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使用合成纹影层析成像技术进行超声场表征

Ultrasound field characterization using synthetic schlieren tomography.

作者信息

Pulkkinen Aki, Leskinen Jarkko J, Tiihonen Aimo

机构信息

Department of Applied Physics, University of Eastern Finland, P.O. Box 1627, Kuopio, 70211, Finland.

出版信息

J Acoust Soc Am. 2017 Jun;141(6):4600. doi: 10.1121/1.4986623.

Abstract

Synthetic schlieren imaging, also known as background oriented schlieren imaging, is used to determine the acoustical field of a focused ultrasound transducer operating at 1.01 MHz frequency with peak pressure amplitude of 0.97 MPa. The measurement setup is composed of a commercial off-the-shelf digital single-lens reflex (DSLR) camera with an ordinary objective, a high power light-emitting diode driven in pulsating mode, water tank, ultrasound transducer, rotation stage, and driving electronics. Measurements are performed in tomographic fashion by rotating the ultrasound transducer within the water tank and photographing an imaged target behind the ultrasound field. The photographs are processed with a Horn-Schunck-type algorithm, commonly used in optical flow analysis, in order to determine the deflection of light rays as caused by ultrasound field induced acousto-optic effect. Inverse Radon transform is then used, with the deflection data, to obtain three-dimensional spatial distribution of the pressure field gradient, from which an approximation of the ultrasonic pressure field is computed. The pressure field obtained with synthetic schlieren tomography is then compared to hydrophone measurements mainly qualitatively.

摘要

合成纹影成像,也称为背景导向纹影成像,用于确定工作频率为1.01兆赫兹、峰值压力幅度为0.97兆帕的聚焦超声换能器的声场。测量装置由一台配有普通物镜的商用现成数码单反(DSLR)相机、以脉冲模式驱动的高功率发光二极管、水箱、超声换能器、旋转台和驱动电子设备组成。通过在水箱内旋转超声换能器并拍摄超声场后方的成像目标,以断层扫描方式进行测量。使用光学流分析中常用的Horn-Schunck型算法对照片进行处理,以确定由超声场引起的声光效应导致的光线偏转。然后利用逆拉东变换和偏转数据,获得压力场梯度的三维空间分布,并据此计算超声压力场的近似值。然后主要定性地将合成纹影断层扫描获得的压力场与水听器测量结果进行比较。

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