Organization for International Education and Exchange, University of Toyama, Toyama 930-8555, Japan.
Department of Mathematics, Dartmouth College, Hanover, NH 03755.
eNeuro. 2021 Sep 9;8(5). doi: 10.1523/ENEURO.0078-21.2021. Print 2021 Sep-Oct.
Biological neural networks operate at several levels of granularity, from the individual neuron to local neural circuits to networks of thousands of cells. The daily oscillation of the brain's master clock in the suprachiasmatic nucleus (SCN) rests on a yet to be identified network of connectivity among its ∼20,000 neurons. The SCN provides an accessible model to explore neural organization at several levels of organization. To relate cellular to local and global network behaviors, we explore network topology by examining SCN slices in three orientations using immunochemistry, light and confocal microscopy, real-time imaging, and mathematical modeling. Importantly, the results reveal small local groupings of neurons that form intermediate structures, here termed "phaseoids," which can be identified through stable local phase differences of varying magnitude among neighboring cells. These local differences in phase are distinct from the global phase relationship, namely that between individual cells and the mean oscillation of the overall SCN. The magnitude of the phaseoids' local phase differences is associated with a global phase gradient observed in the SCN's rostral-caudal extent. Modeling results show that a gradient in connectivity strength can explain the observed gradient of phaseoid strength, an extremely parsimonious explanation for the heterogeneous oscillatory structure of the SCN.
生物神经网络在多个粒度级别上运作,从单个神经元到局部神经网络再到数千个细胞的网络。大脑主时钟在视交叉上核(SCN)中的日常振荡依赖于其约 20000 个神经元之间尚未确定的连通性网络。SCN 提供了一个可访问的模型,可以在多个组织层次上探索神经组织。为了将细胞与局部和全局网络行为联系起来,我们通过在三个方向上使用免疫化学、光和共聚焦显微镜、实时成像和数学建模来研究 SCN 切片的网络拓扑结构。重要的是,结果揭示了形成中间结构的神经元的小局部分组,这里称为“相位体”,可以通过相邻细胞之间不同幅度的稳定局部相位差来识别。这些局部相位差异与全局相位关系(即单个细胞与整个 SCN 的平均振荡之间的关系)不同。相位体的局部相位差的幅度与在 SCN 的头-尾延伸中观察到的全局相位梯度相关。建模结果表明,连接强度的梯度可以解释观察到的相位体强度梯度,这是对 SCN 异质振荡结构的极其简约的解释。