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Design of efficient, broadband single-element (20-80 MHz) ultrasonic transducers for medical imaging applications

机译:用于医学成像应用的高效宽带单元件(20-80 MHz)超声换能器的设计

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This paper discusses the design, fabrication, and testing of sensitive broadband lithium niobate (LiNbO3) single-element ultrasonic transducers in the 20-80 MHz frequency range. Transducers of varying dimensions were built for an f# range of 2.0-3.1. The desired focal depths were achieved by either casting an acoustic lens on the transducer face or press-focusing the piezoelectric into a spherical curvature. For designs that required electrical impedance matching, a low impedance transmission line coaxial cable was used. All transducers were tested in a pulse-echo arrangement, whereby the center frequency, bandwidth, insertion loss, and focal depth were measured. Several transducers were fabricated with center frequencies in the 20-80 MHz range with the measured -6 dB bandwidths and two-way insertion loss values ranging from 57 to 74% and 9.6 to 21.3 dB, respectively. Both transducer focusing techniques proved successful in producing highly sensitive, high-frequency, single-element, ultrasonic-imaging transducers. In vivo and in vitro ultrasonic backscatter microscope (UBM) images of human eyes were obtained with the 50 MHz transducers. The high sensitivity of these devices could possibly allow for an increase in depth of penetration, higher image signal-to-noise ratio (SNR), and improved image contrast at high frequencies when compared to previously reported results.
机译:本文讨论了在20-80 MHz频率范围内的敏感宽带铌酸锂(LiNbO3)单元素超声换能器的设计,制造和测试。不同尺寸的换能器的f#范围为2.0-3.1。通过将声透镜投射在换能器面上或将压电元件压成球形曲率,可以达到所需的焦深。对于需要电阻抗匹配的设计,使用了低阻抗传输线同轴电缆。所有换能器均以脉冲回波方式进行了测试,从而测量了中心频率,带宽,插入损耗和焦深。制造了几个传感器,其中心频率在20-80 MHz范围内,测得的-6 dB带宽和双向插入损耗值分别在57%至74%和9.6至21.3 dB范围内。两种换能器聚焦技术均被证明可成功生产出高灵敏度,高频,单元件的超声成像换能器。使用50 MHz换能器获得了人眼的体内和体外超声反向散射显微镜(UBM)图像。与先前报道的结果相比,这些设备的高灵敏度可能会增加穿透深度,更高的图像信噪比(SNR)并改善高频下的图像对比度。

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