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Ail-optically integrated multimodality imaging system: combined photoacoustic microscopy, optical coherence tomography, and fluorescence imaging

机译:AIL光学集成的多模成像系统:组合光声显微镜,光学相干断层扫描和荧光成像

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We have developed a multimodality imaging system by optically integrating all-optical photoacoustic microscopy (AOPAM), optical coherence tomography (OCT) and fluorescence microscopy (FLM) to provide complementary information including optical absorption, optical back-scattering and fluorescence contrast of biological tissue. By sharing the same low-coherence Michelson interferometer, AOPAM and OCT could be organically optically combined to obtain the absorption and scattering information of the biological tissues. Also, owing to using the same laser source and objective lens, intrinsically registered photoacoustic and fluorescence signals are obtained to present the radiative and nonradiative transition process of absorption. Simultaneously photoacoustic angiography, tissue structure and fluorescence molecular in vivo images of mouse ear were acquired to demonstrate the capabilities of the optically integrated trimodality imaging system, which can present more information to study tumor angiogenesis, vasculature, anatomical structure and microenvironments in vivo.
机译:通过光学积分全光学光声显微镜(AOPAM),光学相干断层扫描(OCT)和荧光显微镜(FLM)来开发了多模成像系统,以提供包括光学吸收,光学背散射和生物组织的荧光对比的互补信息。通过共享相同的低相干迈克尔逊干涉仪,AOPAM和OCT可以是有机光学组合的,以获得生物组织的吸收和散射信息。而且,由于使用相同的激光源和物镜,因此获得本质上登记的光声和荧光信号以呈现吸收的辐射和非辐射过渡过程。相同的光声血管造影,组织结构和荧光分子在小鼠耳的体内图像中进行了展示了光学集成的三极性成像系统的能力,其可以提供更多信息,以研究肿瘤血管生成,血管系统,解剖结构和微环境。

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