Acta Neurochir, 1988,93 : 18-23.
  • 9Schievink WI,Katzmann JA, Piepgras DC, et al. Alpha-l-antitrypsin phenotypes among patients with intracranial aneurysms. J Neurosurg, 1996,84 : 781-784.
  • 10Kosierkiewicz TA, Factor SM, Dickson DW. Immumoeytochemical studies of atherosclerotic lesions of cerebral berry aneurysms. Neuropathol Exp Neurol, 1994,53 : 399-406.

二级参考文献11

  • 1Cohen J R,Surg Gynecol Obstet,1987年,165卷,301页
  • 2Cohen J R,Surg Gynecol Obstet,1987年,164卷,355页
  • 3Schievink W I. Intracranial aneurysms. N Engl J Med, 1997,336(1):28-40
  • 4Pearce W H, Koch A E. Cellular components and features of immune response in abdominal aortic aneurysms. Ann N Y Acad Sci, 1996,800:175~185
  • 5Freestone T, Turner R J, Coady A, et al. Inflammation and matrix metalloproteinases in the enlarging abdominal aortic aneurysm. Arterioscler Thromb Vasc Biol, 1995,15:1145~1151
  • 6Galis Z S, Sukhova G K, Lark M W, et al. Increased expression of matrix metalloproteinases and matrix degrading activity in vulnerable regions of human atherodclerotic plaques. J Clin Invest, 1994,94:2493~2503
  • 7Schroeder A P, Falk E. Pathophysiology and inflammatory aspects of plaque rupture. Cardiol Clin, 1996,14:211~220
  • 8Pearce W H, Koch A E. Cellular components and features of immune response in abdominal aortic aneurysms. Ann N Y Acad Sci, 1996,800:175~185
  • 9Bruno G, Todor R, Lewis I, et al. Vascular extracellular matrix remodeling in cerebral aneurysms. J Neurosurg, 1998,89:431~440
  • 10Pyo R, Lee J K, Shipley J M, et al. Targeted gene disruption of matrix metalloproteinase-9 (gelatinase B) suppresses development of experimental abdominal aortic aneurysms. J Clin Invest, 2000,105:1641~1649

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同被引文献146

引证文献11

二级引证文献33

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