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首页> 外文期刊>Neuron >Supraresolution imaging in brain slices using stimulated-emission depletion two-photon laser scanning microscopy.
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Supraresolution imaging in brain slices using stimulated-emission depletion two-photon laser scanning microscopy.

机译:超高分辨率成像在脑切片中使用激发发射耗尽两光子激光扫描显微镜。

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Two-photon laser scanning microscopy (2PLSM) has allowed unprecedented fluorescence imaging of neuronal structure and function within neural tissue. However, the resolution of this approach is poor compared to that of conventional confocal microscopy. Here, we demonstrate supraresolution 2PLSM within brain slices. Imaging beyond the diffraction limit is accomplished by using near-infrared (NIR) lasers for both pulsed two-photon excitation and continuous wave stimulated emission depletion (STED). Furthermore, we demonstrate that Alexa Fluor 594, a bright fluorophore commonly used for both live cell and fixed tissue fluorescence imaging, is suitable for STED 2PLSM. STED 2PLSM supraresolution microscopy achieves approximately 3-fold improvement in resolution in the radial direction over conventional 2PLSM, revealing greater detail in the structure of dendritic spines located approximately 100 microns below the surface of brain slices. Further improvements in resolution are theoretically achievable, suggesting that STED 2PLSM will permit nanoscale imaging of neuronal structures located in relatively intact brain tissue.
机译:双光子激光扫描显微镜(2PLSM)使得神经组织内神经元结构和功能的荧光成像前所未有。但是,与常规共聚焦显微镜相比,该方法的分辨率较差。在这里,我们证明了脑切片内超分辨率2PLSM。通过使用近红外(NIR)激光器进行脉冲双光子激发和连续波激发的发射损耗(STED),可以实现超出衍射极限的成像。此外,我们证明Alexa Fluor 594(一种常用于活细胞和固定组织荧光成像的明亮荧光团)适用于STED 2PLSM。与传统的2PLSM相比,STED 2PLSM超分辨率显微镜在径向方向上的分辨率提高了约3倍,从而揭示了位于脑切片表面下方约100微米处的树突棘结构的更多细节。从理论上讲,分辨率的进一步提高是可以实现的,这表明STED 2PLSM可以对位于相对完整的大脑组织中的神经元结构进行纳米级成像。

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