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In vivo micro-lesion of single dendrite with femtosecond laser pulses

机译:用Femtosecond激光脉冲的单一枝晶的体内微病变

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Recently, two-photon microscopy has been used for high spatial resolution imaging of the intact neocortex in living rodents. In this work we used near-IR femtosecond laser pulses for a combination of two-photon microscopy and microdissection on fluorescently-labeled neuronal structures in living mice. Three-dimensional reconstructions of dendrites expressing the green fluorescence protein were made in the cortex of GFP-M and YFP-H transgenic mice. Afterwards, single dendrites were laser-dissected irradiating the structure with a high femtosecond laser energy dose. We report that laser dissection can be performed with micrometric precision and without any visible collateral damage of the surrounding neuronal structures. After laser irradiation, one part of the severed dendrite underwent degeneration and disappeared within 5 hours. Using a chronically implanted glass window, we performed long-term imaging in the area of the dissected dendrite. Images of the long-term morphological changes in the neuronal network after dendritic lesioning will be provided. Laser microdissection of selected structures of the neuronal branching in vivo represents a promising tool for neurobiological research.
机译:最近,双光子显微镜已经用于活啮齿动物的完整Neocortex的高空间分辨率成像。在这项工作中,我们使用了近红外Femtosecond激光脉冲,用于双光子显微镜和微小荧光型神经元结构的组合。在GFP-M和YFP-H转基因小鼠的皮质中制备表达绿色荧光蛋白的树枝状蛋白的三维重建。之后,用高飞秒激光能量剂量照射单树枝状体照射结构。我们报告称激光解剖可以用微米精度和周围神经元结构的任何可见的附带损坏来执行。激光照射后,切断的树突的一部分接受了退化并在5小时内消失。使用长期植入的玻璃窗,我们在解剖枝晶的区域进行了长期成像。提供树突病变后神经元网络的长期形态变化的图像。体内神经元分支的选定结构的激光微生物代表了神经生物学研究的有希望的工具。

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