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Doing Without Schema Hierarchies: A Recurrent Connectionist Approach to Normal and Impaired Routine Sequential Action

机译:在没有架构层次结构的情况下进行:正常和受损的例行顺序​​操作的递归连接主义方法

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摘要

In everyday tasks, selecting actions in the proper sequence requires a continuously updated representation of temporal context. Previous models have addressed this problem by positing a hierarchy of processing units, mirroring the roughly hierarchical structure of naturalistic tasks themselves. The present study considers an alternative framework, in which the representation of context depends on recurrent connections within a network mapping from environmental inputs to actions. The ability of this approach to account for human performance was evaluated by applying it, through simulation, to a specific everyday task. The resulting model learned to deal flexibly with a complex set of sequencing constraints, encoding contextual information at multiple time scales within a single, distributed internal representation. Degrading this representation led to errors resembling those observed both in everyday behavior and in apraxia. Analysis of the model's function yielded numerous predictions relevant to both normal and apraxic performance.
机译:在日常任务中,以正确的顺序选择动作需要持续更新时间上下文的表示。以前的模型通过放置处理单元的层次结构,反映自然任务本身的大致层次结构来解决此问题。本研究考虑了一个替代框架,其中上下文的表示取决于网络中从环境输入到行动的映射中的经常性连接。通过将这种方法通过模拟应用于特定的日常任务,来评估这种方法对人员绩效的解释能力。最终的模型学会了灵活地处理一组复杂的排序约束,在单个分布式内部表示中以多个时间尺度对上下文信息进行编码。降低这种表示方式会导致类似于日常行为和失用症中观察到的错误。对模型功能的分析得出了许多与正常和尖顶性能相关的预测。

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