Cellular, synaptic, network, and modulatory mechanisms involved in rhythm generation
- PMID: 9914244
- DOI: 10.1016/s0959-4388(98)80112-8
Cellular, synaptic, network, and modulatory mechanisms involved in rhythm generation
Abstract
The membrane properties and the synaptic interactions of individual neurons, as well as the interactions between neuronal networks, all contribute to the formation of the complex patterns of activity that underlie rhythmic motor patterns and slow-wave sleep rhythms. These properties and interactions are potential points of modulation for further refining network output. Recent work illustrates the range of these properties and interactions and suggests how they may be modulated.