Ziegler Laura, O'Brien Robert T
Department of Surgical Sciences, University of Wisconsin-Madison, 2015 Linden Drive, Madison, WI 53706, USA.
Vet Radiol Ultrasound. 2002 Nov-Dec;43(6):501-9. doi: 10.1111/j.1740-8261.2002.tb01040.x.
Harmonic ultrasound is a technique based on the principle of transmitting at frequency f and receiving at frequency 2f (or 1/2f). This technology has become available through the development of wide-bandwidth transducers. Microbubble contrast media produce a large amount of harmonic signal. Contrast harmonic ultrasound provides the opportunity to image patterns of high flow vasculature and overall perfusion. Regions of poor perfusion, including necrosis or infarction, can be identified with contrast harmonic ultrasound. While proportionately lower, tissues also produce harmonic signals. Tissue harmonic ultrasound sequences often improve subjective image quality compared to fundamental ultrasound in echocardiographic and abdominal examinations. This review will discuss the physical principles of harmonic ultrasound signal generation, medical and animal research applications, and an overview of current veterinary experiences.
谐波超声是一种基于以频率f发射并以频率2f(或1/2f)接收的原理的技术。通过宽带换能器的发展,这项技术已经可用。微泡造影剂会产生大量谐波信号。对比谐波超声为高流量血管系统模式和整体灌注成像提供了机会。包括坏死或梗死在内的灌注不良区域可通过对比谐波超声识别。虽然组织产生的谐波信号相对较低,但也会产生。在超声心动图和腹部检查中,与基波超声相比,组织谐波超声序列通常能改善主观图像质量。本综述将讨论谐波超声信号产生的物理原理、医学和动物研究应用以及当前兽医经验的概述。