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High-contrast photoacoustic imaging through scattering media using correlation detection of adaptive time window

机译:通过使用自适应时间窗口的相关检测,通过散射介质高对比光声成像

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Photoacoustic imaging has the advantages of high contrast and deep imaging depth. However, with the increasing of imaging depth, the signal-to-noise ratio (SNR) of the detected signal decreases, due to the light scattering that seriously affects the recovery image quality. In this paper, we experimentally demonstrated that higher contrast photoacoustic imaging was achieved using photoacoustic wavefront shaping technology in the presence of light scattering and low SNR signals. The imaging contrast is improved from 1.51 to 5.30. More importantly, we propose a dynamic time window method for the photoacoustic signal extraction algorithm, named correlation detection of adaptive time window, which further improves the contrast of photoacoustic imaging to 9.57. Our method effectively improves the contrast of photoacoustic imaging through scattering media.
机译:光声成像具有高对比度和深度深度的优点。然而,随着成像深度的增加,由于严重影响恢复图像质量的光散射,检测信号的信噪比(SNR)减小。在本文中,我们实验证明了在光散射和低SNR信号存在下使用光声波前塑造技术实现更高的造影光声成像。成像对比度从1.51到5.30提高。更重要的是,我们提出了一种用于光声信号提取算法的动态时间窗口方法,命名的自适应时间窗口相关检测,这进一步改善了光声成像到9.57的对比度。我们的方法通过散射介质有效地改善了光声成像的对比度。

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