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The Journal of Neuroscience, May 15, 2000, 20(10):3761-3775
Encoding of Tactile Stimulus Location by Somatosensory
Thalamocortical Ensembles
Asif A.
Ghazanfar,
Christopher R.
Stambaugh, and
Miguel A. L.
Nicolelis
Department of Neurobiology, Duke University Medical Center, Durham,
North Carolina 27710
The exquisite modular anatomy of the rat somatosensory system makes
it an excellent model to test the potential coding strategies used to
discriminate the location of a tactile stimulus. Here, we investigated
how ensembles of simultaneously recorded single neurons in layer V of
primary somatosensory (SI) cortex and in the ventral posterior medial
(VPM) nucleus of the thalamus of the anesthetized rat may encode
the location of a single whisker stimulus on a single trial basis. An
artificial neural network based on a learning vector quantization
algorithm, was used to identify putative coding mechanisms. Our data
suggest that these neural ensembles may rely on a distributed coding
scheme to represent the location of single whisker stimuli. Within this
scheme, the temporal modulation of neural ensemble firing rate, as well
as the temporal interactions between neurons, contributed significantly to the representation of stimulus location. The relative contribution of these temporal codes increased with the number of whiskers that the
ensembles must discriminate among. Our results also indicated that the
SI cortex and the VPM nucleus may function as a single entity to encode
stimulus location. Overall, our data suggest that the representation of
somatosensory features in the rat trigeminal system may arise from the
interactions of neurons within and between the SI cortex and VPM
nucleus. Furthermore, multiple coding strategies may be used
simultaneously to represent the location of tactile stimuli.
Key words:
population coding; multi-electrode; temporal code; ventral posterior medial nucleus; barrel cortex; primary somatosensory
cortex
Copyright © 2000 Society for Neuroscience 0270-6474/00/20103761-15$05.00/0
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