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首页> 外文期刊>Journal of Computational Neuroscience >An intracellular Ca~(2+) subsystem as a biologically plausible source of intrinsic conditional bistability in a network model of working memory
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An intracellular Ca~(2+) subsystem as a biologically plausible source of intrinsic conditional bistability in a network model of working memory

机译:细胞内Ca〜(2+)子系统作为工作记忆网络模型中内在条件双稳态的生物学上合理的来源

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We have developed a firing rate network model for working memory that combines Mexican-hat-like synaptic coupling with intrinsic or cellular dynamics that are conditionally bistable. While our approach is in the spirit of Camperi and Wang (1998) we include a specific and plausible mechanism for the cellular bistability. Modulatory neu-rotransmitters are known to activate second messenger signaling systems, and our model includes an intracellular Ca~(2+) handling subsystem whose dynamics depend upon the level of the second messenger inositol 1,4,5 trisphosphate (IP3). This Ca~(2+) subsystem endows individual units with conditional intrinsic bistability for a range of IP3. The full "hybrid" network sustains IP3-dependent persistent ("bump") activity in response to a brief transient stimulus. The bump response in our hybrid model, like that of Camperi-Wang, is resistant to noise - its position does not drift with time.
机译:我们已经开发了一种用于工作记忆的发射速率网络模型,该模型将墨西哥帽式突触耦合与有条件地双稳态的固有或细胞动力学相结合。虽然我们的方法遵循Camperi和Wang(1998)的精神,但我们为细胞的双稳性提供了一种特定且合理的机制。已知调节性神经递质激活第二信使信号系统,我们的模型包括一个细胞内Ca〜(2+)处理子系统,其动力学取决于第二信使肌醇1,4,5三磷酸(IP3)的水平。这个Ca〜(2+)子系统为单个单元赋予IP3范围内的条件固有双稳态。完整的“混合”网络响应短暂的短暂刺激而维持IP3依赖的持久性(“颠簸”)活动。像Camperi-Wang一样,我们的混合模型中的碰撞响应具有抗噪性-其位置不会随时间漂移。

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