Van Trigt P, Bauer B J, Olsen C O, Rankin J S, Wechsler A S
Am J Physiol. 1981 Apr;240(4):H664-8. doi: 10.1152/ajpheart.1981.240.4.H664.
Although pulse-transit sonomicrometry is an accurate and sensitive technique for measuring cardiac dimensions, transducer directionality has been a significant problem in certain applications. Construction of an improved ultrasonic dimension transducer is described for the measurement of global cardiac diameters. The transducer consists of a hemispheric piezoelectric crystal with a quarter-wavelength impedance matched faceplate. The in vitro acoustic characteristics of this transducer reveal a substantially improved beam pattern compared to the flat piezoceramic transducer commonly used. This improvement in transducer design greatly facilitates sonic alignment, enhances tracking throughout the cardiac cycle, and allows the measurement of more complex cardiac dimensions.
尽管脉搏传播超声心动图测量法是一种精确且灵敏的测量心脏尺寸的技术,但在某些应用中,换能器的方向性一直是个重大问题。本文描述了一种用于测量整体心脏直径的改进型超声尺寸换能器的构造。该换能器由一个带有四分之一波长阻抗匹配面板的半球形压电晶体组成。与常用的扁平压电陶瓷换能器相比,这种换能器的体外声学特性显示出波束模式有了显著改善。换能器设计的这种改进极大地促进了声波对准,增强了整个心动周期的跟踪效果,并能测量更复杂的心脏尺寸。