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首页> 外文期刊>PLoS One >On Optical Detection of Densely Labeled Synapses in Neuropil and Mapping Connectivity with Combinatorially Multiplexed Fluorescent Synaptic Markers
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On Optical Detection of Densely Labeled Synapses in Neuropil and Mapping Connectivity with Combinatorially Multiplexed Fluorescent Synaptic Markers

机译:光学检测Neuropil中的密集标记的突触和映射组合与多重复用的荧光突触标记的连通性。

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We propose a new method for mapping neural connectivity optically, by utilizing Cre/Lox system Brainbow to tag synapses of different neurons with random mixtures of different fluorophores, such as GFP, YFP, etc., and then detecting patterns of fluorophores at different synapses using light microscopy (LM). Such patterns will immediately report the pre- and post-synaptic cells at each synaptic connection, without tracing neural projections from individual synapses to corresponding cell bodies. We simulate fluorescence from a population of densely labeled synapses in a block of hippocampal neuropil, completely reconstructed from electron microscopy data, and show that high-end LM is able to detect such patterns with over 95% accuracy. We conclude, therefore, that with the described approach neural connectivity in macroscopically large neural circuits can be mapped with great accuracy, in scalable manner, using fast optical tools, and straightforward image processing. Relying on an electron microscopy dataset, we also derive and explicitly enumerate the conditions that should be met to allow synaptic connectivity studies with high-resolution optical tools.
机译:我们提出了一种光学映射神经连通性的新方法,该方法是利用Cre / Lox系统Brainbow用不同荧光团(例如GFP,YFP等)的随机混合物标记不同神经元的突触,然后使用这些荧光团检测不同突触的荧光团模式光学显微镜(LM)。这样的模式将立即报告每个突触连接处的突触前和突触后细胞,而无需跟踪从单个突触到相应细胞体的神经投射。我们模拟了海马神经绒毛块中密集标记的突触的荧光,从电子显微镜数据完全重建了该荧光,并显示高端LM能够以95%以上的准确度检测此类模式。因此,我们得出结论,使用上述方法,可以使用快速光学工具和简单的图像处理,以可缩放的方式以高精度绘制宏观大型神经回路中的神经连接。依靠电子显微镜数据集,我们还可以导出并明确枚举使用高分辨率光学工具进行突触连接研究所需满足的条件。

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