Only a few methods permit researchers to study selected regions of the central and peripheral nervous systems with a spatial and time resolution sufficient to image the function of neural structures. Usually, these methods cannot analyse deep-brain regions and a high-resolution method, which could repeatedly probe dynamic processes in any region of the central and peripheral nervous systems, is much needed. Here, we show that fibred fluorescence microscopy-which uses a small-diameter fibre-optic probe to provide real-time images-has the spatial resolution to image various neural structures in the living animal, the consistency needed for a sequential, quantitative evaluation of axonal degeneration/regeneration of a peripheral nerve, and the sensitivity to detect calcium transients on a sub-second timescale. These unique features should prove useful in many physiological studies requiring the in situ functional imaging of tissues in a living animal.

译文

只有少数方法允许研究人员以足以成像神经结构功能的空间和时间分辨率研究中枢和外周神经系统的选定区域。通常,这些方法无法分析脑深部区域,因此非常需要一种高分辨率的方法,该方法可以反复探测中枢和周围神经系统任何区域的动态过程。在这里,我们显示了fibred荧光显微镜-使用小直径的光纤探针提供实时图像-具有空间分辨率来成像活体动物中的各种神经结构,这是连续定量评估所需的一致性周围神经的轴突变性/再生,以及在亚秒级时间尺度上检测钙瞬变的灵敏度。这些独特的功能应在许多需要对活体动物的组织进行原位功能成像的生理研究中证明是有用的。

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