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Fused oblique incidence reflectometry and confocal fluorescencemicroscopy

机译:熔融斜入射反射法和共聚焦荧光 r n显微镜

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Confocal microendoscopy provides real-time high resolution cellular level images via a minimally invasive procedure, but relies on exogenous fluorophores, has a relatively limited penetration depth (100 um) and field of view (700 um), and produces a high rate of detailed information to the user. A new catheter based multi-modal system has been designed that combines confocal imaging and oblique incidence reflectometry (OIR), which is a non-invasive method capable of rapidly extracting tissue absorption, u_a, and reduced scattering, u'_s, spectra from tissue. The system builds on previous developments of a custom slit-scan multi-spectral confocal microendoscope and is designed to rapidly switch between diffuse spectroscopy and confocal fluorescence imaging modes of operation. An experimental proof-of-principle catheter has been developed that consists of a fiber bundle for traditional confocal fluorescence imaging and a single OIR source fiber which is manually redirected at +/- 26 degrees. Diffusely scattered light from each orientation of the source fiber is collected via the fiber bundle, with a frame of data representing spectra collected at a range of distances from the OIR source point. Initial results with intralipid phantoms show good agreement to published data over the 550-650 nm spectral range. We successfully imaged and measured the optical properties of rodent cardiac muscle.
机译:共聚焦显微内窥镜通过微创程序提供实时的高分辨率细胞水平图像,但依赖于外源荧光团,具有相对有限的穿透深度(100 um)和视场(700 um),并且产生大量的详细信息给用户。已设计出一种基于导管的新型多模态系统,该系统结合了共聚焦成像和斜入射反射法(OIR),该方法是一种非侵入性方法,能够快速提取组织吸收u_a并减少组织的散射u's光谱。该系统建立在定制缝隙扫描多光谱共聚焦微内窥镜的先前开发基础之上,旨在在扩散光谱和共聚焦荧光成像操作模式之间快速切换。已开发出一种实验性的原理证明导管,该导管由用于传统共聚焦荧光成像的纤维束和单根OIR光源纤维组成,该光纤可手动以+/- 26度重定向。通过纤维束收集来自源光纤每个方向的漫散射光,其中一帧数据表示在距OIR源点一定距离范围内收集的光谱。脂质内体模的初步结果表明与550-650 nm光谱范围内的已发表数据吻合良好。我们成功地成像并测量了啮齿动物心肌的光学特性。

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