Neuromuscular systemsNeuromodulators may alter the output of a physiological system by acting on the associated inputs (for instance, central pattern generators). However, modeling work suggests that this alone is insufficient,[1] because the neuromuscular transformation from neural input to muscular output may be tuned for particular ranges of input. Stern et al. (2007) suggest that neuromodulators must act not only on the input system but must change the transformation itself to produce the proper contractions of muscles as output.[1] Diffuse modulatory neurotransmitter systemsNeurotransmitter systems are systems of neurons in the brain expressing certain types of neurotransmitters, and thus form distinct systems. Activation of the system causes effects in large volumes of the brain, called volume transmission. The major neurotransmitter systems are the noradrenaline (norepinephrine) system, the dopamine system, the serotonin system and the cholinergic system. Drugs targeting the neurotransmitter of such systems affects the whole system, and explains the mode of action of many drugs. Most other neurotransmitters, on the other hand, e.g. glutamate, GABA and glycine, are used very generally throughout the central nervous system. Comparison
Noradrenaline systemFurther reading: Norepinephrine#Norepinephrine system The noradrenaline system consists of just 1500 neurons on each side of the brain, which is diminutive compared to the total amount of more than 100 billion neurons in the brain. Nevertheless, when activated, the system plays major roles in the brain, as seen in table above. Noradrenaline is released from the neurons, and acts on adrenergic receptors. Dopamine systemFurther reading: Dopamine#Functions in the brain The dopamine system consists of several pathways, originating from the ventral tegmentum or substantia nigra as examples. It acts on dopamine receptors. Parkinson's disease is at least in part related to failure of dopaminergic cells in deep-brain nuclei, namely the substantia nigra. Treatments potentiating the effect of dopamine precursors have been proposed and effected, with moderate success. Pharmacology
Serotonin systemFurther reading: Serotonin#Gross anatomy The serotonin system in the CNS contains only 1% of total body serotonin, the rest being found as transmitters in the peripheral nervous systemcitation needed. It travels around the brain along the medial forebrain bundle and acts on serotonin receptors. In the peripheral nervous system (such as in the gut wall) serotonin regulates vascular tone. Pharmacology
Cholinergic systemFurther reading: Acetylcholine#in CNS The cholinergic system works primary by M1 receptors, but M2-, M3-, M4- and M5 receptors are also found in the CNS. OthersThe gamma-aminobutyric acid (GABA) system is more generally distributed throughout the brain. Nevertheless, it has an overall inhibitory effect.
Other usesNeuromodulation also refers to a medical procedure used to alter nervous system function for relief of pain. It consists primarily of electrical stimulation, lesioning of specific regions of the nervous system, or infusion of substances into the cerebrospinal fluid. Electrical stimulation are devices such as Spinal Cord Stimulators (SCS) (surgically implanted) or Transcutaneous Electrical Nerve Stimulators (TENS) (external device). References
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