Department of Applied Physics, Tunghai University, Taichung 40704, Taiwan.
Department of Psychological and Brain Sciences, Indiana University, Bloomington, IN 47405, USA.
Curr Biol. 2015 May 18;25(10):1249-58. doi: 10.1016/j.cub.2015.03.021. Epub 2015 Apr 9.
Understanding the overall patterns of information flow within the brain has become a major goal of neuroscience. In the current study, we produced a first draft of the Drosophila connectome at the mesoscopic scale, reconstructed from 12,995 images of neuron projections collected in FlyCircuit (version 1.1). Neuron polarities were predicted according to morphological criteria, with nodes of the network corresponding to brain regions designated as local processing units (LPUs). The weight of each directed edge linking a pair of LPUs was determined by the number of neuron terminals that connected one LPU to the other. The resulting network showed hierarchical structure and small-world characteristics and consisted of five functional modules that corresponded to sensory modalities (olfactory, mechanoauditory, and two visual) and the pre-motor center. Rich-club organization was present in this network and involved LPUs in all sensory centers, and rich-club members formed a putative motor center of the brain. Major intra- and inter-modular loops were also identified that could play important roles for recurrent and reverberant information flow. The present analysis revealed whole-brain patterns of network structure and information flow. Additionally, we propose that the overall organizational scheme showed fundamental similarities to the network structure of the mammalian brain.
理解大脑内信息流的整体模式已成为神经科学的主要目标。在本研究中,我们根据在 FlyCircuit(版本 1.1)中收集的 12995 张神经元投射图像,构建了第一个介观尺度的果蝇连接组草图。根据形态学标准预测神经元极性,网络节点对应于被指定为局部处理单元(LPU)的脑区。连接一对 LPU 的每条有向边的权重由连接一个 LPU 到另一个 LPU 的神经元末梢数量决定。得到的网络显示出分层结构和小世界特征,由五个功能模块组成,分别对应于感觉模态(嗅觉、机械听觉和两种视觉)和前运动中心。该网络中存在丰富的俱乐部组织,涉及所有感觉中心的 LPU,丰富的俱乐部成员形成了大脑的一个潜在运动中心。还鉴定了主要的内模块和模块间回路,它们可能在递归和回荡信息流中发挥重要作用。本分析揭示了全脑网络结构和信息流的整体模式。此外,我们提出整体组织方案显示出与哺乳动物大脑网络结构的基本相似性。