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Risk of Rupture Analysis for Advanced Level of AAA Under Combined Physiological And Physical Conditions

机译:组合生理和物理条件下AAA先进水平破裂分析风险

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摘要

The risk of rupture for advanced level of aneurysm is very much investigated by medical practitioners and researchers. Numerical modelers have also been contributing to the prediction of this rupture. In this study, the effect of various physiological and physical conditions to the increased of the risk rupture is investigated. This study uses simplified model of aneurysm based on actual shape for the advanced level of aneurysm. Three-dimensional model was used and various flow situations representing various physical conditions were evaluated. Both normal blood pressure (NBP) and high blood pressure (HBP) effect were studied in this case. This study shows that a person with advanced level of aneurysm is observed to have vortex formation as the flow reaches late systole, in the distal region under both resting and exercise conditions. This phenomenon will increase the risk of rupture due to the high fluctuation of wall shear stress in this area. Lower risk of rupture is also observed in the proximal area with the presence of weak vortex. The results also show that high blood pressure under exercise conditions exhibits approximately double the risk for rupture as compared to normal blood pressure under resting condition.
机译:医生和研究人员非常调查动脉瘤的先进水平破裂的风险。数值建模者也有助于预测这种破裂。在这项研究中,研究了各种生理和物理条件对风险破裂增加的影响。本研究采用基于实际形状的动脉瘤的简化模型进行动脉瘤的先进水平。使用三维模型,评估了代表各种物理条件的各种流动情况。在这种情况下,研究了正常血压(NBP)和高血压(HBP)效应。本研究表明,观察到具有高级动脉瘤水平的人以涡旋形成随着流动达到后期的速度,在休息和运动条件下的远端区域。这种现象将增加由于该区域的墙面剪切应力的高波动而导致破裂的风险。在存在弱涡旋的近端区域也观察到较低的破裂风险。结果还表明,与静态条件下的正常血压相比,运动条件下的高血压表现出大约是破裂风险。

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