It is well-established that synapse formation involves highly selective chemospecific mechanisms, but how neuron arbors are positioned before synapse formation remains unclear. Using 3D reconstructions of 298 neocortical cells of different types (including nest basket, small basket, large basket, bitufted, pyramidal, and Martinotti cells), we constructed a structural model of a cortical microcircuit, in which cells of different types were independently and randomly placed. We compared the positions of physical appositions resulting from the incidental overlap of axonal and dendritic arbors in the model (statistical structural connectivity) with the positions of putative functional synapses (functional synaptic connectivity) in 90 synaptic c...
The connectivity diagram of neocortical circuits is still unknown, and there are conflicting data as...
Neuronal signal integration and information processing in cortical networks critically depend on the...
How different is local cortical circuitry from a random network? To answer this question, we probed ...
Experimentally mapping synaptic connections, in terms of the numbers and locations of their synapses...
The mammalian neocortex is one of the most complex biological tissues and the center of higher brain...
The mammalian neocortex is one of the most complex biological tissues and the center of higher brain...
The neurons in the cerebral cortex are not randomly interconnected. This specificity in wiring can r...
Injections of neural tracers into many mammalian neocortical areas reveal a common patchy motif of c...
Much is known about the computation in individual neurons in the cortical column. Also, the selectiv...
Much is known about the computation in individual neurons in the cortical column. Also, the selectiv...
AbstractNeurons often possess elaborate axonal and dendritic arbors. Why do these arbors exist and w...
Synaptic connectivity between neurons is naturally constrained by the anatomical overlap of neuronal...
AbstractBrain function relies on specificity of synaptic connectivity patterns among different class...
Neuronal signal integration and information processing in cortical networks critically depend on the...
Neurons often possess elaborate axonal and dendritic arbors. Why do these arbors exist and what dete...
The connectivity diagram of neocortical circuits is still unknown, and there are conflicting data as...
Neuronal signal integration and information processing in cortical networks critically depend on the...
How different is local cortical circuitry from a random network? To answer this question, we probed ...
Experimentally mapping synaptic connections, in terms of the numbers and locations of their synapses...
The mammalian neocortex is one of the most complex biological tissues and the center of higher brain...
The mammalian neocortex is one of the most complex biological tissues and the center of higher brain...
The neurons in the cerebral cortex are not randomly interconnected. This specificity in wiring can r...
Injections of neural tracers into many mammalian neocortical areas reveal a common patchy motif of c...
Much is known about the computation in individual neurons in the cortical column. Also, the selectiv...
Much is known about the computation in individual neurons in the cortical column. Also, the selectiv...
AbstractNeurons often possess elaborate axonal and dendritic arbors. Why do these arbors exist and w...
Synaptic connectivity between neurons is naturally constrained by the anatomical overlap of neuronal...
AbstractBrain function relies on specificity of synaptic connectivity patterns among different class...
Neuronal signal integration and information processing in cortical networks critically depend on the...
Neurons often possess elaborate axonal and dendritic arbors. Why do these arbors exist and what dete...
The connectivity diagram of neocortical circuits is still unknown, and there are conflicting data as...
Neuronal signal integration and information processing in cortical networks critically depend on the...
How different is local cortical circuitry from a random network? To answer this question, we probed ...