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Semi-automated three-dimensional reconstructions of individual neurons reveal cell type-specific circuits in cortex

机译:单个神经元的半自动三维重建揭示了皮质中特定于细胞类型的电路

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摘要

Despite a long history of anatomical mapping of neuronal networks, we are only beginning to understand the detailed three-dimensional (3D) organization of the cortical micro-circuitry. This is in part due to the lack of complete reconstructions of individual cortical neurons. Morphological studies are either performed on incomplete cells in vitro, or when performed in vivo, lack the necessary cellular resolution. We recently reconstructed the in vivo axonal and dendritic morphology of two types of L(ayer) 5 neurons from vibrissal cortex. The 3D profiles of short-range as well as longrange projections indicate that L5 slender-tufted and L5 thick-tufted neurons represent very different building blocks of the cortical circuitry. In this addendum to Oberlaender et al. (PNAS 2011), we motivate our technical approach and the advancements this may give in reconstructing the cortical micro-circuitry.
机译:尽管神经元网络的解剖图谱历史悠久,但我们才刚刚开始了解皮层微电路的详细三维(3D)组织。部分原因是缺乏单个皮质神经元的完整重建。形态学研究要么在体外对不完整的细胞进行,要么在体内进行,但缺乏必要的细胞分辨率。我们最近重建了来自纤颤皮层的两种类型的L(ayer)5神经元的体内轴突和树突形态。短距离和长距离投影的3D轮廓表明,L5细长簇状神经元和L5粗簇状神经元代表了皮质电路的非常不同的构建基块。在Oberlaender等人的附录中。 (PNAS 2011),我们激励着我们的技术方法以及在重建皮层微电路方面可能会带来的进步。

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