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A Simple Model for Nonlinear Confocal Ultrasonic Beams
作者姓名:章东  周琳  司立胜  龚秀芬
作者单位:Institute of Acoustics, Key Lab of Modern Acoustics, Nanjing University, Nanjing 210093
基金项目:Supported by the National Natural Science Foundation of China under Grant Nos 10204014 and 10474044.
摘    要:A confocally and coaxially arranged pair of focused transmitter and receiver represents one of the best geometries for medical ultrasonic imaging and non-invasive detection. We develop a simple theoretical model for describing the nonlinear propagation of a confocal ultrasonic beam in biological tissues. On the basis of the parabolic approximation and quasi-linear approximation, the nonlinear Khokhlov-Zabolotskaya-Kuznetsov (KZK) equation is solved by using the angular spectrum approach. Gaussian superposition technique is applied to simplify the solution, and an analytical solution for the second harmonics in the confocal ultrasonic beam is presented. Measurements are performed to examine the validity of the theoretical model. This model provides a preliminary model for acoustic nonlinear microscopy.

关 键 词:非线性共焦  超声波  单模型  横梁
修稿时间:2006-10-13

A Simple Model for Nonlinear Confocal Ultrasonic Beams
ZHANG Dong,ZHOU Lin,SI Li-Sheng,GONG Xiu-Fen.A Simple Model for Nonlinear Confocal Ultrasonic Beams[J].Chinese Physics Letters,2007,24(1):131-134.
Authors:ZHANG Dong  ZHOU Lin  SI Li-Sheng  GONG Xiu-Fen
Institution:Institute of Acoustics, Key Lab of Modern Acoustics, Nanjing University, Nanjing 210093
Abstract:A confocally and coaxially arranged pair of focused transmitter and receiver represents one of the best geometries for medical ultrasonic imaging and non-invasive detection. We develop a simple theoretical model for describing the nonlinear propagation of a confocal ultrasonic beam in biological tissues. On the basis of the parabolic approximation and quasi-linear approximation, the nonlinear Khokhlov--Zabolotskaya--Kuznetsov (KZK) equation is solved by using the angular spectrum approach. Gaussian superposition technique is applied to simplify the solution, and an analytical solution for the second harmonics in the confocal ultrasonic beam is presented. Measurements are performed to examine the validity of the theoretical model. This model provides a preliminary model for acoustic nonlinear microscopy.
Keywords:43  25  +y  43  80  +p
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