The effects of daily trimming of the whiskers in rat pups from day 2 or day 9 to day 20 on eye opening time and the formation of early behavioral reactions, i.e., walking, rearing, grooming, and manipulatory activity, were studied in rat pups subjected to deprivation and siblings reared with them. Rat pups subjected to vibrissectomy from day 2 of life and their siblings showed acceleration of eye opening, maturation of grooming, and rearing without support; the formation of manipulatory activity was delayed, as were changes in the structures of correlational relationships between the times at which behavioral reactions formed and eye opening occurred. Vibrissectomy from day 9 of life eliminated most correlational relationships in deprived animals without impairing the dynamics of the development of early behavioral reactions. Siblings showed delayed formation of manipulatory activity, though changes in the structure of correlational relationships were less significant than in deprived animals.
It was previously found that the exploratory activity of adult Wistar rats with their vibrissae cut in the period from 9 to 20 postnatal days was characterized by lower intragroup variability in comparison with control rats [3]. The present study has shown that the earlier limitation of species-specific afferentation (whisker trimming on postnatal days 2-9) does not induce such changes. We conclude that high plasticity of the brain during the early postnatal period provides better adaptation to the deficit of sensory information.
The studies reported here demonstrate that the projection representation of the whiskers in the somatosensory cortex in rats is the area at which afferent streams arriving via the lemniscal and paralemniscal projections interact. The responses of neurons in layers IV, Va, and Vb to mechanical stimulation of single whiskers were studied. Neurons in layers IV and Vb were found to show more frequent phasic responses (typical of the lemniscal system), while those in layer Va produced predominantly tonic responses (typical of the paralemniscal system). These characteristics of adaptive-plastic rearrangements of cortical neuron activity in response to constant stimuli may result from intracortical cooperative interactions between the lemniscal and paralemniscal projection systems, which, overall, produces a precise qualitative assessment of the perceived stimulus in its specific context.
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