Photo-induced ultrasound microscopy for photo-acoustic imaging of non-absorbing specimens

Elena Tcarenkova, S. Koho, P. Hänninen
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Abstract

Photo-Acoustic Microscopy (PAM) has raised high interest in in-vivo imaging due to its ability to preserve the near-diffraction limited spatial resolution of optical microscopes, whilst extending the penetration depth to the mm-range. Another advantage of PAM is that it is a label-free technique – any substance that absorbs PAM excitation laser light can be viewed. However, not all sample structures desired to be observed absorb sufficiently to provide contrast for imaging. This work describes a novel imaging method that makes it possible to visualize optically transparent samples that lack intrinsic photo-acoustic contrast, without the addition of contrast agents. A thin, strongly light absorbing layer next to sample is used to generate a strong ultrasonic signal. This signal, when recorded from opposite side, contains ultrasonic transmission information of the sample and thus the method can be used to obtain an ultrasound transmission image on any PAM.
用于非吸收标本的光声成像的光诱导超声显微镜
光声显微镜(PAM)在体内成像方面引起了人们的高度兴趣,因为它能够保持光学显微镜接近衍射极限的空间分辨率,同时将穿透深度扩展到毫米范围。PAM的另一个优点是它是一种无标签技术-任何吸收PAM激发激光的物质都可以被观察到。然而,并非所有需要观察的样品结构都能充分吸收,从而为成像提供对比度。这项工作描述了一种新的成像方法,使其有可能可视化的光学透明样品,缺乏固有的光声对比,而无需添加造影剂。样品旁边有一层薄而强的吸光层,用来产生强的超声波信号。当从对面记录该信号时,该信号包含了样品的超声透射信息,因此该方法可用于在任意PAM上获得超声透射图像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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