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A method for the design of ultrasonic devices for scanning acoustic microscopy using impulsive signals

机译:一种用脉冲信号扫描声学显微镜的超声装置的方法

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摘要

Scanning acoustic microscopy (SAM) using impulsive signals is useful for characterization of biological tissues and cells. The operating center frequency of an ultrasonic device strongly depends on the performance characteristics of the device if the measurement is conducted by using impulsive signals. In this paper, a method for the design of ultrasonic devices for SAM using impulsive signals was developed. A new plane-wave model was introduced to calculate frequency characteristics of loss of ultrasonic devices by taking into account the conversion loss at the ultrasonic transducer, the transmission loss at the acoustic anti-reflection coating, and the propagation loss in the couplant. Ultrasonic devices were fabricated with a ZnO ultrasonic transducer using two acoustic lenses with aperture radii of 1.0 mm and 0.5 mm, respectively. The frequencies at which measured losses became minima corresponded to the calculation results by the plane- wave model. This numerical calculation method is useful for designing ultrasonic devices for acoustic microscopy using impulsive signals. (C) 2017 Elsevier B.V. All rights reserved.
机译:使用脉冲信号扫描声学显微镜(SAM)可用于生物组织和细胞的表征。如果通过使用脉冲信号进行测量,则超声波装置的操作中心频率强烈取决于器件的性能特性。在本文中,开发了一种使用脉冲信号设计用于SAM的超声装置的方法。引入了一种新的平面波模型,以通过考虑超声换能器的转换损耗来计算超声波损耗的频率特性,声反射涂层的传输损耗以及耦合剂中的传播损耗。使用两个声透镜的ZnO超声换能器用ZnO超声换能器制造超声装置,分别具有1.0 mm和0.5mm的孔径半径。测量损耗的频率变得最小,对应于平面波模型的计算结果。这种数值计算方法可用于使用脉冲信号设计用于声学显微镜的超声装置。 (c)2017 Elsevier B.v.保留所有权利。

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