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Quantifying the influence of oscillatory flow disturbances on blood flow

机译:量化振荡流动干扰对血流的影响

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Highlights ? Oscillatory flow disturbances influence the period-average of pulsatile blood flow. ? The OKEI is developed to measure this influence via the disturbances’ kinetic energy. ? The OFI is developed to identify direction-reversing (DR) oscillations in the flow. ? The OKEI reveals that DR oscillations are of higher energy states than non-DR (NDR). ? NDR oscillations have greater spatial spread than localised DR oscillations. Abstract Pulsatile blood flow is renowned for inducing localised flow disturbances that are characterised by significant oscillations. These flow disturbances are recognised to have a physiologic significance within the cardiovascular system, particularly with respect to their proatherogenic expression on endothelial cells. Flow disturbances also impart significant influence on the mechanics of cardiovascular flow and are formally shown in the present study to be coupled to the period-average behaviour of a pulsatile flow field, causing it to be misrepresented by its steady-equivalent; which is often used in models of atherogenesis and hence limits their reliability. It is demonstrated that a measure of the localised influence of flow disturbances on the period-average flow can be realised by the relative significance of their kinetic energy, which is quantified by the introduced Oscillatory Kinetic Energy Index (OKEI). A specific measure of direction-reversing oscillations is also developed with the introduction of the Oscillatory Flow Index (OFI), which is an extension of the wall-bound Oscillatory Shear Index (OSI) onto flow and wall spaces. A case study of a human carotid artery is made; wherein pulsatile flow is studied relative to its steady-equivalent state. The introduced indices are demonstrated to collectively identify oscillatory flow disturbances within the flow; quantifying their spatial distribution and influence on the flow field.
机译:强调 ?振动流扰动影响脉动血流的周期平均值。还开发了Okei以通过扰动的动能来衡量这种影响。还开发了OFI以识别流程中的方向逆转(DR)振荡。还OKEI揭示了DR振荡的能量状态高于非博士(NDR)。还NDR振荡具有比本地化的DR振荡更大的空间扩展。摘要脉动血流被着名,用于诱导局部流动障碍,其特征在于显着振荡。这些流动障碍被识别出在心血管系统内具有生理学意义,特别是关于其在内皮细胞上的疗法表达。流动障碍还赋予心血管流动的机制的显着影响,并且在本研究中正式示出,以耦合到脉动流场的周期平均行为,使其通过其稳定的耐畸形;这通常用于αSthergesesis的模型,因此限制了它们的可靠性。结果证明,通过运动能量的相对意义,可以通过引入的振荡动能指数(Okei)来实现对周期平均流量对周期平均流量的局部流动影响的量度。还通过引入振荡流量指数(OFI)来开发方向反转振荡的特定测量,这是壁边振荡剪切指数(OSI)的延伸到流动和壁空间。制造了对人类颈动脉的案例研究;其中相对于其稳定等效的状态研究了脉动流。介绍的指数被证明是集体识别流量内的振荡流动紊乱;量化它们的空间分布和对流场的影响。

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