1)Schneiders JJ, Marquering HA, Antiga L, et al. Intracranial aneurysm neck size overestimation with 3D rotational angiography: The impact on intra-aneurysmal hemodynamics simulated with computational fluid dynamics. AJNR Am J Neuroradiol. 2013; 34: 121-8
|
|
|
2)Geers AJ, Larrabide I, Radaelli AG, et al. Patient-specific computational hemodynamics of intracranial aneurysms from 3D rotational angiography and CT angiography: An in vivo reproduci-bility study. AJNR Am J Neuroradiol. 2011; 32: 581-6
|
|
|
3)Yagi T, Sato A, Shinke M, et al. Experimental insights into flow impingement in cerebral aneurysm by stereoscopic particle image velocimetry: Transition from a laminar regime. J R Soc Interface. 2013; 10: 20121031
|
|
|
4)Ishikawa T, Miyata H, Moroi J, et al. Pathological consideration for hemostatic clot on ruptured cerebral aneurysms. Surg Cereb Stroke (Jpn). 2012; 40: 223-8
|
|
|
5)Cebral JR, Mut F, Weir J, et al. Quantitative characterization of the hemodynamic environment in ruptured and unruptured brain aneurysms. AJNR Am J Neuroradiol. 2011; 32: 145-51
|
|
|
6)Xiang J, Natarajan SK, Tremmel M, et al. Hemodynamic-morphologic discriminants for intracranial aneurysm rupture. Stroke. 2011; 42: 144-52
|
|
|
7)Miura Y, Ishida F, Umeda Y, et al. Low wall shear stress is independently associated with the rupture status of middle cerebral artery aneurysms. Stroke. 2013; 44: 519-21
|
|
|
8)Morita A, Kirino T, Hashi K, et al. The natural course of unruptured cerebral aneurysms in a Japanese cohort. N Engl J Med. 2012; 366: 2474-82
|
|
|
9)Takao H, Murayama Y, Otsuka S, et al. Hemodynamic differences between unruptured and ruptured intracranial aneurysms during observation. Stroke. 2012; 43: 1436-9
|
|
|
10)Omodaka S, Sugiyama S, Inoue T, et al. Local hemodynamics at the rupture point of cerebral aneurysms determined by computational fluid dynamics analysis. Cerebrovasc Dis. 2012; 34: 121-9
|
|
|
11)Fukazawa K, Ishida F, Umeda Y, et al. Using computational fluid dynamics analysis to characterize local hemodynamic features of middle cerebral artery aneurysm rupture points. World Neurosurg. 2013. In press
|
|
|