Conventional echocardiography—basic principles

A. Hagendorff
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Abstract

Echocardiography is an imaging technique that enables accurate assessment of cardiac structures and cardiac function. Conventional echocardiography involves different modalities—especially the M-mode, the 2D, and colour Doppler, as well as the pulsed-wave and continuous wave Doppler. The M-mode illustrates the reflections of a single sound beam plotted against time. 2D echocardiography enables the documentation of views, which represent characteristic sectional planes of the moving heart during one heart cycle. Colour Doppler echocardiography adds the information of blood flow to the 2D cineloop. Pulsed-wave Doppler is the acquisition of a local blood flow spectrum of a defined region represented by the dimension of the sample volume, whereas continuous wave Doppler displays the blood flow spectrum of all measured blood flow velocities along a straight line sound beam from its beginning to the end. The handling of the transducer has to be target-oriented, stable with respect to the imaging targets, and coordinated with respect to angle differences between the defined views to use all these modalities correctly to get optimal image quality of the cineloops and spectra. Thus, the focus of this chapter will be a mainly practically oriented description of scanning technique in transthoracic and transoesophageal echocardiography.
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常规超声心动图-基本原理
超声心动图是一种能够准确评估心脏结构和心脏功能的成像技术。传统的超声心动图包括不同的模式-特别是m模式,2D和彩色多普勒,以及脉冲波和连续波多普勒。m模式表示单个声束随时间的反射。二维超声心动图能够记录视图,它代表了一个心脏周期中运动心脏的特征切面。彩色多普勒超声心动图将血流信息添加到二维循环中。脉冲波多普勒采集的是由样本量的尺寸表示的限定区域的局部血流频谱,而连续波多普勒显示的是沿着一条直线声束从开始到结束的所有测量到的血流速度的血流频谱。换能器的处理必须以目标为导向,相对于成像目标稳定,并与定义视图之间的角度差异协调,以正确使用所有这些模态,以获得最佳的影带和光谱图像质量。因此,本章的重点将主要是对经胸和经食管超声心动图扫描技术的实际描述。
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