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基于探测超声的新型生物组织光声层析成像
引用本文:向良忠,邢达,谷怀民,杨迪武,杨思华,曾吕明.基于探测超声的新型生物组织光声层析成像[J].光子学报,2007,36(7):1307-1311.
作者姓名:向良忠  邢达  谷怀民  杨迪武  杨思华  曾吕明
作者单位:华南师范大学激光生命科学研究所,暨激光生命科学教育部重点实验室,广州,510631
基金项目:国家自然科学基金 , 广东省自然科学基金 , 广东省科技厅科技计划
摘    要:利用一束单频探测超声穿过由脉冲激光照射产生的光声激发区域,使之与光致声场产生相互作用,光声信号将耦合到探测束上,再解调探测超声来重建光吸收区域的图像,可以得到丰富的组织信息.该信息不仅反映了组织中光吸收的特性,也反映了组织的声学特性.实验中,通过旋转超声探测器进行数据采集,并利用滤波反投影算法重建图像,可得到高信噪比的光声层析图像.由于激光的窄光谱线宽,其吸收是特征分子选择性的,所以此方法既是一种无损伤的结构层析成像方法,也可用于组织的功能成像.

关 键 词:光声成像  成像系统  探测超声  滤波反投影
文章编号:1004-4213(2007)07-1307-5
收稿时间:2006-07-13
修稿时间:2006-01-13

Noinvasive Photoacoustic Tomography in Biological Tissue with Ultrasonic Probe Beam
XIANG Liang-zhong,GU Huai-min,XING Da,YANG Di-wu,YANG Si-hua,ZENG Lü-ming.Noinvasive Photoacoustic Tomography in Biological Tissue with Ultrasonic Probe Beam[J].Acta Photonica Sinica,2007,36(7):1307-1311.
Authors:XIANG Liang-zhong  GU Huai-min  XING Da  YANG Di-wu  YANG Si-hua  ZENG Lü-ming
Institution:MOE Key Laboratory of Laser Life Science and Institute of Laser Life Science South China Normal University, Guangzhou 510631, China
Abstract:A noinvasive method for photoacoustic tomography of medical diagnoses by using an ultrasonic probe beam is presented.When a pulse laser irradiates on biological tissues,a plane ultrasonic probe beam passes through the irradiated area,and the ultrasonic probe beam interacts nonlinearly with photoacoustic tomography wave.Abundant information can be taken out from the interaction area by demodulating the probe beam.On one hand,the information can reflect the optical properties of the tissue;on the other hand,it can also reflect acoustical properties of the tissue.In the experimentation,the circular measurement configuration combined with the filtered back projection(FBP) algorithm,very high signal-to-noise ratio tomography images can be obtained.For the laser energy can be absorbed by the identity molecule of the tissues,it will provide a potential non-invasive imaging technique for biomedical diagnosis and functional imaging.
Keywords:Photoacoustic tomography  Imaging system  Ultrasonic probe beam  Filter back-projection
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