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Three-Dimensional Spatial Distribution of Synapses in the Neocortex: A Dual-Beam Electron Microscopy Study

机译:新皮层中突触的三维空间分布:双束电子显微镜研究

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摘要

In the cerebral cortex, most synapses are found in the neuropil, but relatively little is known about their 3-dimensional organization. Using an automated dual-beam electron microscope that combines focused ion beam milling and scanning electron microscopy, we have been able to obtain 10 three-dimensional samples with an average volume of 180 µm3 from the neuropil of layer III of the young rat somatosensory cortex (hindlimb representation). We have used specific software tools to fully reconstruct 1695 synaptic junctions present in these samples and to accurately quantify the number of synapses per unit volume. These tools also allowed us to determine synapse position and to analyze their spatial distribution using spatial statistical methods. Our results indicate that the distribution of synaptic junctions in the neuropil is nearly random, only constrained by the fact that synapses cannot overlap in space. A theoretical model based on random sequential absorption, which closely reproduces the actual distribution of synapses, is also presented.
机译:在大脑皮层中,大多数突触出现在神经纤维中,但对其3维组织的了解相对较少。使用结合聚焦离子束铣削和扫描电子显微镜的自动双束电子显微镜,我们已经能够从层的神经纤维中获得10个三维样品,平均体积为180 µm 3 幼鼠体感皮层的III(后肢代表)。我们已经使用特定的软件工具来完全重建这些样本中存在的1695个突触连接,并精确定量每单位体积的突触数量。这些工具还使我们能够确定突触的位置,并使用空间统计方法分析其空间分布。我们的结果表明,神经突触中突触连接的分布几乎是随机的,仅受突触在空间上不能重叠的事实所限制。还提出了一种基于随机顺序吸收的理论模型,该模型可以精确再现突触的实际分布。

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