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  1. Centre-embedded structures are a by-product of associative learning and working memory constraints: Evidence from baboons ( Papio Papio ).Arnaud Rey, Pierre Perruchet & Joël Fagot - 2012 - Cognition 123 (1):180-184.
  • Under What Conditions Can Recursion Be Learned? Effects of Starting Small in Artificial Grammar Learning of Center‐Embedded Structure.Fenna H. Poletiek, Christopher M. Conway, Michelle R. Ellefson, Jun Lai, Bruno R. Bocanegra & Morten H. Christiansen - 2018 - Cognitive Science 42 (8):2855-2889.
    It has been suggested that external and/or internal limitations paradoxically may lead to superior learning, that is, the concepts of starting small and less is more (Elman, ; Newport, ). In this paper, we explore the type of incremental ordering during training that might help learning, and what mechanism explains this facilitation. We report four artificial grammar learning experiments with human participants. In Experiments 1a and 1b we found a beneficial effect of starting small using two types of simple recursive (...)
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  • On the Validity of Simulating Stagewise Development by Means of PDP Networks: Application of Catastrophe Analysis and an Experimental Test of Rule‐Like Network Performance.Risto Miikkulainen, Regina Vollmeyer, Bruce D. Burns, Keith J. Holyoak, Maartje E. J. Raijmakers, Sylvester van Koten, Peter C. M. Molenaar, Daniel Jurafsky, Gerhard Weber & Giuseppe Mantovani - 1996 - Cognitive Science 20 (1):101-136.
    This article addresses the ability of Parallel Distributed Processing (PDP) networks to generate stagewise cognitive development in accordance with Piaget's theory of cognitive epigenesis. We carried out a replication study of the simulation experiments by McClelland (1989) and McClelland and Jenkins (1991) in which a PDP network learns to solve balance scale problems. In objective tests motivated from catastrophe theory, a mathematical theory of transitions in epigenetical systems, no evidence for stage transitions in network performance was found. It is concluded (...)
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  • Subsymbolic Case‐Role Analysis of Sentences with Embedded Clauses.Risto Miikkulainen - 1996 - Cognitive Science 20 (1):47-73.
    A distributed neural network model called SPEC for processing sentences with recursive relative clauses is described. The model is based on separating the tasks of segmenting the input word sequence into clauses, forming the case‐role representations, and keeping track of the recursive embeddings into different modules. The system needs to be trained only with the basic sentence constructs, and it generalizes not only to new instances of familiar relative clause structures but to novel structures as well. SPEC exhibits plausible memory (...)
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  • An activation‐based model of sentence processing as skilled memory retrieval.Richard L. Lewis & Shravan Vasishth - 2005 - Cognitive Science 29 (3):375-419.
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  • Mechanisms for handling nested dependencies in neural-network language models and humans.Yair Lakretz, Dieuwke Hupkes, Alessandra Vergallito, Marco Marelli, Marco Baroni & Stanislas Dehaene - 2021 - Cognition 213 (C):104699.
  • Reading relative clauses in English.Edward Gibson, Timothy Desmet, Daniel Grodner, Duane Watson & Kara Ko - 2005 - Cognitive Linguistics 16 (2):313-353.
    Two self-paced reading experiments investigated several factors that influence the comprehension complexity of singly-embedded relative clauses (RCs) in English. Three factors were manipulated in Experiment 1, resulting in three main effects. First, object-extracted RCs were read more slowly than subject-extracted RCs, replicating previous work. Second, RCs that were embedded within the sentential complement of a noun were read more slowly than comparable RCs that were not embedded in this way. Third, and most interestingly, object-modifying RCs were read more slowly than (...)
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  • Syntactic structure and artificial grammar learning: The learnability of embedded hierarchical structures.Meinou H. de Vries, Padraic Monaghan, Stefan Knecht & Pienie Zwitserlood - 2008 - Cognition 107 (2):763-774.
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  • The language faculty that wasn't: a usage-based account of natural language recursion.Morten H. Christiansen & Nick Chater - 2015 - Frontiers in Psychology 6:150920.
    In the generative tradition, the language faculty has been shrinking—perhaps to include only the mechanism of recursion. This paper argues that even this view of the language faculty is too expansive. We first argue that a language faculty is difficult to reconcile with evolutionary considerations. We then focus on recursion as a detailed case study, arguing that our ability to process recursive structure does not rely on recursion as a property of the grammar, but instead emerge gradually by piggybacking on (...)
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  • Toward a Connectionist Model of Recursion in Human Linguistic Performance.Morten H. Christiansen & Nick Chater - 1999 - Cognitive Science 23 (2):157-205.
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  • Squeezing through the Now-or-Never bottleneck: Reconnecting language processing, acquisition, change, and structure.Nick Chater & Morten H. Christiansen - 2016 - Behavioral and Brain Sciences 39:e91.
    If human language must be squeezed through a narrow cognitive bottleneck, what are the implications for language processing, acquisition, change, and structure? In our target article, we suggested that the implications are far-reaching and form the basis of an integrated account of many apparently unconnected aspects of language and language processing, as well as suggesting revision of many existing theoretical accounts. With some exceptions, commentators were generally supportive both of the existence of the bottleneck and its potential implications. Many commentators (...)
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  • Language as a dynamical system.Jeffrey L. Elman - 1995 - In Tim van Gelder & Robert Port (eds.), Mind as Motion: Explorations in the Dynamics of Cognition. MIT Press. pp. 195--223.