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Low-Dimensional Sensory Feature Representation by Trigeminal Primary Afferents.

Authors :
Bale, Michael R.
Davies, Kyle
Freeman, Oliver J.
Ince, Robin A. A.
Petersen, Rasmus S.
Source :
Journal of Neuroscience; 7/17/2013, Vol. 33 Issue 29, p12003-12012, 10p
Publication Year :
2013

Abstract

In any sensory system, the primary afferents constitute the first level of sensory representation and fundamentally constrain all subsequent information processing. Here, we show that the spike timing, reliability, and stimulus selectivity of primary afferents in the whisker system can be accurately described by a simple model consisting of linear stimulus filtering combined with spike feedback. We fitted the parameters of the model by recording the responses of primary afferents to filtered, white noise whisker motion in anesthetized rats. The model accurately predicted not only the response of primary afferents to white noise whisker motion (median correlation coefficient 0.92) but also to naturalistic, texture-induced whisker motion. The model accounted both for submillisecond spike-timing precision and for non-Poisson spike train structure. We found substantial diversity in the responses of the afferent population, but this diversity was accurately captured by the model: a 2D filter subspace, corresponding to different mixtures of position and velocity sensitivity, captured 94% of the variance in the stimulus selectivity. Our results suggest that the first stage of the whisker system can be well approximated as a bank of linear filters, forming an overcomplete representation of a low-dimensional feature space. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02706474
Volume :
33
Issue :
29
Database :
Complementary Index
Journal :
Journal of Neuroscience
Publication Type :
Academic Journal
Accession number :
89214031
Full Text :
https://doi.org/10.1523/JNEUROSCI.0925-13.2013