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首页> 外文期刊>Archives of cardiovascular diseases >Left ventricular performance is closely related to the physical properties of the arterial system: Landmark clinical investigations in the 1970s and 1980s
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Left ventricular performance is closely related to the physical properties of the arterial system: Landmark clinical investigations in the 1970s and 1980s

机译:左心室功能与动脉系统的物理特性密切相关:1970年代和1980年代的标志性临床研究

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摘要

Left ejection fraction (LVEF) - resulting from the difference between end-diastolic volume (EDV) and end-systolic volume (ESV), divided by EDV-is a poor index of left ventricular (LV) systolic performance due to its dependency on load conditions, inotropic state and LV remodelling. The characteristic impedance of the ascending aorta (Zc) integrates factors opposing LV ejection during the early ejection period when arterial wave reflection can be neglected. Zc is related to the pressure wave velocity (C) and the cross-sectional area of the aorta. The aim is to demonstrate that LV performance and geometry are closely related to the physical properties of the arterial system. LV pressure-volume loops were obtained from simultaneous measurements of LV (or aortic) pressure and LV volume. The slope Ees (also called LV end-systolic elastance) of the ESP-ESV relationship was assessed. Aortic diameters, pressure and flow measurements were synchronized to evaluate C, aortic forward and backward pressure waves, the elasticity of the aorta (Ep) and thereby Zc. In contrast to LVEF, LV end-systolic elastance (Ees), which reflects the stiffness of the chamber at maximal myofilament activation, is relatively insensitive to load conditions and may be considered as an index of ventricular chamber contractility. For a given Ees value, the end-systolic pressure (ESP) determines the LV end-systolic volume. Ees is determined by cardiac myocytes contractility and density, and thereby concentric remodelling. A tight correlation between Zc and the degree of LV concentric remodelling was found in hypertensive and in normal subjects. Zc was found to increase throughout the full lifespan and also with hypertension. Both Zc and wave reflections determine aortic input impedance estimated from the aortic pressure-flow relationship. Increased arterial stiffness resulted in increasing C and overlap of forward and backward waves and thereby in greater pulse pressure and ESP and a greater difference between ESP and diastolic pressure. Ees is an accurate index of LV systolic performance. Besides the inotropic state of myofibers, Ees depends on the concentric remodelling and thereby on the characteristic impedance of the aorta.
机译:左射血分数(LVEF)-由舒张末期容积(EDV)和收缩末期容积(ESV)之间的差除以EDV得出的结果是左心室(LV)收缩期性能差的指标,因为它对负荷的依赖性条件,变力状态和左心室重塑。当可以忽略动脉波反射时,升主动脉的特征阻抗(Zc)整合了在早期射血期与LV射血相对的因素。 Zc与压力波速度(C)和主动脉的横截面积有关。目的是证明左室性能和几何形状与动脉系统的物理特性密切相关。 LV压力-容积环是通过同时测量LV(或主动脉)压力和LV容积获得的。评估了ESP-ESV关系的斜率Ees(也称为LV收缩末期弹性)。同步主动脉直径,压力和流量测量,以评估C,主动脉向前和向后的压力波,主动脉的弹性(Ep)以及Zc。与左室射血分数相反,左室收缩末期弹性(Ees)反映了最大的肌丝激活时室的刚度,对负荷情况相对不敏感,可以视为心室收缩性的指标。对于给定的Ees值,收缩末压(ESP)确定左室收缩末期容积。 Ees是由心肌细胞的收缩力和密度决定的,从而决定了同心重塑。在高血压和正常人中,Zc与左心室同心重塑程度之间存在紧密的相关性。发现Zc在整个寿命期间都会增加,并且还会随着高血压而增加。 Zc和波反射都确定根据主动脉压力-流量关系估算的主动脉输入阻抗。动脉僵硬度的增加导致C值增加以及向前和向后的波重叠,从而导致更大的脉压和ESP,以及ESP和舒张压之间的差异更大。 Ees是LV收缩期性能的准确指标。除肌纤维的变质状态外,Ees还取决于同心重塑,进而取决于主动脉的特征阻抗。

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