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Novel wave power analysis linking pressure-flow waves, wave potential, and the forward and backward components of hydraulic power

机译:新颖的波浪功率分析将压力 - 流量波,波势,以及液压动力的前后组件联系起来

摘要

Wave intensity analysis provides detailed insights into factors influencing hemodynamics. However, wave intensity is not a conserved quantity, so it is sensitive to diameter variations and is not distributed among branches of a junction. Moreover, the fundamental relation between waves and hydraulic power is unclear. We, therefore, propose an alternative to wave intensity called "wave power," calculated via incremental changes in pressure and flow (dPdQ) and a novel time-domain separation of hydraulic pressure power and kinetic power into forward and backward wave-related components (ΠP±and ΠQ±). Wave power has several useful properties:1) it is obtained directly from flow measurements, without requiring further calculation of velocity;2) it is a quasi-conserved quantity that may be used to study the relative distribution of waves at junctions; and3) it has the units of power (Watts). We also uncover a simple relationship between wave power and changes in ΠP±and show that wave reflection reduces transmitted power. Absolute values of ΠP±represent wave potential, a recently introduced concept that unifies steady and pulsatile aspects of hemodynamics. We show that wave potential represents the hydraulic energy potential stored in a compliant pressurized vessel, with spatial gradients producing waves that transfer this energy. These techniques and principles are verified numerically and also experimentally with pressure/flow measurements in all branches of a central bifurcation in sheep, under a wide range of hemodynamic conditions. The proposed "wave power analysis," encompassing wave power, wave potential, and wave separation of hydraulic power provides a potent time-domain approach for analyzing hemodynamics.
机译:波强度分析可提供有关影响血液动力学的因素的详细见解。但是,波强度不是守恒量,因此对直径变化敏感,并且不分布在结的分支之间。此外,波浪与水力之间的基本关系还不清楚。因此,我们提出了一种称为“波功率”的波强度替代方法,它是通过压力和流量的增量变化(dPdQ)以及将液压压力和动能新颖地在时域上分离成与前进波和后退波相关的分量来计算的( ΠP±和ΠQ±)。波功率具有几个有用的特性:1)直接从流量测量中获得,不需要进一步计算速度; 2)它是准守恒量,可用于研究交界处波的相对分布; 3)具有功率单位(瓦)。我们还发现了波功率与ΠP±变化之间的简单关系,并表明波反射会降低发射功率。 ΠP±的绝对值表示波势,这是最近引入的概念,它将血液动力学的稳定和搏动方面统一起来。我们表明,波势表示存储在顺应性压力容器中的液压能势,其空间梯度会产生传递该能量的波。这些技术和原理在广泛的血液动力学条件下,在绵羊中央分叉的所有分支中,均通过压力/流量测量进行了数值和实验验证。提出的“波浪力分析”涵盖了波浪力,波浪势和液压力的波浪分离,为分析血液动力学提供了有效的时域方法。

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