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A dual-modality optical coherence tomography and fluorescence lifetime imaging microscopy system for simultaneous morphological and biochemical tissue characterization

机译:双模态光学相干断层扫描和荧光寿命成像显微镜系统,用于同时进行形态学和生化组织表征

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摘要

Most pathological conditions elicit changes in the tissue optical response that may be interrogated by one or more optical imaging modalities. Any single modality typically only furnishes an incomplete picture of the tissue optical response, hence an approach that integrates complementary optical imaging modalities is needed for a more comprehensive non-destructive and minimally-invasive tissue characterization. We have developed a dual-modality system, incorporating optical coherence tomography (OCT) and fluorescence lifetime imaging microscopy (FLIM), that is capable of simultaneously characterizing the 3-D tissue morphology and its biochemical composition. The Fourier domain OCT subsystem, at an 830 nm center wavelength, provided high-resolution morphological volumetric tissue images with an axial and lateral resolution of 7.3 and 13.4 µm, respectively. The multispectral FLIM subsystem, based on a direct pulse-recording approach (upon 355 nm laser excitation), provided two-dimensional superficial maps of the tissue autofluorescence intensity and lifetime at three customizable emission bands with 100 µm lateral resolution. Both subsystems share the same excitation/illumination optical path and are simultaneously raster scanned on the sample to generate coregistered OCT volumes and FLIM images. The developed OCT/FLIM system was capable of a maximum A-line rate of 59 KHz for OCT and a pixel rate of up to 30 KHz for FLIM. The dual-modality system was validated with standard fluorophore solutions and subsequently applied to the characterization of two biological tissue types: postmortem human coronary atherosclerotic plaques, and in vivo normal and cancerous hamster cheek pouch epithelial tissue.
机译:大多数病理状况会引起组织光学反应的变化,这种变化可能被一种或多种光学成像方式所询问。任何单一形式通常都只能提供不完整的组织光学反应图,因此需要一种将互补光学成像形式整合在一起的方法,以实现更全面的无损和微创组织表征。我们已经开发了一种双模态系统,该系统结合了光学相干断层扫描(OCT)和荧光寿命成像显微镜(FLIM),能够同时表征3-D组织形态及其生化成分。中心波长为830 nm的Fourier域OCT子系统提供了高分辨率的形态学体积组织图像,其轴向和横向分辨率分别为7.3和13.4 µm。基于直接脉冲记录方法(在355 nm激光激发下)的多光谱FLIM子系统在三个可自定义的发射带(横向分辨率为100 µm)上提供了组织自发荧光强度和寿命的二维表面图。两个子系统共享相同的激发/照明光路,并同时在样品上进行光栅扫描,以生成共配准的OCT体积和FLIM图像。开发的OCT / FLIM系统对于OCT的最大A线速率为59 KHz,对于FLIM的像素速率高达30 KHz。该双模式系统已通过标准荧光团溶液验证,随后应用于两种生物组织类型的表征:死后人类冠状动脉粥样硬化斑块以及体内正常和癌性仓鼠脸颊囊上皮组织。

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