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通过多普勒超声心动图测量心室负荷和舒张对犬二尖瓣血流速度剖面的联合影响。

Combined influence of ventricular loading and relaxation on the transmitral flow velocity profile in dogs measured by Doppler echocardiography.

作者信息

Choong C Y, Abascal V M, Thomas J D, Guerrero J L, McGlew S, Weyman A E

机构信息

Department of Medicine, Massachusetts General Hospital, Boston 02114.

出版信息

Circulation. 1988 Sep;78(3):672-83. doi: 10.1161/01.cir.78.3.672.

DOI:10.1161/01.cir.78.3.672
PMID:3409503
Abstract

The relation of the Doppler transmitral flow velocity profile to left ventricular loading conditions and diastolic properties remains poorly described. We studied seven adult mongrel dogs with an open-chest right heart bypass model in which left atrial pressure, representing preload, was varied by controlling blood flow into the pulmonary artery and left ventricular systolic pressure, representing afterload, was controlled independently by pumping blood into or from the femoral arteries. Heart rate was kept constant by crushing the sinus node and pacing the right atrium. Mitral inflow velocity profiles were measured by pulsed-wave Doppler echocardiography at multiple left atrial and left ventricular systolic pressures. In individual dogs, the peak E-wave velocity increased linearly with increasing left atrial V-wave pressure at constant left ventricular systolic pressure and decreased with increasing left ventricular systolic pressure at constant left atrial pressure. Stepwise multiple linear regression analysis of data pooled from all experimental stages in all dogs identified left atrial V-wave pressure, the time constant of relaxation (TL), and left ventricular systolic pressure, in order of decreasing significance, as predictors of the peak E-wave velocity (n = 82, multiple r = 0.87, p less than 0.0001). Multivariate analysis with the same three factors in individual dogs yielded higher r values (mean r = 0.89; range, 0.85-0.97), suggesting the presence of important interdog differences that were not accounted for by these three factors alone. When the values of codeterminant hemodynamic factors were kept within narrower limits, correlations between peak E-wave velocity and left atrial V-wave pressure (n = 35, multiple r = 0.83, p less than 0.0001), TL (n = 76, multiple r = -0.54, p less than 0.0001) and left ventricular systolic pressure (n = 20, multiple r = -0.59, p less than 0.005) improved substantially. In the pooled data, the relation of the peak E-wave velocity to left atrial V-wave pressure was shifted downward by an increase in TL (reduced relaxation rate), and the relation of the peak E-wave velocity to TL was shifted upward by an increase in left atrial V-wave pressure. Multivariate analysis also selected left atrial V-wave pressure and TL as the two most significant correlates of the velocity-time integral and deceleration rate of the E wave.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

多普勒经二尖瓣血流速度剖面图与左心室负荷状况及舒张特性之间的关系仍未得到充分描述。我们研究了7只成年杂种犬,采用开胸右心旁路模型,通过控制进入肺动脉的血流量来改变代表前负荷的左心房压力,通过向股动脉内泵血或从股动脉抽血来独立控制代表后负荷的左心室收缩压。通过挤压窦房结并起搏右心房使心率保持恒定。在多个左心房和左心室收缩压水平下,用脉冲波多普勒超声心动图测量二尖瓣流入速度剖面图。在个体犬中,在左心室收缩压恒定的情况下,E波峰值速度随左心房V波压力升高呈线性增加;在左心房压力恒定的情况下,E波峰值速度随左心室收缩压升高而降低。对所有犬所有实验阶段汇总的数据进行逐步多元线性回归分析,确定左心房V波压力、舒张时间常数(TL)和左心室收缩压,按显著性递减顺序,作为E波峰值速度的预测因子(n = 82,复相关系数r = 0.87,p < 0.0001)。对个体犬用相同的三个因素进行多变量分析得到更高的r值(平均r = 0.89;范围0.85 - 0.97),表明存在重要的个体间差异,仅这三个因素无法解释这些差异。当共同决定的血流动力学因素的值保持在更窄范围内时,E波峰值速度与左心房V波压力(n = 35,复相关系数r = 0.83,p < 0.0001)、TL(n = 76,复相关系数r = -0.54,p < 0.0001)和左心室收缩压(n = 20,复相关系数r = -0.59,p < 0.005)之间的相关性显著改善。在汇总数据中,TL增加(舒张速率降低)使E波峰值速度与左心房V波压力的关系向下偏移,左心房V波压力增加使E波峰值速度与TL的关系向上偏移。多变量分析还选择左心房V波压力和TL作为E波速度 - 时间积分及减速速率的两个最显著相关因素。(摘要截断于400字)

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