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Highly Nonrandom Features of Synaptic Connectivity in Local Cortical Circuits

PLoS Biology · 2005 · Vol. 3(3) · pp. e68–e68
Sen SongP. Jesper SjöströmMarkus ReiglSacha B. NelsonDmitri B. Chklovskii

Abstract

How different is local cortical circuitry from a random network? To answer this question, we probed synaptic connections with several hundred simultaneous quadruple whole-cell recordings from layer 5 pyramidal neurons in the rat visual cortex. Analysis of this dataset revealed several nonrandom features in synaptic connectivity. We confirmed previous reports that bidirectional connections are more common than expected in a random network. We found that several highly clustered three-neuron connectivity patterns are overrepresented, suggesting that connections tend to cluster together. We also analyzed synaptic connection strength as defined by the peak excitatory postsynaptic potential amplitude. We found that the distribution of synaptic connection strength differs significantly from the Poisson distribution and can be fitted by a lognormal distribution. Such a distribution has a heavier tail and implies that synaptic weight is concentrated among few synaptic connections. In addition, the strengths of synaptic connections sharing pre- or postsynaptic neurons are correlated, implying that strong connections are even more clustered than the weak ones. Therefore, the local cortical network structure can be viewed as a skeleton of stronger connections in a sea of weaker ones. Such a skeleton is likely to play an important role in network dynamics and should be investigated further.

Neural dynamics and brain functionNeuroscience and Neuropharmacology ResearchAdvanced Memory and Neural ComputingNeuroscienceBiologyPostsynaptic potentialExcitatory postsynaptic potentialVisual cortexNeurotransmissionConnection (principal bundle)Inhibitory postsynaptic potentialMathematics

MeSH terms

AnimalsCell CommunicationNeural PathwaysNeuronal PlasticityNeuronsSynapsesVisual CortexSignal TransductionRatsIn Vitro Techniques

Funding

  • Wellcome Trust
  • National Institutes of Health
  • National Institute of Mental Health
  • National Eye Institute
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1,582
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