首页> 外文会议>Photons Plus Ultrasound: Imaging and Sensing 2006; Progress in Biomedical Optics and Imaging; vol.7, no.9 >Virtual-detector synthetic aperture focusing technique with application in in-vivo photoacoustic microscopy
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Virtual-detector synthetic aperture focusing technique with application in in-vivo photoacoustic microscopy

机译:虚拟探测器合成孔径聚焦技术及其在体内光声显微镜中的应用

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In this study, we introduce a synthetic aperture focusing technique which employs a virtual detector concept, combined with coherence weighting, to extend the depth of focus for an in-vivo photoacoustic microscopy system. This technique treats the transducer's focal point as a virtual point detector of photoacoustic signals, delays adjacent scan lines relative to the virtual detector, and then sums the delayed signals to achieve focusing in the out-of-focus region. In addition, a coherence factor among the delayed signals for each synthesized imaging point is used as a weighting factor to further improve the focusing quality. Images of an Intralipid phantom containing a carbon fiber show how this technique improves the -6 dB lateral resolution from 49-379 μm to 46-53 μm and increases the SNR by 0-29 dB, depending on the distance from the ultrasonic focal point. In vivo experiments show that this technique also provides a clearer tumor-associated angiogenesis in the mouse's scalp. The extended depth of focus for the photoacoustic microscopy system enables 3D reconstruction of the vascular network for the study of tumor angiogenesis.
机译:在这项研究中,我们介绍一种合成孔径聚焦技术,该技术采用虚拟检测器概念并结合相干权重,以扩展体内光声显微镜系统的聚焦深度。该技术将换能器的焦点视为光声信号的虚拟点检测器,相对于虚拟检测器延迟相邻扫描线,然后将延迟后的信号求和,以实现在离焦区域的聚焦。另外,每个合成成像点的延迟信号之间的相干因子被用作加权因子,以进一步提高聚焦质量。包含碳纤维的脂质内体模的图像显示了该技术如何根据距离超声焦点的距离将-6 dB的横向分辨率从49-379μm提高到46-53μm,并提高SNR 0-29 dB。体内实验表明,该技术还可以在小鼠头皮中提供更清晰的肿瘤相关血管生成。光声显微镜系统的扩展焦深可实现血管网络的3D重建,用于研究肿瘤血管生成。

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