Here, we review the roles of the monoamines dopamine (DA), norepinephrine (NE), serotonin (5-HT), and other neuromodulators in controlling the activity of the ACC.
First-pass extracted concept
serotonin
Aliases
5-HT, 5-hydroxytryptamine
Evidence Snippets
Serotonin (5-hydroxytryptamine, 5-HT) is acknowledged as a major neuromodulator of nervous systems in both invertebrates and vertebrates.
Supporting Sources
Linked Claims
Chronic pain alters neuromodulator signaling in anterior cingulate cortex circuits to promote pathological hyperexcitability.
how chronic pain alters their signaling in ACC circuits to promote pathological hyperexcitability
Dopamine, norepinephrine, serotonin, and other neuromodulators control activity of the anterior cingulate cortex.
we review the roles of the monoamines dopamine (DA), norepinephrine (NE), serotonin (5-HT), and other neuromodulators in controlling the activity of the ACC
Serotonin is presented as a prototypical neuromodulator fundamentally involved in organismal adaptation across the animal kingdom.
5-HT is, therefore, the prototypical neuromodulator fundamentally involved in the adaptation of all organisms across the animal kingdom.
The review summarizes serotonin involvement across motor activity, arousal, sleep and circadian rhythm, feeding, social interactions and aggressiveness, anxiety, mood, learning and memory, impulsive-compulsive dimensions, and behavioral flexibility.
In particular, we focus on the motor activity, arousal, sleep and circadian rhythm, feeding, social interactions and aggressiveness, anxiety, mood, learning and memory, or impulsive/compulsive dimension and behavioral flexibility.
Despite distinct organization of serotonin systems across the animal kingdom, serotonin influences on behavior and cognition appear evolutionarily conserved.
In spite of a completely distinct organization of the 5-HT systems across the animal kingdom, several lines of evidence suggest that the influences of 5-HT on behavior and cognition are evolutionary conserved.
Serotonin is a major neuromodulator in nervous systems of both invertebrates and vertebrates.
Serotonin (5-hydroxytryptamine, 5-HT) is acknowledged as a major neuromodulator of nervous systems in both invertebrates and vertebrates.
Serotonin more often fine-tunes neuronal responses underlying behavior than directly triggers or halts specific behaviors.
The roles of 5-HT, illustrated in both invertebrates and vertebrates, show that it is more able to potentiate or mitigate the neuronal responses necessary for the fine-tuning of most behaviors, rather than to trigger or halt a specific behavior.