谐波
光学
谐波
相(物质)
二次谐波成像显微术
信号(编程语言)
声学
基频
超声波传感器
振幅
活塞(光学)
物理
脉搏(音乐)
材料科学
计算机科学
激光器
二次谐波产生
波前
量子力学
电压
探测器
程序设计语言
作者
Qingyu Ma,Dong Zhang,Xiufen Gong,Yong Ma
标识
DOI:10.1088/0031-9155/52/7/008
摘要
Second or higher order harmonic imaging shows significant improvement in image clarity but is degraded by low signal-noise ratio (SNR) compared with fundamental imaging. This paper presents a phase-coded multi-pulse technique to provide the enhancement of SNR for the desired high-order harmonic ultrasonic imaging. In this technique, with N phase-coded pulses excitation, the received Nth harmonic signal is enhanced by 20 log(10)N dB compared with that in the single-pulse mode, whereas the fundamental and other order harmonic components are efficiently suppressed to reduce image confusion. The principle of this technique is theoretically discussed based on the theory of the finite amplitude sound waves, and examined by measurements of the axial and lateral beam profiles as well as the phase shift of the harmonics. In the experimental imaging for two biological tissue specimens, a plane piston source at 2 MHz is used to transmit a sequence of multiple pulses with equidistant phase shift. The second to fifth harmonic images are obtained using this technique with N = 2 to 5, and compared with the images obtained at the fundamental frequency. Results demonstrate that this technique of relying on higher order harmonics seems to provide a better resolution and contrast of ultrasonic images.
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