Oscillations and Synchrony in Large-scale Cortical Network Models

被引:0
|
作者
Nikolai F. Rulkov
Maxim Bazhenov
机构
[1] UCSD and Information Systems Labs. Inc.,
[2] The Salk Institute,undefined
来源
关键词
Neuron; Cortical network; Large-scale model; Gamma oscillations;
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学科分类号
摘要
Intrinsic neuronal and circuit properties control the responses of large ensembles of neurons by creating spatiotemporal patterns of activity that are used for sensory processing, memory formation, and other cognitive tasks. The modeling of such systems requires computationally efficient single-neuron models capable of displaying realistic response properties. We developed a set of reduced models based on difference equations (map-based models) to simulate the intrinsic dynamics of biological neurons. These phenomenological models were designed to capture the main response properties of specific types of neurons while ensuring realistic model behavior across a sufficient dynamic range of inputs. This approach allows for fast simulations and efficient parameter space analysis of networks containing hundreds of thousands of neurons of different types using a conventional workstation. Drawing on results obtained using large-scale networks of map-based neurons, we discuss spatiotemporal cortical network dynamics as a function of parameters that affect synaptic interactions and intrinsic states of the neurons.
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页码:279 / 299
页数:20
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