首页> 美国卫生研究院文献>Methods and Protocols >Large Scale Double-Path Illumination System with Split Field of View for the All-Optical Study of Inter-and Intra-Hemispheric Functional Connectivity on Mice
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Large Scale Double-Path Illumination System with Split Field of View for the All-Optical Study of Inter-and Intra-Hemispheric Functional Connectivity on Mice

机译:具有分离视场的大型双径照明系统用于全光学研究小鼠半球间和半球内功能连通性

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摘要

Recent improvements in optical tools that can perturb brain activity and simultaneously reveal the elicited alterations in the associated regions offer an exceptional means to understand and map the connectivity of the brain. In this work, we exploit a combination of recently developed optical tools to monitor neural population at the meso-scale level and to mould the cortical patterns of targeted neuronal population. Our goal was to investigate the propagation of neuronal activity over the mouse cortex that is triggered by optogenetic stimulation in the contralateral hemisphere. Towards this aim, we developed a wide-field fluorescence microscope that is characterized by a double illumination path allowing for the optogenetic stimulation of the transfected area in the left hemisphere and the simultaneous recording of cortical activity in the right hemisphere. The microscope was further implemented with a custom shutter in order to split the LED illumination path, resulting in a half-obscured field of view. By avoiding the spectral crosstalk between GCaMP6f and channelrhodopsin 2 (ChR2), this system offered the possibility of simultaneous “pumping and probing” of inter-hemispheric functional connectivity on Thy1-GCaMP6f mice.
机译:光学工具的最新改进可以扰乱大脑活动,同时揭示相关区域引起的变化,这为理解和绘制大脑的连通性提供了一种特殊的方法。在这项工作中,我们利用了最近开发的光学工具的组合,以在中尺度水平上监视神经种群并塑造了目标神经细胞种群的皮质模式。我们的目标是研究由对侧半球的光遗传学刺激触发的小鼠皮层神经元活动的传播。为了实现这一目标,我们开发了一种宽视野荧光显微镜,其特征在于具有双重照明路径,可以对左半球的转染区域进行光遗传学刺激,并可以同时记录右半球的皮层活动。显微镜还配有定制的快门,以分割LED照明路径,从而导致视野被半遮挡。通过避免GCaMP6f和通道视紫红质2(ChR2)之间的光谱串扰,该系统提供了在Thy1-GCaMP6f小鼠上同时“泵送和探测”半球间功能连接的可能性。

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