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OSCILLATORY BLOOD FLOW IN A DEFORMABLE HUMAN AORTIC ARCH

机译:在可变形的人主动脉弓中振荡血液流动

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The aorta is the largest artery in humans, stemming from the left ventricle of the heart and stretching down to the abdomen. It is responsible for distributing oxygenated blood to the rest of the body during each cardiac cycle. The pulsatile blood flow is complex in nature and has been previously modeled computationally in an effort to understand its effect on cardiovascular diseases and medical device design interaction [4,8-9]. However, the majority of these models either treat the vessel wall as rigid or have significantly simplified geometries, which from a physiological perspective are not true of large vessels such as the aorta. Here, the complex mechanical interaction between pulsatile blood flow and wall dynamics in the aortic arch is investigated using geometry adopted directly from CT images.
机译:主动脉是人类中最大的动脉,源于心脏的左心室并伸展到腹部。在每个心脏周期期间,它负责将含氧血液分配到身体的其余部分。脉动血流本质上是复杂的,并且先前已经在计算上进行了建模,以了解其对心血管疾病和医疗器械设计相互作用的影响[4,8-9]。然而,这些模型的大多数要么将血管壁视为刚性或具有显着简化的几何形状,其从生理角度来看,来自诸如主动脉的大容器不是真的。这里,使用直接从CT图像采用的几何来研究主动脉弓中脉动血流和壁动力学之间的复杂机械相互作用。

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