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Dual modality fluorescence confocal and spectral-domain optical coherence tomography microendoscope

机译:双模态荧光共聚焦和光谱域光学相干断层扫描显微内窥镜

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摘要

Optical biopsy facilitates in vivo disease diagnoses by providing a real-time in situ view of tissue in a clinical setting. Fluorescence confocal microendoscopy and optical coherence tomography (OCT) are two methods that have demonstrated significant potential in this context. These techniques provide complementary viewpoints. The high resolution and contrast associated with confocal systems allow en face visualization of sub-cellular details and cellular organization within a thin layer of biological tissue. OCT provides cross-sectional images showing the tissue micro-architecture to a depth beyond the reach of confocal systems. We present a novel design for a bench-top imaging system that incorporates both confocal and OCT modalities in the same optical train allowing the potential for rapid switching between the two imaging techniques. Preliminary results using simple phantoms show that it is possible to realize both confocal microendoscopy and OCT through a fiber bundle based imaging system.
机译:光学活检通过在临床环境中提供组织的实时原位视图来促进体内疾病诊断。荧光共聚焦显微内窥镜检查和光学相干断层扫描(OCT)是在这种情况下显示出巨大潜力的两种方法。这些技术提供了互补的观点。与共聚焦系统相关联的高分辨率和对比度允许正面观察生物组织薄层内的亚细胞细节和细胞组织。 OCT提供的横截面图像显示了组织微架构的深度超出了共聚焦系统的范围。我们提出了一种台式成像系统的新颖设计,该系统在同一个光学系统中结合了共焦和OCT模式,从而有可能在两种成像技术之间进行快速切换。使用简单体模的初步结果表明,可以通过基于纤维束的成像系统实现共聚焦显微内窥镜检查和OCT。

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