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  1. A Mental Timeline for Duration From the Age of 5 Years Old.Jennifer T. Coull, Katherine A. Johnson & Sylvie Droit-Volet - 2018 - Frontiers in Psychology 9.
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  • Executive control and task switching in pigeons.Leyre Castro & Edward A. Wasserman - 2016 - Cognition 146:121-135.
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  • Space–time interdependence: Evidence against asymmetric mapping between time and space.Zhenguang G. Cai & Louise Connell - 2015 - Cognition 136 (C):268-281.
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  • Spontaneous, modality-general abstraction of a ratio scale.Cory D. Bonn & Jessica F. Cantlon - 2017 - Cognition 169 (C):36-45.
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  • Mapping spatial frames of reference onto time: A review of theoretical accounts and empirical findings. [REVIEW]Andrea Bender & Sieghard Beller - 2014 - Cognition 132 (3):342-382.
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  • The Time Machine in Our Mind.Kurt Stocker - 2012 - Cognitive Science 36 (3):385-420.
    This article provides the first comprehensive conceptual account for the imagistic mental machinery that allows us to travel through time—for the time machine in our mind. It is argued that language reveals this imagistic machine and how we use it. Findings from a range of cognitive fields are theoretically unified and a recent proposal about spatialized mental time travel is elaborated on. The following novel distinctions are offered: external versus internal viewing of time; ‘‘watching” time versus projective ‘‘travel” through time; (...)
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  • A Corpus-Based Comparison of the Pragmatic Use of Qian and Hou to Examine the Applicability of Space–Time Metaphor Hypothesis in Early Child Mandarin.Linda Tsung & Dandan Wu - 2021 - Frontiers in Psychology 11.
    The Universal Space–Time Mapping Hypothesis suggests that temporal expression is based on spatial metaphor for all human beings. This study examines its applicability in the Chinese language using the data elicited from the Early Childhood Mandarin Corpus, which collected the utterances produced by 168 Mandarin-speaking preschoolers in a semistructured play context. The unique pair of Chinese words, qian and hou, which can be used to express either time or space in daily communication, was the unit of analysis. The results indicated (...)
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  • Attentional Factors in Conceptual Congruency.Julio Santiago, Marc Ouellet, Antonio Román & Javier Valenzuela - 2012 - Cognitive Science 36 (6):1051-1077.
    Conceptual congruency effects are biases induced by an irrelevant conceptual dimension of a task (e.g., location in vertical space) on the processing of another, relevant dimension (e.g., judging words’ emotional evaluation). Such effects are a central empirical pillar for recent views about how the mind/brain represents concepts. In the present paper, we show how attentional cueing (both exogenous and endogenous) to each conceptual dimension succeeds in modifying both the manifestation and the symmetry of the effect. The theoretical implications of this (...)
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  • Spatializing Emotion: No Evidence for a Domain‐General Magnitude System.Benjamin Pitt & Daniel Casasanto - 2018 - Cognitive Science 42 (7):2150-2180.
    People implicitly associate different emotions with different locations in left-right space. Which aspects of emotion do they spatialize, and why? Across many studies people spatialize emotional valence, mapping positive emotions onto their dominant side of space and negative emotions onto their non-dominant side, consistent with theories of metaphorical mental representation. Yet other results suggest a conflicting mapping of emotional intensity (a.k.a., emotional magnitude), according to which people associate more intense emotions with the right and less intense emotions with the left (...)
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  • The tangle of space and time in human cognition.Rafael Núñez & Kensy Cooperrider - 2013 - Trends in Cognitive Sciences 17 (5):220-229.
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  • Innate and Cultural Spatial Time: A Developmental Perspective.Barbara Magnani & Alessandro Musetti - 2017 - Frontiers in Human Neuroscience 11.
    We reviewed literature to understand when a spatial map for time is available in the brain. We carefully defined the concepts of metrical map of time and of conceptual representation of time as the mental time line (MTL) in order to formulate our position. It is that both metrical map and conceptual representation of time are spatial in nature. The former should be innate, related to motor/implicit timing, it should represent all magnitudes with an analogic and bi-dimensional structure. The latter (...)
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  • Numerosities and Other Magnitudes in the Brains: A Comparative View.Elena Lorenzi, Matilde Perrino & Giorgio Vallortigara - 2021 - Frontiers in Psychology 12.
    The ability to represent, discriminate, and perform arithmetic operations on discrete quantities (numerosities) has been documented in a variety of species of different taxonomic groups, both vertebrates and invertebrates. We do not know, however, to what extent similarity in behavioral data corresponds to basic similarity in underlying neural mechanisms. Here, we review evidence for magnitude representation, both discrete (countable) and continuous, following the sensory input path from primary sensory systems to associative pallial territories in the vertebrate brains. We also speculate (...)
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  • Interrelations Between Temporal and Spatial Cognition: The Role of Modality-Specific Processing.Jonna Loeffler, Rouwen Cañal-Bruland, Anna Schroeger, J. Walter Tolentino-Castro & Markus Raab - 2018 - Frontiers in Psychology 9.
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  • Age does not count: resilience of quantity processing in healthy ageing.Anna Lambrechts, Vyacheslav Karolis, Sara Garcia, Jennifer Obende & Marinella Cappelletti - 2013 - Frontiers in Psychology 4.
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  • What makes space-time interactions in human vision asymmetrical?Chizuru T. Homma & Hiroshi Ashida - 2015 - Frontiers in Psychology 6.
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  • Spatial representation of magnitude in gorillas and orangutans.Regina Paxton Gazes, Rachel F. L. Diamond, Jasmine M. Hope, Damien Caillaud, Tara S. Stoinski & Robert R. Hampton - 2017 - Cognition 168 (C):312-319.
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