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  1. Constraining tag-assignment from above and below.Michael R. W. Dawson - 1989 - Behavioral and Brain Sciences 12 (3):400-402.
  • Grossberg's “cells” considered as cell assemblies.G. J. Dalenoort - 1983 - Behavioral and Brain Sciences 6 (4):662.
  • When “filling in” fails.Stanley Coren - 1983 - Behavioral and Brain Sciences 6 (4):661.
  • Minimal models and canonical neural computations: the distinctness of computational explanation in neuroscience.M. Chirimuuta - 2014 - Synthese 191 (2):127-153.
    In a recent paper, Kaplan (Synthese 183:339–373, 2011) takes up the task of extending Craver’s (Explaining the brain, 2007) mechanistic account of explanation in neuroscience to the new territory of computational neuroscience. He presents the model to mechanism mapping (3M) criterion as a condition for a model’s explanatory adequacy. This mechanistic approach is intended to replace earlier accounts which posited a level of computational analysis conceived as distinct and autonomous from underlying mechanistic details. In this paper I discuss work in (...)
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  • Simplicity: A unifying principle in cognitive science?Nick Chater & Paul Vitányi - 2003 - Trends in Cognitive Sciences 7 (1):19-22.
  • Reconciling simplicity and likelihood principles in perceptual organization.Nick Chater - 1996 - Psychological Review 103 (3):566-581.
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  • Visual attention and beyond.Kyle R. Cave - 1989 - Behavioral and Brain Sciences 12 (3):400-400.
  • Schizophrenia: from neurophysiological abnormalities to clinical symptoms.Anna Castelnovo, Fabio Ferrarelli & Armando D'Agostino - 2015 - Frontiers in Psychology 6.
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  • Universal coding and network structures for vision: Is Grossberg correct?Terry Caelli - 1983 - Behavioral and Brain Sciences 6 (4):660.
  • Do we need an early locus of attention to resolve illusory conjunctions?Brian E. Butler - 1989 - Behavioral and Brain Sciences 12 (3):398-400.
  • Functional and computational aspects of perception.Hans Buffart - 1983 - Behavioral and Brain Sciences 6 (4):659.
  • Modeling separate processing pathways for spatial and object vision.Bruce Bridgeman - 1989 - Behavioral and Brain Sciences 12 (3):398-398.
  • Isomorphism is where you find it.Bruce Bridgeman - 1983 - Behavioral and Brain Sciences 6 (4):658.
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  • Toward a Neurobiologically Plausible Model of Language-Related, Negative Event-Related Potentials.Ina Bornkessel-Schlesewsky & Matthias Schlesewsky - 2019 - Frontiers in Psychology 10.
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  • Aesthetic Responses to Exact Fractals Driven by Physical Complexity.Alexander J. Bies, Daryn R. Blanc-Goldhammer, Cooper R. Boydston, Richard P. Taylor & Margaret E. Sereno - 2016 - Frontiers in Human Neuroscience 10.
  • Uncertainty and conflict: A point of contact between information-theory and behavior-theory concepts.D. E. Berlyne - 1957 - Psychological Review 64 (6, Pt.1):329-339.
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  • The shape of holes.Marco Bertamini & Camilla J. Croucher - 2003 - Cognition 87 (1):33-54.
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  • Reversibility and apparent tridimensionality.Bruce O. Bergum & Lois E. Flamm - 1979 - Bulletin of the Psychonomic Society 14 (3):193-196.
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  • Full interpretation of minimal images.Guy Ben-Yosef, Liav Assif & Shimon Ullman - 2018 - Cognition 171 (C):65-84.
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  • Detection of change in shape: an advantage for concavities.Elan Barenholtz, Elias H. Cohen, Jacob Feldman & Manish Singh - 2003 - Cognition 89 (1):1-9.
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  • Parameter nets.Dana H. Ballard - 1984 - Artificial Intelligence 22 (3):235-267.
  • Concepts, introspection, and phenomenal consciousness: An information-theoretical approach.Murat Aydede & Güven Güzeldere - 2005 - Noûs 39 (2):197-255.
    This essay is a sustained attempt to bring new light to some of the perennial problems in philosophy of mind surrounding phenomenal consciousness and introspection through developing an account of sensory and phenomenal concepts. Building on the information-theoretic framework of Dretske (1981), we present an informational psychosemantics as it applies to what we call sensory concepts, concepts that apply, roughly, to so-called secondary qualities of objects. We show that these concepts have a special informational character and semantic structure that closely (...)
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  • Physical determinants of the judged complexity of shapes.Fred Attneave - 1957 - Journal of Experimental Psychology 53 (4):221.
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  • “Filling-in” between edges.Lawrence E. Arend - 1983 - Behavioral and Brain Sciences 6 (4):657.
  • Synchrony of spikes and attention in visual cortex.F. Aiple & B. Fischer - 1989 - Behavioral and Brain Sciences 12 (3):397-397.
  • The Embedded Neuron, the Enactive Field?M. Chirimuuta & I. Gold - 2009 - In John Bickle (ed.), The Oxford handbook of philosophy and neuroscience. New York: Oxford University Press.
    The concept of the receptive field, first articulated by Hartline, is central to visual neuroscience. The receptive field of a neuron encompasses the spatial and temporal properties of stimuli that activate the neuron, and, as Hubel and Wiesel conceived of it, a neuron’s receptive field is static. This makes it possible to build models of neural circuits and to build up more complex receptive fields out of simpler ones. Recent work in visual neurophysiology is providing evidence that the classical receptive (...)
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  • Conflicts between short- and long-term experiences affect visual perception through modulating sensory or motor response systems: Evidence from Bayesian inference models.Qi Sun, Jing-Yi Wang & Xiu-Mei Gong - 2024 - Cognition 246 (C):105768.
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  • Attention to detail?Malcolm P. Young, Ian R. Paterson & David I. Perrett - 1989 - Behavioral and Brain Sciences 12 (3):417-418.
  • On the Prediction of Product Aesthetic Evaluation Based on Hesitant-Fuzzy Cognition and Neural Network.Xinying Wu, Minggang Yang, Zishun Su & Xinxin Zhang - 2022 - Complexity 2022:1-18.
    Product market competitiveness is positively influenced by the aesthetic value of product form, which is closely related to product complexity. By measuring the cognitive complexity of the product, this research establishes the relationship between the complexity and aesthetics of the product using an artificial neural network. Hence the prediction of product beauty is achieved, which guides design decisions. In this article, the complexity of product form is first measured through a combination of hesitant-fuzzy theory and information axiom. Afterward, the result (...)
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  • Information Compression, Multiple Alignment, and the Representation and Processing of Knowledge in the Brain.J. Gerard Wolff - 2016 - Frontiers in Psychology 7.
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  • Information Compression as a Unifying Principle in Human Learning, Perception, and Cognition.J. Gerard Wolff - 2019 - Complexity 2019:1-38.
    This paper describes a novel perspective on the foundations of mathematics: how mathematics may be seen to be largely about “information compression via the matching and unification of patterns”. That is itself a novel approach to IC, couched in terms of nonmathematical primitives, as is necessary in any investigation of the foundations of mathematics. This new perspective on the foundations of mathematics reflects the facts that mathematics is almost exclusively the product of human brains, and has been developed, as an (...)
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  • An ecological approach to cognitive (im)penetrability.Rob Withagen & Claire F. Michaels - 1999 - Behavioral and Brain Sciences 22 (3):399-400.
    We offer an ecological (Gibsonian) alternative to cognitive (im)penetrability. Whereas Pylyshyn explains cognitive (im)penetrability by focusing solely on computations carried out by the nervous system, according to the ecological approach the perceiver as a knowing agent influences the entire animal-environmental system: in the determination of what constitutes the environment (affordances), what constitutes information, what information is detected and, thus, what is perceived.
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  • Where's the psychological reality?C. Philip Winder - 1989 - Behavioral and Brain Sciences 12 (3):417-417.
  • Local contour symmetry facilitates scene categorization.John Wilder, Morteza Rezanejad, Sven Dickinson, Kaleem Siddiqi, Allan Jepson & Dirk B. Walther - 2019 - Cognition 182 (C):307-317.
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  • Big bangs in perception: The most often cited authors and publications.Murray J. White - 1987 - Bulletin of the Psychonomic Society 25 (6):458-461.
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  • Is extension to perception of real-world objects and scenes possible?J. Wagemans, K. Verfaillie, P. De Graef & K. Lamberts - 1989 - Behavioral and Brain Sciences 12 (3):415-417.
  • Adaptive resonance theory: Problems with prediction.Mark Wagner - 1983 - Behavioral and Brain Sciences 6 (4):675.
  • Coherence in the Visual Imagination.Michael O. Vertolli, Matthew A. Kelly & Jim Davies - 2018 - Cognitive Science 42 (3):885-917.
    An incoherent visualization is when aspects of different senses of a word are present in the same visualization. We describe and implement a new model of creating contextual coherence in the visual imagination called Coherencer, based on the SOILIE model of imagination. We show that Coherencer is able to generate scene descriptions that are more coherent than SOILIE's original approach as well as a parallel connectionist algorithm that is considered competitive in the literature on general coherence. We also show that (...)
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  • Breadth of pictorial and verbal codes in memory.Barbara Tversky - 1974 - Bulletin of the Psychonomic Society 4 (2):65-68.
  • A contour propagation approach to surface filling-in and volume formation.Peter Ulric Tse - 2002 - Psychological Review 109 (1):91-115.
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  • Object Categorization Processing Differs According to Category Level: Comparing Visual Information Between the Basic and Superordinate Levels.Kosuke Taniguchi, Kana Kuraguchi, Yuji Takano & Shoji Itakura - 2020 - Frontiers in Psychology 11.
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  • Is the tag necessary?Ron Sun & Emmanuel Schalit - 1989 - Behavioral and Brain Sciences 12 (3):415-415.
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  • Curious objects: How visual complexity guides attention and engagement.Zekun Sun & Chaz Firestone - 2021 - Cognitive Science: A Multidisciplinary Journal 45 (4):e12933.
    Some things look more complex than others. For example, a crenulate and richly organized leaf may seem more complex than a plain stone. What is the nature of this experience—and why do we have it in the first place? Here, we explore how object complexity serves as an efficiently extracted visual signal that the object merits further exploration. We algorithmically generated a library of geometric shapes and determined their complexity by computing the cumulative surprisal of their internal skeletons—essentially quantifying the (...)
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  • The value of modeling visual attention.Gary W. Strong & Bruce A. Whitehead - 1989 - Behavioral and Brain Sciences 12 (3):419-433.
  • The lemon illusion: seeing curvature where there is none.Lars Strother, Kyle W. Killebrew & Gideon P. Caplovitz - 2015 - Frontiers in Human Neuroscience 9.
  • Looking for Image Statistics: Active Vision With Avatars in a Naturalistic Virtual Environment.Dominik Straub & Constantin A. Rothkopf - 2021 - Frontiers in Psychology 12.
    The efficient coding hypothesis posits that sensory systems are tuned to the regularities of their natural input. The statistics of natural image databases have been the topic of many studies, which have revealed biases in the distribution of orientations that are related to neural representations as well as behavior in psychophysical tasks. However, commonly used natural image databases contain images taken with a camera with a planar image sensor and limited field of view. Thus, these images do not incorporate the (...)
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  • A solution to the tag-assignment problem for neural networks.Gary W. Strong & Bruce A. Whitehead - 1989 - Behavioral and Brain Sciences 12 (3):381-397.
    Purely parallel neural networks can model object recognition in brief displays – the same conditions under which illusory conjunctions have been demonstrated empirically. Correcting errors of illusory conjunction is the “tag-assignment” problem for a purely parallel processor: the problem of assigning a spatial tag to nonspatial features, feature combinations, and objects. This problem must be solved to model human object recognition over a longer time scale. Our model simulates both the parallel processes that may underlie illusory conjunctions and the serial (...)
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  • False dilemmas: Confusion between mechanism and computation.Kent A. Stevens - 1983 - Behavioral and Brain Sciences 6 (4):675.
  • Simplicity.Elliott Sober - 1975 - Oxford: Clarendon Press.
    Attempts to show that the simplicity of a hypothesis can be measured by attending to how well it answers certain kinds of questions.
  • Principles of contour information: Reply to Lim and Leek (2012).Manish Singh & Jacob Feldman - 2012 - Psychological Review 119 (3):678-683.
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