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Nonlinear optical endomicroscopy for label-free functional histology in vivo

机译:非线性光学内窥镜检查用于体内无标记的功能组织学

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摘要

This manuscript reports on the first two-photon, label-free, metabolic imaging of biological tissues in vivo at histological resolution on an extremely compact, fiber-optic endomicroscopy platform. This system provides new opportunities for performing non-invasive and functional histological imaging of internal organs in vivo, in situ and in real time. As a routine clinical procedure, traditional histology has made significant impacts on medicine. However, the procedure is invasive and time consuming, suffers random sampling errors, and cannot provide in vivo functional information. The technology reported here features an extremely compact and flexible fiber-optic probe ~2 mm in diameter, enabling direct access to internal organs. Unprecedented two-photon imaging quality comparable to a large bench-top laser scanning microscope was achieved through technological innovations in double-clad fiber optics and miniature objective lenses (among many others). In addition to real-time label-free visualization of biological tissues in situ with subcellular histological detail, we demonstrated for the first time in vivo two-photon endomicroscopic metabolic imaging on a functioning mouse kidney model. Such breakthroughs in nonlinear endoscopic imaging capability present numerous promising opportunities for paradigm-shifting applications in both clinical diagnosis and basic research.
机译:该手稿报道了在极为紧凑的光纤内窥镜平台上以组织学分辨率进行的体内生物组织的首次双光子无标记代谢成像。该系统为体内,原位和实时进行内部器官的非侵入性和功能性组织学成像提供了新的机会。作为常规的临床程序,传统的组织学对医学产生了重大影响。然而,该过程是侵入性的且耗时的,遭受随机采样误差,并且不能提供体内功能信息。此处报道的技术具有直径约2μmm的极其紧凑和灵活的光纤探头,可直接进入内部器官。通过双包层光纤和微型物镜(以及许多其他产品)的技术创新,实现了前所未有的双光子成像质量,可媲美大型台式激光扫描显微镜。除了具有亚细胞组织学细节的原位生物组织的实时无标签可视化之外,我们还首次在功能正常的小鼠肾脏模型上进行了体内双光子内镜代谢成像。非线性内窥镜成像功能的此类突破为临床诊断和基础研究中的范式转换应用提供了许多有希望的机会。

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