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  1. (1 other version)Modeling knowledge‐based inferences in story comprehension.Stefan L. Frank, Mathieu Koppen, Leo G. M. Noordman & Wietske Vonk - 2003 - Cognitive Science 27 (6):875-910.
    A computational model of inference during story comprehension is presented, in which story situations are represented distributively as points in a high‐dimensional “situation‐state space.” This state space organizes itself on the basis of a constructed microworld description. From the same description, causal/temporal world knowledge is extracted. The distributed representation of story situations is more flexible than Golden and Rumelhart's [Discourse Proc 16 (1993) 203] localist representation.A story taking place in the microworld corresponds to a trajectory through situation‐state space. During the (...)
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  • Connectionist semantic systematicity.Stefan L. Frank, Willem F. G. Haselager & Iris van Rooij - 2009 - Cognition 110 (3):358-379.
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  • Expectation-based syntactic comprehension.Roger Levy - 2008 - Cognition 106 (3):1126-1177.
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  • The effect of word predictability on reading time is logarithmic.Nathaniel J. Smith & Roger Levy - 2013 - Cognition 128 (3):302-319.
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  • (1 other version)Finding Structure in Time.Jeffrey L. Elman - 1990 - Cognitive Science 14 (2):179-211.
    Time underlies many interesting human behaviors. Thus, the question of how to represent time in connectionist models is very important. One approach is to represent time implicitly by its effects on processing rather than explicitly (as in a spatial representation). The current report develops a proposal along these lines first described by Jordan (1986) which involves the use of recurrent links in order to provide networks with a dynamic memory. In this approach, hidden unit patterns are fed back to themselves: (...)
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  • The influence of the immediate visual context on incremental thematic role-assignment: evidence from eye-movements in depicted events.Pia Knoeferle, Matthew W. Crocker, Christoph Scheepers & Martin J. Pickering - 2005 - Cognition 95 (1):95-127.
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  • A cortical network for semantics: (de)constructing the N400.E. Lau, C. Phillips & D. Poeppel - 2008 - Nature Reviews Neuroscience 9:920-933.
    Measuring event-related potentials (ERPs) has been fundamental to our understanding of how language is encoded in the brain. One particular ERP response, the N400 response, has been especially influential as an index of lexical and semantic processing. However, there remains a lack of consensus on the interpretation of this component. Resolving this issue has important consequences for neural models of language comprehension. Here we show that evidence bearing on where the N400 response is generated provides key insights into what it (...)
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  • On the Proper Treatment of the N400 and P600 in Language Comprehension.Brouwer Harm & W. Crocker Matthew - 2017 - Frontiers in Psychology 8.
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  • A Neurocomputational Model of the N400 and the P600 in Language Processing.Harm Brouwer, Matthew W. Crocker, Noortje J. Venhuizen & John C. J. Hoeks - 2017 - Cognitive Science 41 (S6):1318-1352.
    Ten years ago, researchers using event-related brain potentials to study language comprehension were puzzled by what looked like a Semantic Illusion: Semantically anomalous, but structurally well-formed sentences did not affect the N400 component—traditionally taken to reflect semantic integration—but instead produced a P600 effect, which is generally linked to syntactic processing. This finding led to a considerable amount of debate, and a number of complex processing models have been proposed as an explanation. What these models have in common is that they (...)
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  • (2 other versions)Is the P300 component a manifestation of context updating?Emanuel Donchin & Michael G. H. Coles - 1988 - Behavioral and Brain Sciences 11 (3):357.
    To understand the endogenous components of the event-related brain potential (ERP), we must use data about the components' antecedent conditions to form hypotheses about the information-processing function of the underlying brain activity. These hypotheses, in turn, generate testable predictions about the consequences of the component. We review the application of this approach to the analysis of the P300 component. The amplitude of the P300 is controlled multiplicatively by the subjective probability and the task relevance of the eliciting events, whereas its (...)
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  • (1 other version)Modeling knowledge‐based inferences in story comprehension.Stefan L. Frank, Mathieu Koppen, Leo G. M. Noordman & Wietske Vonk - 2003 - Cognitive Science 27 (6):875-910.
    A computational model of inference during story comprehension is presented, in which story situations are represented distributively as points in a high‐dimensional “situation‐state space.” This state space organizes itself on the basis of a constructed microworld description. From the same description, causal/temporal world knowledge is extracted. The distributed representation of story situations is more flexible than Golden and Rumelhart's [Discourse Proc 16 (1993) 203] localist representation.A story taking place in the microworld corresponds to a trajectory through situation‐state space. During the (...)
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  • Data from eye-tracking corpora as evidence for theories of syntactic processing complexity.Vera Demberg & Frank Keller - 2008 - Cognition 109 (2):193-210.
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  • (1 other version){Finding structure in time}.J. Elman - 1993 - {Cognitive Science} 48:71-99.
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  • Surprisal-based comparison between a symbolic and a connectionist model of sentence processing.Stefan L. Frank - 2009 - In N. A. Taatgen & H. van Rijn (eds.), Proceedings of the 31st Annual Conference of the Cognitive Science Society. pp. 1139--1144.
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