Reticular influences on primary and augmenting responses in the somatosensory cortex.
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Summary
The replacement of augmenting potentials by primary responses under RF stimulation is advanced as the mechanism behind the obliteration of spontaneously developing 'type I' spindle-waves during EEG arousal.
- Type
- article
- Published
- 1981-01-26
- Cited by
- 37
- References
- 11
- OpenAlex
- https://openalex.org/W2026990007
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:6976712
Keywords
Somatosensory system, Neuroscience, Somatosensory evoked potential, Reticular connective tissue, Psychology
References
- Ascending control of thalamic and cortical responsiveness.
- Afferent and recurrent collateral influences on cortical somatosensory neurons.
- Retrograde axonal transport and the demonstration of non‐specific projections to the cerebral cortex and striatum from thalamic intralaminar nuclei in the rat, cat and monkey
- The effect of reticular stimulation on spontaneous and evoked activity in the cat visual cortex.
- Reticular influences on lateralis posterior thalamic neurons.
- The effect of mesencephalic reticular stimulation on intracellular potentials of cat lateral geniculate neurons.
- Development from primary to augmenting responses in the somatosensory system.
- Autoradiographic studies of the projections of the midbrain reticular formation: Descending projections of nucleus cuneiformis
- Synaptic events in ventrolateral thalamic neurons during suppression of recruiting responses by brain stem reticular stimulation.
- A STUDY OF SPONTANEOUS SPINDLE WAVES IN SENSORIMOTOR CORTEX OF CAT
- Inhibitory processes and interneuronal apparatus in motor cortex during sleep and waking. II. Recurrent and afferent inhibition of pyramidal tract neurons.
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- Acetylcholine, brain activation, and processing of temporal stimuli
- Brainstem Control of Wakefulness and Sleep
- Role of Quantitative Electroencephalography, Neurotherapy, and Neuroplasticity in Recovery from Neurological and Psychiatric Disorders
- Short-Term Plasticity during Intrathalamic Augmenting Responses in Decorticated Cats
- Role of Thalamic and Cortical Neurons in Augmenting Responses and Self-Sustained Activity: Dual Intracellular Recordings In Vivo
- Mesencephalic and bulbar reticular formation influences on somatosensory transmission through the thalamus.
- Brainstem activates paroxysmal discharge in human generalized epilepsy.
- Induction of high frequency activity in the somatosensory thalamus of rats in vivo results in long-term potentiation of responses in SI cortex
- Short-Term Plasticity of a Thalamocortical Pathway Dynamically Modulated by Behavioral State
- The study of brain function impairment in fetal alcohol syndrome: some fruitful directions for research.
- Neural signature of taste familiarity in the gustatory cortex of the freely behaving rat.
- Various types of inhibitory postsynaptic potentials in anterior thalamic cells are differentially altered by stimulation of laterodorsal tegmental cholinergic nucleus.
- Development from primary to augmenting responses in the somatosensory system.
- Synaptic responsiveness of cortical and thalamic neurones during various phases of slow sleep oscillation in cat.
- Ethosuximide alters intrathalamic and thalamocortical synchronizing mechanisms: a possible explanation of its antiabsence effect.
- Synchronized oscillations caused by disinhibition in rodent neocortex are generated by recurrent synaptic activity mediated by AMPA receptors
- The thalamus as a neuronal oscillator.
- Short-term Plasticity in Thalamocortical Pathways: Cellular Mechanisms and Functional Roles
- Current source-density method and application in cat cerebral cortex: investigation of evoked potentials and EEG phenomena.
- Cellular Mechanisms of the Augmenting Response: Short-Term Plasticity in a Thalamocortical Pathway
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