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  1. Language-mediated eye movements in the absence of a visual world: the ‘blank screen paradigm’.Gerry T. M. Altmann - 2004 - Cognition 93 (2):B79-B87.
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  • Incremental interpretation at verbs: restricting the domain of subsequent reference.Gerry T. M. Altmann & Yuki Kamide - 1999 - Cognition 73 (3):247-264.
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  • Processing Polarity: How the Ungrammatical Intrudes on the Grammatical.Shravan Vasishth, Sven Brüssow, Richard L. Lewis & Heiner Drenhaus - 2008 - Cognitive Science 32 (4):685-712.
    A central question in online human sentence comprehension is, “How are linguistic relations established between different parts of a sentence?” Previous work has shown that this dependency resolution process can be computationally expensive, but the underlying reasons for this are still unclear. This article argues that dependency resolution is mediated by cue‐based retrieval, constrained by independently motivated working memory principles defined in a cognitive architecture. To demonstrate this, this article investigates an unusual instance of dependency resolution, the processing of negative (...)
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  • Low working memory capacity is only spuriously related to poor reading comprehension.Julie A. Van Dyke, Clinton L. Johns & Anuenue Kukona - 2014 - Cognition 131 (3):373-403.
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  • (1 other version)Computational principles of working memory in sentence comprehension.Julie A. Van Dyke Richard L. Lewis, Shravan Vasishth - 2006 - Trends in Cognitive Sciences 10 (10):447.
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  • Functional independence of pictures and their verbal memory codes.Douglas L. Nelson & David H. Brooks - 1973 - Journal of Experimental Psychology 98 (1):44.
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  • (1 other version)Computational principles of working memory in sentence comprehension.Richard L. Lewis, Shravan Vasishth & Julie A. Van Dyke - 2006 - Trends in Cognitive Sciences 10 (10):447-454.
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  • Poor readers' retrieval mechanism: efficient access is not dependent on reading skill.Clinton L. Johns, Kazunaga Matsuki & Julie A. Van Dyke - 2015 - Frontiers in Psychology 6.
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  • Pictures and Spoken Descriptions Elicit Similar Eye Movements During Mental Imagery, Both in Light and in Complete Darkness.Roger Johansson, Jana Holsanova & Kenneth Holmqvist - 2006 - Cognitive Science 30 (6):1053-1079.
    This study provides evidence that eye movements reflect the positions of objects while participants listen to a spoken description, retell a previously heard spoken description, and describe a previously seen picture. This effect is equally strong in retelling from memory, irrespective of whether the original elicitation was spoken or visual. In addition, this effect occurs both while watching a blank white board and while sitting in complete darkness. This study includes 4 experiments. The first 2 experiments measured eye movements of (...)
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  • Word meaning and the control of eye fixation: semantic competitor effects and the visual world paradigm.Falk Huettig & Gerry T. M. Altmann - 2005 - Cognition 96 (1):B23-B32.
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  • Anticipation in Real‐World Scenes: The Role of Visual Context and Visual Memory.Moreno I. Coco, Frank Keller & George L. Malcolm - 2016 - Cognitive Science 40 (8):1995-2024.
    The human sentence processor is able to make rapid predictions about upcoming linguistic input. For example, upon hearing the verb eat, anticipatory eye-movements are launched toward edible objects in a visual scene. However, the cognitive mechanisms that underlie anticipation remain to be elucidated in ecologically valid contexts. Previous research has, in fact, mainly used clip-art scenes and object arrays, raising the possibility that anticipatory eye-movements are limited to displays containing a small number of objects in a visually impoverished context. In (...)
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  • Verbal working memory and sentence comprehension.David Caplan & Gloria S. Waters - 1999 - Behavioral and Brain Sciences 22 (1):77-94.
    This target article discusses the verbal working memory system used in sentence comprehension. We review the concept of working memory as a short-duration system in which small amounts of information are simultaneously stored and manipulated in the service of accomplishing a task. We summarize the argument that syntactic processing in sentence comprehension requires such a storage and computational system. We then ask whether the working memory system used in syntactic processing is the same as that used in verbally mediated tasks (...)
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