Binzegger Tom, Douglas Rodney J, Martin Kevan A C
Institute of Neuroinformatics, University of Zürich, and Eidgenössische Technische Hochschule Zürich, CH-8057 Zürich, Switzerland.
J Neurosci. 2004 Sep 29;24(39):8441-53. doi: 10.1523/JNEUROSCI.1400-04.2004.
We developed a quantitative description of the circuits formed in cat area 17 by estimating the "weight" of the projections between different neuronal types. To achieve this, we made three-dimensional reconstructions of 39 single neurons and thalamic afferents labeled with horseradish peroxidase during intracellular recordings in vivo. These neurons served as representatives of the different types and provided the morphometrical data about the laminar distribution of the dendritic trees and synaptic boutons and the number of synapses formed by a given type of neuron. Extensive searches of the literature provided the estimates of numbers of the different neuronal types and their distribution across the cortical layers. Applying the simplification that synapses between different cell types are made in proportion to the boutons and dendrites that those cell types contribute to the neuropil in a given layer, we were able to estimate the probable source and number of synapses made between neurons in the six layers. The predicted synaptic maps were quantitatively close to the estimates derived from the experimental electron microscopic studies for the case of the main sources of excitatory and inhibitory input to the spiny stellate cells, which form a major target of layer 4 afferents. The map of the whole cortical circuit shows that there are very few "strong" but many "weak" excitatory projections, each of which may involve only a few percentage of the total complement of excitatory synapses of a single neuron.
我们通过估计不同神经元类型之间投射的“权重”,对猫17区形成的神经回路进行了定量描述。为实现这一目标,我们在体内细胞内记录过程中,对39个用辣根过氧化物酶标记的单个神经元和丘脑传入纤维进行了三维重建。这些神经元代表了不同类型,并提供了有关树突树和突触小体的层状分布以及给定类型神经元形成的突触数量的形态学数据。广泛查阅文献提供了不同神经元类型的数量及其在皮质各层分布的估计值。应用不同细胞类型之间的突触形成比例与这些细胞类型在给定层中对神经毡贡献的突触小体和树突成比例这一简化方法,我们能够估计六层中神经元之间突触的可能来源和数量。对于棘状星状细胞(第4层传入纤维的主要靶点)的兴奋性和抑制性输入的主要来源情况,预测的突触图谱在数量上与从实验电子显微镜研究得出的估计值接近。整个皮质回路的图谱显示,“强”兴奋性投射很少,但“弱”兴奋性投射很多,每个“弱”兴奋性投射可能仅涉及单个神经元兴奋性突触总数的几个百分点。