The redistribution of neuronal activity across rat barrel cortex following an alteration in whisker usage has been investigated. In adult rats, two mystacial vibrissae - D2 and one neighbor, D1 or D3 were left intact while all other vibrissae on that side of the snout were clipped. Neurons in contralateral barrel cortex were sampled with a microelectrode array 3.5 days later. Stimulation of clipped vibrissae produced a narrow spatial distribution of cortical activity, whereas stimulation of intact vibrissae produced a widened spatial distribution. Simultaneous recordings from multiple cortical barrel-columns suggest that changes in the effective connectivity between barrel-columns may partially account for this redistribution of sensory res...
Whisker movement is somatotopically represented in rodent neocortex by electrical activity in clearl...
Whisker movement is somatotopically represented in rodent neocortex by electrical activity in clearl...
We model experience-dependent plasticity in the adult rat S1 cortical representation of the whiskers...
The redistribution of neuronal activity across rat barrel cortex following an alteration in whisker ...
This thesis concerns the neuronal activity patterns evoked in somatosensory cortex by deflection of...
This study tested the hypothesis that the receptive fields (RFs) of neurons in the adult sensory cor...
This thesis concerns the neuronal activity patterns evoked in somatosensory cortex by deflection of...
This study tested the hypothesis that the receptive fields (RFs) of neurons in the adult sensory cor...
Rats generate sweeping whisker movements in order to explore their environments and identify objects...
Rats generate sweeping whisker movements in order to explore their environments and identify objects...
This study used extracellular unit recordings in behaving ani-mals to evaluate thalamocortical respo...
Chronic stimulation of a mystacial whisker follicle for 24 h induces structural and functional chang...
Sensory deprivation during a critical period reduces spine motility and disrupts receptive field str...
We model experience-dependent plasticity in the adult rat S1 cortical representation of the whiskers...
Whisker movement is somatotopically represented in rodent neocortex by electrical activity in clearl...
Whisker movement is somatotopically represented in rodent neocortex by electrical activity in clearl...
Whisker movement is somatotopically represented in rodent neocortex by electrical activity in clearl...
We model experience-dependent plasticity in the adult rat S1 cortical representation of the whiskers...
The redistribution of neuronal activity across rat barrel cortex following an alteration in whisker ...
This thesis concerns the neuronal activity patterns evoked in somatosensory cortex by deflection of...
This study tested the hypothesis that the receptive fields (RFs) of neurons in the adult sensory cor...
This thesis concerns the neuronal activity patterns evoked in somatosensory cortex by deflection of...
This study tested the hypothesis that the receptive fields (RFs) of neurons in the adult sensory cor...
Rats generate sweeping whisker movements in order to explore their environments and identify objects...
Rats generate sweeping whisker movements in order to explore their environments and identify objects...
This study used extracellular unit recordings in behaving ani-mals to evaluate thalamocortical respo...
Chronic stimulation of a mystacial whisker follicle for 24 h induces structural and functional chang...
Sensory deprivation during a critical period reduces spine motility and disrupts receptive field str...
We model experience-dependent plasticity in the adult rat S1 cortical representation of the whiskers...
Whisker movement is somatotopically represented in rodent neocortex by electrical activity in clearl...
Whisker movement is somatotopically represented in rodent neocortex by electrical activity in clearl...
Whisker movement is somatotopically represented in rodent neocortex by electrical activity in clearl...
We model experience-dependent plasticity in the adult rat S1 cortical representation of the whiskers...