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Resolution-matched reflection mode photoacoustic microscopy and optical coherence tomography dual modality system

机译:分辨率匹配的反射模式光声显微镜和光学相干断层扫描双模态系统

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摘要

Photoacoustic microscopy (PAM) and optical coherence tomography (OCT) are sensitive to optical absorption and scattering characteristics, respectively. As such, the integration of these two modalities in order to combine important complementary information has garnered much attention. Due to the relatively low axial resolution of PAM, PAM and OCT dual modality systems generally have a large resolution gap, especially for reflection mode systems. In this study, based on a wide-band transparent pure-optical ultrasonic detector, we developed a dual modality system (PAM-OCT system) in which PAM has a similar spatial resolution (i.e. several micrometers in both the lateral and axial directions) to OCT. In addition, due to the optical transparency advantage, the integrated system works in reflection mode, which is ideal for in vivo biomedical imaging. We successfully imaged the skin of a mouse hindlimb, which cannot be done by a transmission mode dual modality system. Our work demonstrates this dual modality system has potential in biomedical studies with complementary imaging contrasts.
机译:光声显微镜(PAM)和光学相干断层扫描(OCT)分别对光学吸收和散射特性敏感。因此,这两个模式的整合为了结合重要的互补信息已经赢得了很多关注。由于PAM的轴向分辨率相对较低,PAM和OCT双模态系统通常具有大的分辨率差距,特别是对于反射模式系统。在本研究中,基于宽带透明纯光超声波检测器,我们开发了一种双模态系统(PAM-OCT系统),其中PAM具有类似的空间分辨率(即,横向和轴向的几微米)到十月。另外,由于光学透明度优势,集成系统在反射模式下工作,这是体内生物医学成像的理想选择。我们成功地成功地拍摄了鼠标后肢的皮肤,这不能通过传输模式双模态系统来完成。我们的作品表明,这种双级系统具有互补成像对比的生物医学研究的潜力。

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