Layer-Specific Touch-Dependent Facilitation and Depression in the Somatosensory Cortex during Active Whisking
Open Access
- 13 September 2006
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 26 (37) , 9538-9547
- https://doi.org/10.1523/jneurosci.0918-06.2006
Abstract
Brains adapt to new situations by retuning their neurons. The most common form of neuronal adaptation, typically observed with repetitive stimulations of passive sensory organs, is depression (responses gradually decrease until stabilized). We studied cortical adaptation when stimuli are acquired by active movements of the sensory organ. In anesthetized rats, artificial whisking was induced at 5 Hz, and activity of individual neurons in layers 2–5 was recorded during whisking in air (Whisking condition) and whisking against an object (Touch condition). Response strengths were assessed by spike counts. Input-layer responses (layers 4 and 5a) usually facilitated during the whisking train, whereas superficial responses (layer 2/3) usually depressed. In layers 2/3 and 4, but not 5a, responses were usually stronger during touch trials than during whisking in air. Facilitations were specific to the protraction phase; during retraction, responses depressed in all layers and conditions. These dynamic processes were accompanied by a slow positive wave of activity progressing from superficial to deeper layers and lasting for ∼1 s, during the transient phase of response. Our results indicate that, in the cortex, adaptation does not depend only on the level of activity or the frequency of its repetition but rather on the nature of the sensory information that is conveyed by that activity and on the processing layer. The input and laminar specificities observed here are consistent with the hypothesis that the paralemniscal layer 5a is involved in the processing of whisker motion, whereas the lemniscal barrels in layer 4 are involved in the processing of object identity.Keywords
This publication has 71 references indexed in Scilit:
- Interdigitated Paralemniscal and Lemniscal Pathways in the Mouse Barrel CortexPLoS Biology, 2006
- Parallel Thalamic Pathways for Whisking and Touch Signals in the RatPLoS Biology, 2006
- Laminar and Columnar Organization of Ascending Excitatory Projections to Layer 2/3 Pyramidal Neurons in Rat Barrel CortexJournal of Neuroscience, 2005
- Spatiotemporal Characteristics of Neuronal Sensory Integration in the Barrel Cortex of the RatJournal of Neurophysiology, 2005
- Layer-Specific Somatosensory Cortical Activation During Active Tactile DiscriminationScience, 2004
- Functional Diversity of Layer IV Spiny Neurons in Rat Somatosensory Cortex: Quantitative Morphology of Electrophysiologically Characterized and Biocytin Labeled CellsCerebral Cortex, 2004
- Modulation of spike timing by sensory deprivation during induction of cortical map plasticityNature Neuroscience, 2004
- Rapid Adaptation in Visual Cortex to the Structure of ImagesScience, 1999
- Invited Review Anatomical loops and their electrical dynamics in relation to whisking by ratSomatosensory & Motor Research, 1999
- Behavioral and neural approaches to the function of the mystacial vibrissae.Psychological Bulletin, 1977