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Influence on blood flow under deposited plaque size and interval in local curved vessel

机译:沉积斑块尺寸下血流对局部弯曲血管的影响

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Hemodynamic factors and biomechanical forces play key roles in atherogenesis, the new plaque formation and development. In this paper, an assumed curved vessel model existing local small plaques is introduced to analyze blood flow and vessel wall properties with fluid-structure interaction under physiological pulsatile flow condition. Through the numerical simulation, the models with different plaque size (height) and interval are calculated. The results show preliminarily but clearly that the reversed flow region worsens and the peak wall shear stress rises as the interval of plaques increases from 1.0 mm to 2.0 mm for the same height of plaques, and the influences of plaque height and interval on the reversed flow and the peak wall shear stress are similar. The low and oscillatory wall shear stresses are found in each model at the upstream and downstream of plaque region. This research may contribute to better understanding new plaque formation and further development.
机译:血流动力学因素和生物力学力量在肌动粥中发挥关键作用,新的斑块形成和发育。在本文中,引入了假设的弯曲血管模型现有的局部小斑块,以分析​​生理脉动流动条件下的流体结构相互作用的血流和血管壁性能。通过数值模拟,计算具有不同斑块尺寸(高度)和间隔的模型。结果初步显示,但显然,随着斑块的间隔从1.0mm到2.0mm的斑块的相同高度增加,峰壁剪切应力升高,峰值壁剪切应力升高,以及斑块高度和间隔对倒流的影响并且峰壁剪切应力是相似的。在斑块区域的上游和下游的每个模型中发现了低和振荡壁剪切应力。该研究可能有助于更好地了解新的牌匾形成和进一步的发展。

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