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[左心室舒张功能的超声心动图及多普勒超声心动图特征]

[Echocardiographic and Doppler echocardiographic characterization of left ventricular diastolic function].

作者信息

Muscholl M, Dennig K, Kraus F, Rudolph W

机构信息

Klinik für Herz- und Kreislauferkrankungen, Deutsches Herzzentrum München.

出版信息

Herz. 1990 Dec;15(6):377-92.

PMID:2279732
Abstract

For noninvasive assessment of diastolic ventricular function, in addition to echocardiography, more recently, in particular, Doppler echocardiography has been employed. M-mode echocardiogram velocity curves for diameter changes as well as Doppler-echocardiographically registered velocity curves of mitral flow characterize the temporal changes of diastolic flow into the left ventricle. They represent the overall result of factors which influence diastolic filling and are functions of the temporal course of the pressure difference between left atrium and left ventricle. Registration of M-mode and Doppler echocardiograms: For determination of M-mode parameters which should describe left ventricular diastolic function, in addition to the motion of the mitral valve, the left ventricular contours of septum and posterior wall between mitral leaflets and papillary muscles are recorded together with the ECG. For evaluation of the index of atrial emptying, an M-mode registration is obtained from the region of the aortic root. Determination of the Doppler echocardiographic parameters is based on analysis of the blood flow velocity in the region of the mitral valve in the apical four-chamber view with the pulsed Doppler method. Additionally, simultaneous to the Doppler curve, a phonocardiogram is registered or, alternatively, a continuous-wave Doppler registration is obtained which delineates the left ventricular outflow signal and the artefact of mitral valve opening. Parameters for characterization of left ventricular diastolic filling: The first peak of the velocity curve of the diameter change in the M-mode echocardiogram corresponds with the maximal diameter change resulting from early-diastolic filling and the second peak with the maximal diameter change of the left ventricle associated with atrial filling. From this curve as well as the diameter curve relative to time and the mitral valve motion, the times for isovolumetric relaxation as well as the rapid, slow and atrial filling phase which characterize the ventricular filling and the diameter changes of the left ventricle during these time intervals can be derived. The maximal velocity of the diastolic diameter change (PFR) is used to characterize the maximal early diastolic flow. The atrial emptying index characterizes the fraction of filling volume in the first third of diastole with respect to total filling volume of the left ventricle. As an indirect parameter for description of the early-diastolic filling, the steepness of the early-diastolic closure of the anterior mitral leaflet is used. From Doppler velocity profiles of the mitral inflow, early and late diastolic maximal velocities and their velocity time integrals as well as the relationships of these parameters to each other are determined.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

对于舒张期心室功能的无创评估,除了超声心动图外,近年来尤其采用了多普勒超声心动图。M型超声心动图直径变化的速度曲线以及多普勒超声心动图记录的二尖瓣血流速度曲线表征了舒张期流入左心室血流的时间变化。它们代表了影响舒张期充盈的各种因素的总体结果,并且是左心房与左心室之间压差随时间变化过程的函数。M型和多普勒超声心动图的记录:为了确定应描述左心室舒张功能的M型参数,除了二尖瓣的运动外,还需记录二尖瓣叶与乳头肌之间室间隔和后壁的左心室轮廓,并同步记录心电图。为了评估心房排空指数,需从主动脉根部区域获取M型记录。多普勒超声心动图参数的测定基于用脉冲多普勒法分析心尖四腔视图中二尖瓣区域的血流速度。此外,在记录多普勒曲线的同时,记录心音图,或者获取描绘左心室流出信号和二尖瓣开放伪像的连续波多普勒记录。表征左心室舒张期充盈的参数:M型超声心动图中直径变化速度曲线的第一个峰值对应于舒张早期充盈导致的最大直径变化,第二个峰值对应于与心房充盈相关的左心室最大直径变化。从这条曲线以及相对于时间的直径曲线和二尖瓣运动,可以得出等容舒张时间以及表征心室充盈的快速、缓慢和心房充盈期,以及这些时间间隔内左心室的直径变化。舒张期直径变化的最大速度(PFR)用于表征舒张早期的最大血流。心房排空指数表征舒张期前三分之一的充盈量占左心室总充盈量的比例。作为描述舒张早期充盈的间接参数,采用二尖瓣前叶舒张早期关闭的斜率。从二尖瓣流入的多普勒速度剖面图中,确定舒张早期和晚期的最大速度及其速度时间积分,以及这些参数之间的相互关系。(摘要截选至400字)

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