The Brainstem Reticular Formation and the Monoamine System
Harold H. Traurig, Gregory M. Cooper, Robert L. Rodnitzky
Abstract
Harold H. Traurig, Gregory M. Cooper, Robert L. Rodnitzky
Abstract
The reticular formation (RF) consists of an extensive aggregation of several subtypes of interconnected neurons that extends throughout the brainstem tegmentum. The reticular pathways integrate sensory, visceral, limbic, and motor functions, and project throughout the central nervous system (CNS). Reticular circuits exert important influences on autonomic regulation of vital organ systems, behavior, somatic motor activities, sleep cycles, alertness, and pain modulation. These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.
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The reticular formation (RF) consists of an extensive aggregation of several subtypes of interconnected neurons that extends throughout the brainstem tegmentum. The reticular pathways integrate sensory, visceral, limbic, and motor functions, and project throughout the central nervous system (CNS). Reticular circuits exert important influences on autonomic regulation of vital organ systems, behavior, somatic motor activities, sleep cycles, alertness, and pain modulation. These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.
Key concepts: Neuroscience, Brainstem, Reticular formation, Reticular activating system, Tegmentum, Reticular connective tissue, Motor system, Sensory system