Gökçe Onur, Bonhoeffer Tobias, Scheuss Volker
Department Synapses - Circuits - Plasticity, Max Planck Institute of Neurobiology, Martinsried, Germany.
Elife. 2016 Jul 19;5:e09222. doi: 10.7554/eLife.09222.
The spatial organization of synaptic inputs on the dendritic tree of cortical neurons plays a major role for dendritic integration and neural computations, yet, remarkably little is known about it. We mapped the spatial organization of glutamatergic synapses between layer 5 pyramidal cells by combining optogenetics and 2-photon calcium imaging in mouse neocortical slices. To mathematically characterize the organization of inputs we developed an approach based on combinatorial analysis of the likelihoods of specific synapse arrangements. We found that the synapses of intralaminar inputs form clusters on the basal dendrites of layer 5 pyramidal cells. These clusters contain 4 to 14 synapses within ≤30 µm of dendrite. According to the spatiotemporal characteristics of synaptic summation, these numbers suggest that there will be non-linear dendritic integration of synaptic inputs during synchronous activation.
皮质神经元树突棘上突触输入的空间组织对树突整合和神经计算起着重要作用,然而,令人惊讶的是,人们对其了解甚少。我们通过结合光遗传学和双光子钙成像技术,绘制了小鼠新皮层切片中第5层锥体细胞之间谷氨酸能突触的空间组织图。为了从数学上描述输入的组织方式,我们开发了一种基于对特定突触排列可能性进行组合分析的方法。我们发现,层内输入的突触在第5层锥体细胞的基底树突上形成簇。这些簇在树突≤30 µm范围内包含4至14个突触。根据突触总和的时空特征,这些数字表明在同步激活期间,突触输入将发生非线性树突整合。