1962•ScienceRequires access

Functional Organization of the Brain Stem Reticular Formation and Sensory Input

Jacques Courville, John Walsh, J. Pierre Cordeau

Open publisher page 27 citations

Abstract

Injections of 20 microg of adrenaline, dissolved in 10, microl of Tyrode solution, directly into the brain stem reticular formation, are followed by a transient increase in the amplitude of the cortical-evoked response obtained from single-shock stimulation of the optic chiasma, while injections of the same amount of acetylcholine produce a transient decrease. Furthermore, injections of procaine in the medial region of the rostral pontine reticular formation are followed by a long-lasting increase in the amplitude of these evoked responses, while the same injections at mesencephalic levels produce a marked decrease. These findings are interpreted in terms of the presence, in the reticular formation, of two antagonistic ascending systems: one adrenergic, the other cholinergic, whose tonic activity originates in the mesencephalic tegmentum in one case and in the caudal regions of the brain stem in the other.

About this research paper

What this paper is about

Injections of 20 microg of adrenaline, dissolved in 10, microl of Tyrode solution, directly into the brain stem reticular formation, are followed by a transient increase in the amplitude of the cortical-evoked response obtained from single-shock stimulation of the optic chiasma, while injections of the same amount of acetylcholine produce a transient decrease. Furthermore, injections of procaine in the medial region of the rostral pontine reticular formation are followed by a long-lasting increase in the amplitude of these evoked responses, while the same injections at mesencephalic levels produce a marked decrease. These findings are interpreted in terms of the presence, in the reticular formation, of two antagonistic ascending systems: one adrenergic, the other cholinergic, whose tonic activity originates in the mesencephalic tegmentum in one case and in the caudal regions of the brain stem in the other.

Why it matters

OpenAlex reports 27 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Injections of 20 microg of adrenaline, dissolved in 10, microl of Tyrode solution, directly into the brain stem reticular formation, are followed by a transient increase in the amplitude of the cortical-evoked response obtained from single-shock stimulation of the optic chiasma, while injections of the same amount of acetylcholine produce a transient decrease. Furthermore, injections of procaine in the medial region of the rostral pontine reticular formation are followed by a long-lasting increase in the amplitude of these evoked responses, while the same injections at mesencephalic levels produce a marked decrease. These findings are interpreted in terms of the presence, in the reticular formation, of two antagonistic ascending systems: one adrenergic, the other cholinergic, whose tonic activity originates in the mesencephalic tegmentum in one case and in the caudal regions of the brain stem in the other.

Key concepts: Reticular formation, Neuroscience, Sensory system, Reticular connective tissue, Reticular activating system, Functional organization, Biology, Anatomy

Related papers

Back to paper searchBrowse research topicsOriginal source
Functional Organization of the Brain Stem Reticular Formation and Sensory Input — Research Paper | ScholarLens