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首页> 外文期刊>Computers in Biology and Medicine >The hemodynamic alterations induced by the vascular angular deformation in stent-assisted coiling of bifurcation aneurysms
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The hemodynamic alterations induced by the vascular angular deformation in stent-assisted coiling of bifurcation aneurysms

机译:支架辅助分叉动脉瘤中血管角度变形引起的血流动力学改变

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摘要

The hemodynamic changes induced by stent deployment and vascular remodeling in bifurcation aneurysms were investigated using computational fluid dynamics. The stent deployment reduced the intra-aneurysmal flow activity by decreasing the mean velocity, mean kinetic energy, mean wall shear stress, and mean vorticity. These hemodynamic parameters increased with an increase in the branching angle because of the vessel deformation caused by stent straightening. The maximum wall shear stress and its spatial gradient occurred near the neck of the aneurysm in the stented left daughter vessel, whereas a maximum oscillatory shear index was detected near the neck of the right aneurysm of the right daughter vessel. Theses parameters, which might be related to the recurrence of aneurysms, were also increased by stent-induced vessel deformation.
机译:使用计算流体动力学研究了分叉动脉瘤中支架展开和血管重塑引起的血液动力学变化。支架的部署通过降低平均速度,平均动能,平均壁切应力和平均涡度来降低动脉瘤内的血流活动。由于支架矫直引起的血管变形,这些血流动力学参数随着分支角的增加而增加。最大壁切应力及其空间梯度发生在带支架的左子血管的动脉瘤颈部附近,而最大振荡剪切指数在右子血管的右动脉瘤颈部附近检测到。这些参数,可能与动脉瘤的复发有关,也因支架引起的血管变形而增加。

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