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首页> 外文期刊>Journal of mechanics in medicine and biology >WHICH MORPHOLOGIC AND HEMODYNAMIC CHARACTERISTICS PREDICT INTRACRANIAL FUSIFORM ANEURYSMS RUPTURE? A PATIENT-SPECIFIC COMPUTATIONAL FLUID DYNAMICS STUDY
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WHICH MORPHOLOGIC AND HEMODYNAMIC CHARACTERISTICS PREDICT INTRACRANIAL FUSIFORM ANEURYSMS RUPTURE? A PATIENT-SPECIFIC COMPUTATIONAL FLUID DYNAMICS STUDY

机译:哪种形态学和血流动力学特征预测颅内梭形动脉瘤破裂? 患者特定的计算流体动力学研究

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摘要

To identify hemodynamic and morphological parameters leading to increased risk of intracranial fusiform aneurysms (IFA) rupture using computational fluid dynamics (CFDs). A total of 24 patient-specific fusiform aneurysms models on vertebral artery were reconstructed from 3D angiography images. 11 ruptured cases and 13 unruptured cases were included. Morphologic parameters were measured and CFD parameters were calculated using CFD simulation. The length of the aneurysm is significantly shorter in ruptured group than in unruptured group. The ratio of the width to the length of an aneurysm (WLR) and the ratio of the cross-section area to the length of an aneurysm (ALR) to the averaged cross sectional areas of the inlet and outlet of the parent artery (ALaR) were significantly higher in ruptured group compared with unruptured group. Wall shear stress (WSS) of the aneurysm was normalized to the WSS of the parent artery. Hemodynamically, only low WSS was associated with higher risk of rupture. Ruptured IFAs are shorter, have bigger WLR, ALaR, and lower WSS, compared with unruptured IFAs.
机译:鉴定血液动力学和形态学参数,导致颅内梭形动脉瘤(IFA)使用计算流体动力学(CFD)破裂的风险增加。从3D血管造影图像重建了椎动脉上的24个患者特异性梭形动脉瘤模型。 11破裂案件和13例未突变案件。测量形态学参数,使用CFD模拟计算CFD参数。在破裂组中,动脉瘤的长度明显短于未破裂的组。宽度与动脉瘤(WLR)长度的比率和横截面积与动脉瘤(ALR)的长度的比率与父动脉(ALAR)的入口和出口的平均横截面积的长度与未破后的组相比,破裂的群体显着较高。动脉瘤的壁剪切应力(WSS)被标准化为父动脉的WSS。血流动力学,只有低WSS与更高的破裂风险有关。与未破后的IFAS相比,IFAS破裂较短,具有更大的WLR,ALAR和下部WSS。

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