首页> 外文期刊>AJNR. American journal of neuroradiology >Intracranial aneurysmal pulsatility as a new individual criterion for rupture risk evaluation: Biomechanical and numeric approach (IRRAs Project)
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Intracranial aneurysmal pulsatility as a new individual criterion for rupture risk evaluation: Biomechanical and numeric approach (IRRAs Project)

机译:颅内动脉瘤搏动作为评估破裂风险的新标准:生物力学和数值方法(IRRAs项目)

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BACKGROUND AND PURPOSE: The present study follows an experimental work based on the characterization of the biomechanical behavior of the aneurysmal wall and a numerical study where a significant difference in term of volume variation between ruptured and unruptured aneurysm was observed in a specific case. Our study was designed to highlight by means of numeric simulations the correlation between aneurysm sac pulsatility and the risk of rupture through the mechanical properties of the wall. MATERIALS AND METHODS: In accordance with previous work suggesting a correlation between the risk of rupture and the material properties of cerebral aneurysms, 12 fluid-structure interaction computations were performed on 12 "patient-specific" cases, corresponding to typical shapes and locations of cerebral aneurysms. The variations of the aneurysmal volume during the cardiac cycle (ΔV) are compared by using wall material characteristics of either degraded or nondegraded tissues. RESULTS: Aneurysms were located on 6 different arteries: middle cerebral artery (4), anterior cerebral artery (3), internal carotid artery (1), vertebral artery (1), ophthalmic artery (1), and basilar artery (1). Aneurysms presented different shapes (uniform or multilobulated) and diastolic volumes (from 18 to 392 mm3). The pulsatility (ΔV/V) was significantly larger for a soft aneurysmal material (average of 26%) than for a stiff material (average of 4%). The difference between ΔV, for each condition, was statistically significant: P = .005. CONCLUSIONS: The difference in aneurysmal pulsatility as highlighted in this work might be a relevant patient-specific predictor of aneurysm risk of rupture.
机译:背景与目的:本研究是基于对动脉瘤壁的生物力学行为进行表征的一项实验性工作,以及一项在特定情况下观察到破裂和未破裂的动脉瘤在容积变化方面存在显着差异的数值研究。我们的研究旨在通过数值模拟突出动脉瘤囊搏动性与通过壁的机械特性引起的破裂风险之间的相关性。材料与方法:根据先前的研究表明破裂风险与脑动脉瘤的物质特性之间存在相关性,对12例“患者特定”病例进行了12次流体-结构相互作用计算,对应于典型的大脑形状和位置动脉瘤。通过使用退化或未退化组织的壁材料特性,可以比较心动周期(ΔV)期间的动脉瘤体积变化。结果:动脉瘤位于6条不同的动脉上:大脑中动脉(4),大脑前动脉(3),颈内动脉(1),椎动脉(1),眼动脉(1)和基底动脉(1)。动脉瘤呈现不同的形状(均匀或多叶)和舒张容积(从18到392 mm3)。软性动脉瘤材料(平均26%)的搏动性(ΔV/ V)明显大于硬质材料(平均4%)的脉动性。对于每种情况,ΔV之间的差异具有统计学意义:P = .005。结论:这项工作强调的动脉瘤搏动性差异可能是患者特定的动脉瘤破裂风险预测因子。

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