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Arterial Stiffness Gradient

机译:动脉刚度梯度

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Background: Aortic stiffness is a strong predictor of cardiovascular mortality in various clinical conditions. The aim of this review is to focus on the arterial stiffness gradient, to discuss the integrated role of medium-sized muscular conduit arteries in the regulation of pulsatile pressure and organ perfusion and to provide a rationale for integrating their mechanical properties into risk prediction. Summary: The physiological arterial stiffness gradient results from a higher degree of vascular stiffness as the distance from the heart increases, creating multiple reflective sites and attenuating the pulsatile nature of the forward pressure wave along the arterial tree down to the microcirculation. The stiffness gradient hypothesis simultaneously explains its physiological beneficial effects from both cardiac and peripheral micro-circulatory points of view. The loss or reversal of stiffness gradient leads to the transmission of a highly pulsatile pressure wave into the microcirculation. This suggests that a higher degree of stiffness of medium-sized conduit arteries may play a role in protecting the microcirculation from a highly pulsatile forward pressure wave. Using the ratio of carotid-femoral pulse wave velocity (PWV) to carotid-radial PWV, referred to as PWV ratio, a recent study in a dialysis cohort has shown that the PWV ratio is a better predictor of mortality than the classical carotid-femoral PWV.
机译:背景:主动脉僵硬是各种临床情况下心血管疾病死亡率的重要预测指标。这篇综述的目的是集中于动脉僵硬度梯度,讨论中型肌肉导管在脉动压力和器官灌注调节中的综合作用,并为将其机械性质整合到风险预测中提供理论依据。摘要:随着距心脏距离的增加,较高的血管僵硬程度会导致生理动脉僵硬梯度,从而形成多个反射部位,并削弱沿动脉树直至微循环的正向压力波的脉动性质。刚度梯度假说同时从心脏和外周微循环的角度解释了其生理有益作用。刚度梯度的损失或逆转导致将高度脉动的压力波传输到微循环中。这表明中型导管动脉的较高程度的刚度可能在保护微循环免受高脉动正向压力波的影响中发挥作用。使用颈动脉-股动脉脉搏波速度(PWV)与颈动脉-径向PWV之比,称为PWV比,最近在透析队列中的一项研究表明,PWV比是比经典颈动脉-股骨更好的死亡率预测指标PWV。

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