کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
4334249 | 1294922 | 2012 | 6 صفحه PDF | دانلود رایگان |

Modeling has contributed a great deal to our understanding of how individual neurons and neuronal networks function. In this review, we focus on models of the small neuronal networks of invertebrates, especially rhythmically active CPG networks. Models have elucidated many aspects of these networks, from identifying key interacting membrane properties to pointing out gaps in our understanding, for example missing neurons. Even the complex CPGs of vertebrates, such as those that underlie respiration, have been reduced to small network models to great effect. Modeling of these networks spans from simplified models, which are amenable to mathematical analyses, to very complicated biophysical models. Some researchers have now adopted a population approach, where they generate and analyze many related models that differ in a few to several judiciously chosen free parameters; often these parameters show variability across animals and thus justify the approach. Models of small neuronal networks will continue to expand and refine our understanding of how neuronal networks in all animals program motor output, process sensory information and learn.
► A seminal small neuronal network model is revisited with modern techniques and data.
► Populations of models shed light on the interaction of membrane conductances.
► Small network models, inspired by invertebrates, capture complex vertebrate neuronal network function.
► Simplified models enable detailed mathematical analysis of the underlying mechanisms of small neuronal network function.
Journal: Current Opinion in Neurobiology - Volume 22, Issue 4, August 2012, Pages 670–675