The responses of 154 ventral posterior thalamic neurons to a variety of somatic stimuli and to electrical stimulation of the midbrain spinal lemniscus were recorded in the awake squirrel monkey during varying states of arousal. Many VP () neurons showed changes in somatosensory responsiveness which correlated with shifts in arousal. Arousal related modulation (ARM) of somatic responses were not selective for any specific stimulus modality. Most cells (N = 36) responded maximally during quiet waking with responses significantly reduced during drowsiness or periods of waking movement. Other neurons (N = 5) responded maximally during drowsiness, and gave decreased responses as the level of arousal increased. Similar changes were seen for neuro...
The responses of 157 neural units in the magnocellular (mc) and parvocellular (pc) components of the...
This review focuses on the contributions of the central thalamus to normalmechanisms of arousal regu...
The motor thalamus relays signals from subcortical structures to the motor cortical areas. Previous ...
Attention-related modulation (AM) of the somatosensory responses of single neurons has been demonstr...
SummarySpontaneous and sensory-evoked cortical activity is highly state-dependent, yet relatively li...
The slow oscillation (SO) generated within the corticothalamic system is composed of active and sile...
The thalamus transmits sensory information to the neocortex and receives neocortical, subcortical, a...
Summary: The thalamus plays a central role in sleep rhythms in the mammalian brain and, yet, surpris...
This is an open access article distributed under the terms of the Creative Commons Attribution Licen...
SummaryThe thalamus transmits sensory information to the neocortex and receives neocortical, subcort...
By means of extracellular recordings, individual norepinephrine-containing neurons in the locus coer...
A prominent feature of thalamocortical circuitry in sensory systems is the extensive and highly orga...
Rodents move rhythmically their facial whiskers and compute differences between signals predicted an...
[Abstract] The lateral geniculate nucleus is the gateway for visual information en route to the visu...
State-dependent thalamocortical activity is important for sensory coding, oscillations, and cognitio...
The responses of 157 neural units in the magnocellular (mc) and parvocellular (pc) components of the...
This review focuses on the contributions of the central thalamus to normalmechanisms of arousal regu...
The motor thalamus relays signals from subcortical structures to the motor cortical areas. Previous ...
Attention-related modulation (AM) of the somatosensory responses of single neurons has been demonstr...
SummarySpontaneous and sensory-evoked cortical activity is highly state-dependent, yet relatively li...
The slow oscillation (SO) generated within the corticothalamic system is composed of active and sile...
The thalamus transmits sensory information to the neocortex and receives neocortical, subcortical, a...
Summary: The thalamus plays a central role in sleep rhythms in the mammalian brain and, yet, surpris...
This is an open access article distributed under the terms of the Creative Commons Attribution Licen...
SummaryThe thalamus transmits sensory information to the neocortex and receives neocortical, subcort...
By means of extracellular recordings, individual norepinephrine-containing neurons in the locus coer...
A prominent feature of thalamocortical circuitry in sensory systems is the extensive and highly orga...
Rodents move rhythmically their facial whiskers and compute differences between signals predicted an...
[Abstract] The lateral geniculate nucleus is the gateway for visual information en route to the visu...
State-dependent thalamocortical activity is important for sensory coding, oscillations, and cognitio...
The responses of 157 neural units in the magnocellular (mc) and parvocellular (pc) components of the...
This review focuses on the contributions of the central thalamus to normalmechanisms of arousal regu...
The motor thalamus relays signals from subcortical structures to the motor cortical areas. Previous ...