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Syntactic sequencing in Hebbian cell assemblies

机译:Hebbian细胞装配体中的语法测序

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Hebbian cell assemblies provide a theoretical framework for the modeling of cognitive processes that grounds them in the underlying physiological neural circuits. Recently we have presented an extension of cell assemblies by operational components which allows to model aspects of language, rules, and complex behaviour. In the present work we study the generation of syntactic sequences using operational cell assemblies timed by unspecific trigger signals. Syntactic patterns are implemented in terms of hetero-associative transition graphs in attractor networks which cause a directed flow of activity through the neural state space. We provide regimes for parameters that enable an unspecific excitatory control signal to switch reliably between attractors in accordance with the implemented syntactic rules. If several target attractors are possible in a given state, noise in the system in conjunction with a winner-takes-all mechanism can randomly choose a target. Disambiguation can also be guided by context signals or specific additional external signals. Given a permanently elevated level of external excitation the model can enter an autonomous mode, where it generates temporal grammatical patterns continuously.
机译:Hebbian细胞装配体为认知过程的建模提供了理论框架,使它们以潜在的生理神经回路为基础。最近,我们提出了通过操作组件扩展单元装配的功能,该功能允许对语言,规则和复杂行为的各个方面进行建模。在当前的工作中,我们研究使用由非特定触发信号定时的可操作单元组件生成语法序列的过程。句法模式是根据吸引器网络中的异联想转换图实现的,该图引起了活动通过神经状态空间的定向流动。我们提供了一些参数体系,这些参数使非特定的兴奋性控制信号能够根据实现的语法规则在吸引子之间可靠地切换。如果在给定状态下可能有多个目标吸引子,则系统中的噪音与“赢家通吃”机制一起可以随机选择一个目标。消歧也可以由上下文信号或特定的附加外部信号引导。给定永久性的外部激励水平,模型可以进入自主模式,在此模式下,它会连续生成时间语法模式。

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