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Remote characterization of biological specimens using all-optical frequency-domain photoacoustic microscopy

机译:使用全光频域光声显微镜对生物样本进行远程表征

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In this paper, we describe a narrow-bandwidth generation and detection of photoacoustic (PA) signals in biological specimens using frequency-domain photoacoustics. An intensity-modulated laser was used for PA generation, and a homodyne Michelson interferometer coupled to a lock-in amplifier was used for optical PA detection. The amplitude and phase of the PA signal were measured at the modulation frequency as the frequency was swept over the bandwidth of interest. A synthesized pulse response was obtained using time-domain reconstruction and the absorber map was estimated using k-space reconstruction methods. Experimental results obtained from 500-μm graphite rods embedded in tissue-mimicking phantoms and slide-mounted tissue samples are presented along with their respective time-domain and time-reversal reconstruction maps.
机译:在本文中,我们描述了使用频域光声技术在生物样本中窄带宽生成和光声(PA)信号检测。使用强度调制激光器产生PA,并使用与锁定放大器耦合的零差迈克尔逊干涉仪进行光学PA检测。当频率扫过目标带宽时,以调制频率测量PA信号的幅度和相位。使用时域重建获得合成的脉冲响应,并使用k空间重建方法估算吸收体图。从嵌入在模仿组织模型中的500μm石墨棒和载玻片固定的组织样本获得的实验结果,以及它们各自的时域和时间反转重建图均被呈现。

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