Dynamics of excitation and inhibition underlying stimulus selectivity in rat somatosensory cortex
- 11 September 2005
- journal article
- research article
- Published by Springer Nature in Nature Neuroscience
- Vol. 8 (10) , 1364-1370
- https://doi.org/10.1038/nn1545
Abstract
Neurons in sensory systems respond to stimuli within their receptive fields, but the magnitude of the response depends on specific stimulus features. In the rodent whisker system, the response magnitude to the deflection of a particular whisker is, in most cells, dependent on the direction of deflection. Here we use in vivo intracellular recordings from thalamorecipient neurons in layers 3 and 4 of the rat barrel cortex to elucidate the dynamics of the synaptic inputs underlying direction selectivity. We show that cells are direction selective despite a broadly tuned excitatory and inhibitory synaptic input. Selectivity emerges from a direction-dependent temporal shift of excitation relative to inhibition. For preferred direction deflections, excitation precedes inhibition, but as the direction diverges from the preferred, this separation decreases. Our results illustrate a mechanism by which the timing of the synaptic inputs, and not their relative peak amplitudes, primarily determine feature selectivity.Keywords
This publication has 46 references indexed in Scilit:
- NEURONAL CIRCUITS OF THE NEOCORTEXAnnual Review of Neuroscience, 2004
- Synaptic Responses to Whisker Deflections in Rat Barrel Cortex as a Function of Cortical Layer and Stimulus IntensityJournal of Neuroscience, 2004
- Balanced inhibition underlies tuning and sharpens spike timing in auditory cortexNature, 2003
- Orientation and Direction Selectivity of Synaptic Inputs in Visual Cortical NeuronsNeuron, 2003
- Feedforward Mechanisms of Excitatory and Inhibitory Cortical Receptive FieldsJournal of Neuroscience, 2002
- Synaptic Integration by V1 Neurons Depends on Location within the Orientation MapNeuron, 2002
- Processing in layer 4 of the neocortical circuit: new insights from visual and somatosensory cortex.Current Opinion in Neurobiology, 2001
- Responses of Rat Trigeminal Ganglion Neurons to Movements of Vibrissae in Different DirectionsSomatosensory & Motor Research, 1990
- Thalamocortical response transformation in the rat vibrissa/barrel systemJournal of Neurophysiology, 1989
- MODALITY AND TOPOGRAPHIC PROPERTIES OF SINGLE NEURONS OF CAT'S SOMATIC SENSORY CORTEXJournal of Neurophysiology, 1957