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Abrupt and gradual transitions between low and hyperexcited firing frequencies in neuronal models with fast synaptic excitation: A comparative study

机译:具有快速突触兴奋的神经元模型中低激发频率和高激发频率之间的突然和逐渐过渡:一项比较研究

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摘要

Hyperexcitability of neuronal networks is one of the hallmarks of epileptic brain seizure generation, and results from a net imbalance between excitation and inhibition that promotes excessive abnormal firing frequencies. The transition between low and high firing frequencies as the levels of recurrent AMPA excitation change can occur either gradually or abruptly. We used modeling, numerical simulations, and dynamical systems tools to investigate the biophysical and dynamic mechanisms that underlie these two identified modes of transition in recurrently connected neurons via AMPA excitation. We compare our results and demonstrate that these two modes of transition are qualitatively different and can be linked to different intrinsic properties of the participating neurons.
机译:神经元网络的过度兴奋性是癫痫性脑癫痫发作的标志之一,它是由激发和抑制之间的净失衡引起的,该失衡会促进过度的异常激发频率。随着AMPA反复激发变化的水平,高频率和低频率之间的转换可以逐渐发生,也可以突然发生。我们使用建模,数值模拟和动力学系统工具来研究生物物理和动力学机制,这些机制是通过AMPA激发在循环连接的神经元中这两种确定的转变模式的基础。我们比较我们的结果,并证明这两种过渡模式在质量上是不同的,并且可以与参与的神经元的不同内在特性联系在一起。

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