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生物组织中的扫描热声层析成像

Scanning thermoacoustic tomography in biological tissue.

作者信息

Ku G, Wang L V

机构信息

Optical Imaging Laboratory, Biomedical Engineering Program, Texas A&M University, College Station 77843-3120, USA.

出版信息

Med Phys. 2000 May;27(5):1195-202. doi: 10.1118/1.598984.

Abstract

Microwave-induced thermoacoustic tomography was explored to image biological tissue. Short microwave pulses irradiated tissue to generate acoustic waves by thermoelastic expansion. The microwave-induced thermoacoustic waves were detected with a focused ultrasonic transducer. Each time-domain signal from the ultrasonic transducer represented a one-dimensional image along the acoustic axis of the ultrasonic transducer similar to an ultrasonic A-scan. Scanning the system perpendicularly to the acoustic axis of the ultrasonic transducer would generate multi-dimensional images. Two-dimensional tomographic images of biological tissue were obtained with 3-GHz microwaves. The axial and lateral resolutions were characterized. The time-domain piezo-electric signal from the ultrasonic transducer in response to the thermoacoustic signal was simulated theoretically, and the theoretical result agreed with the experimental result very well.

摘要

对微波诱导热声层析成像技术用于生物组织成像进行了探索。短微波脉冲照射组织,通过热弹性膨胀产生声波。用聚焦超声换能器检测微波诱导的热声波。超声换能器的每个时域信号都代表沿超声换能器声轴的一维图像,类似于超声A扫描。垂直于超声换能器声轴扫描该系统会生成多维图像。用3GHz微波获得了生物组织的二维断层图像。对轴向和横向分辨率进行了表征。从理论上模拟了超声换能器响应热声信号的时域压电信号,理论结果与实验结果吻合得很好。

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