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Laser-scanning photoacoustic microscopy with ultrasonic phased array transducer

机译:超声相控阵换能器的激光扫描光声显微镜

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摘要

In this paper, we report our latest progress on proving the concept that ultrasonic phased array can improve the detection sensitivity and field of view (FOV) in laser-scanning photoacoustic microscopy (LS-PAM). A LS-PAM system with a one-dimensional (1D) ultrasonic phased array was built for the experiments. The 1D phased array transducer consists of 64 active elements with an overall active dimension of 3.2 mm × 2 mm. The system was tested on imaging phantom and mouse ear in vivo. Experiments showed a 15 dB increase of the signal-to-noise ratio (SNR) when beamforming was employed compared to the images acquired with each single element. The experimental results demonstrated that ultrasonic phased array can be a better candidate for LS-PAM in high sensitivity applications like ophthalmic imaging.
机译:在本文中,我们报告了我们在证明超声相控阵可以提高激光扫描光声显微镜(LS-PAM)的检测灵敏度和视野(FOV)的概念方面的最新进展。为实验建立了具有一维(1D)超声相控阵的LS-PAM系统。一维相控阵换能器由64个有源元件组成,总有源尺寸为3.2 mm×2 mm。该系统已在体内对幻像和小鼠耳朵成像进行了测试。实验表明,与使用单个元素获取的图像相比,使用波束成形时,信噪比(SNR)提高了15 dB。实验结果表明,在诸如眼科成像之类的高灵敏度应用中,超声相控阵可以更好地用于LS-PAM。

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