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Optoacoustic imaging with synthetic aperture focusing and coherence weighting

机译:具有合成孔径聚焦和相干加权的光声成像

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摘要

Optoacoustic imaging takes advantage of high optical contrast and low acoustic scattering and has found several biomedical applications. In the common backward mode a laser beam illuminates the image object, and an acoustic transducer located on the same side as the laser beam detects the optoacoustic signal produced by thermoelastic effects. A cross-sectional image is formed by laterally scanning the laser beam and the transducer. Although the laser beam width is generally narrow to provide good lateral resolution, strong optical scattering in tissue broadens the optical illumination pattern and thus degrades the lateral resolution. To solve this problem, a combination of the synthetic aperture focusing technique with coherence weighting is proposed. This method synthesizes a large aperture by summing properly delayed signals received at different positions. The focusing quality is further improved by using the signal coherence as an image quality index, A phantom comprising hair threads in a 1% milk solution was imaged with an optoacoustic imaging system. The results show that the proposed technique improved lateral resolution by 400-800% and the signal-to-noise ratio by 7-23 dB over conventional techniques. (C) 2004 Optical Society of America.
机译:光声成像利用了高光学对比度和低声散射的优势,并发现了几种生物医学应用。在普通后向模式下,激光束照亮图像对象,位于与激光束同一侧的声换能器检测由热弹性效应产生的光声信号。通过横向扫描激光束和换能器形成横截面图像。尽管激光束的宽度通常较窄以提供良好的横向分辨率,但是组织中的强光学散射会加宽光学照明图案,从而降低横向分辨率。为了解决这个问题,提出了合成孔径聚焦技术与相干加权的组合。该方法通过对在不同位置接收的适当延迟的信号求和来合成大孔径。通过使用信号相干性作为图像质量指标,可以进一步提高聚焦质量。用光声成像系统对包含1%牛奶溶液中的发丝的体模进行成像。结果表明,与传统技术相比,所提出的技术将横向分辨率提高了400-800%,信噪比提高了7-23 dB。 (C)2004年美国眼镜学会。

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