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Molecular imaging needles: dual-modality optical coherence tomography and fluorescence imaging of labeled antibodies deep in tissue

机译:分子成像针:双模态光学相干断层扫描和组织深层标记抗体的荧光成像

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摘要

Molecular imaging using optical techniques provides insight into disease at the cellular level. In this paper, we report on a novel dualmodality probe capable of performing molecular imaging by combining simultaneous three-dimensional optical coherence tomography (OCT) and two-dimensional fluorescence imaging in a hypodermic needle. The probe, referred to as a molecular imaging (MI) needle, may be inserted tens of millimeters into tissue. The MI needle utilizes double-clad fiber to carry both imaging modalities, and is interfaced to a 1310-nm OCT system and a fluorescence imaging subsystem using an asymmetrical double-clad fiber coupler customized to achieve high fluorescence collection efficiency. We present, to the best of our knowledge, the first dual-modality OCT and fluorescence needle probe with sufficient sensitivity to image fluorescently labeled antibodies. Such probes enable high-resolution molecular imaging deep within tissue.
机译:使用光学技术的分子成像可深入了解细胞水平的疾病。在本文中,我们报告了一种新型双峰探针,该探针能够通过在皮下注射针头中同时进行三维光学相干断层扫描(OCT)和二维荧光成像来进行分子成像。可以将称为分子成像(MI)针的探针插入组织中数十毫米。 MI针利用双包层光纤来承载两种成像方式,并使用定制的非对称双包层光纤耦合器连接到1310 nm OCT系统和荧光成像子系统,以实现高荧光收集效率。据我们所知,我们展示了首个双模式OCT和荧光针探针,该探针对图像荧光标记的抗体具有足够的敏感性。这种探针可以在组织内部进行高分辨率的分子成像。

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