Angular Tuning Bias of Vibrissa-Responsive Cells in the Paralemniscal Pathway
Open Access
- 11 October 2006
- journal article
- research article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 26 (41) , 10548-10557
- https://doi.org/10.1523/jneurosci.1746-06.2006
Abstract
One of the most salient features of primary vibrissal afferents is their sensitivity to the direction in which the vibrissae move. Directional sensitivity is also well conserved in brainstem, thalamic, and cortical neurons of the lemniscal pathway, indicating that this property plays a key role in the organization of the vibrissal system. Here, we show that directional tuning is also a fundamental feature of second-order interpolaris neurons that give rise to the paralemniscal pathway. Quantitative assessment of responses to vibrissa deflection revealed an anisotropic organization of receptive fields with regard to topography, response magnitude, and the degree of angular tuning. Responses evoked by all vibrissae within the receptive field of each cell exhibited a high consistency of direction preference, but a striking difference in angular tuning preference was found among cells that reside in the rostral and caudal divisions of the interpolaris nucleus. Although in caudal interpolaris vectors of angular preference pointed in all directions, in rostral interpolaris virtually all vectors pointed upward, revealing a strong preference for this direction. Control experiments showed that the upward bias did not rely on a preferential innervation of rostral cells by upwardly tuned primary vibrissa afferents, nor did it rely on a direction-selective recruitment of feedforward inhibition. We thus propose that the upward preference bias of rostral cells, which project to the posterior group of the thalamus, emerges from use-dependent synaptic processes that relate to the kinematics of whisking.Keywords
This publication has 35 references indexed in Scilit:
- Seeing What the Mouse Sees with Its Vibrissae: A Matter of Behavioral StateNeuron, 2006
- Parallel Thalamic Pathways for Whisking and Touch Signals in the RatPLoS Biology, 2006
- Neuron numbers in the sensory trigeminal nuclei of the rat: A GABA‐ and glycine‐immunocytochemical and stereological analysisJournal of Comparative Neurology, 2005
- Differential expression of ?-aminobutyric acid type B receptor-1a and -1b mRNA variants in GABA and non-GABAergic neurons of the rat brainJournal of Comparative Neurology, 2000
- Differential Foci and Synaptic Organization of the Principal and Spinal Trigeminal Projections to the Thalamus in the RatEuropean Journal of Neuroscience, 1994
- Parvalbumin and calbindin immunocytochemistry reveal functionally distinct cell groups and vibrissa‐related patterns in the trigeminal brainstem complex of the adult ratJournal of Comparative Neurology, 1992
- Structure‐function relationships in rat brainstem subnucleus interpolaris: IV. Projection neuronsJournal of Comparative Neurology, 1989
- Structure‐function relationships in rat brainstem subnucleus interpolaris: III. Local circuit neuronsJournal of Comparative Neurology, 1989
- Structure-function relationships in rat brainstem subnucleus interpolaris. I. Vibrissa primary afferentsJournal of Comparative Neurology, 1986
- Regional (14C) 2‐deoxyglucos uptake during vibrissae movements evoked by rat motor cortex stimulationJournal of Comparative Neurology, 1982