Echocardiography for cardiac surgery

S. Mora, Katherine C. Wu
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Abstract

Since 1976, echocardiography (echo) has been used to evaluate cardiac structure and function. Echo uses sound in the high-frequency range (2 to 10 MHz). Frequency ranges between 2 and 5 MHz are typically used for imaging adults, while frequencies of 7.5 to 10 MHz are used for children and specialized adult applications. The transducer contains a piezoelectric crystal that converts electrical to sound energy, producing sound waves that are transmitted in the form of a beam. A complete transthoracic echocardiogram (TTE) consists of a group of interrelated applications including two-dimensional (2D) anatomic imaging, M-mode, and three Doppler techniques: pulsed-wave (PW), continuous-wave (CW), and color-flow (CF) imaging.1–7 In addition, the quantification of cardiac chamber dimensions, areas, and volumes is an important aspect of a complete examination. Using a combination of these ultrasound techniques, one can assess the anatomy and function of the cardiac valves, myocardium, and pericardium.
心脏外科超声心动图
自1976年以来,超声心动图(echo)被用于评估心脏的结构和功能。回声使用的声音在高频范围(2至10兆赫)。2至5 MHz的频率范围通常用于成人成像,而7.5至10 MHz的频率用于儿童和专门的成人应用。换能器包含一个压电晶体,可以将电能转换为声能,产生以光束形式传播的声波。完整的经胸超声心动图(TTE)包括一组相互关联的应用,包括二维(2D)解剖成像、m模式和三种多普勒技术:脉冲波(PW)、连续波(CW)和彩色血流(CF)成像。1-7此外,心室尺寸、面积和体积的定量是完整检查的重要方面。结合使用这些超声技术,可以评估心脏瓣膜、心肌和心包膜的解剖结构和功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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