Results for 'Visual filling-in'

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  1. A Unified Cognitive Model of Visual Filling-In Based on an Emergic Network Architecture.David Pierre Leibovitz - 2013 - Dissertation, Carleton University
    The Emergic Cognitive Model (ECM) is a unified computational model of visual filling-in based on the Emergic Network architecture. The Emergic Network was designed to help realize systems undergoing continuous change. In this thesis, eight different filling-in phenomena are demonstrated under a regime of continuous eye movement (and under static eye conditions as well). -/- ECM indirectly demonstrates the power of unification inherent with Emergic Networks when cognition is decomposed according to finer-grained functions supporting change. These can (...)
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  2.  38
    Filling In and the Nature of Visual Experience.Michael Tye - 2020 - The Harvard Review of Philosophy 27:59-69.
    This essay begins with a discussion of the phenomenon of filling in. It is argued that filling in is naturally accounted for by taking visual experiences to be importantly like drawn pictures of the world outside. An alternative proposal is then considered, one that models visual experiences on incomplete descriptions. It is shown that introspection does not favor the pictorial view. It is also shown that the phenomenon of blurriness in visual experience does not provide (...)
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  3.  29
    Filling In and the Nature of Visual Experience.Michael Tye - 2020 - The Harvard Review of Philosophy 27:59-69.
    This essay begins with a discussion of the phenomenon of filling in. It is argued that filling in is naturally accounted for by taking visual experiences to be importantly like drawn pictures of the world outside. An alternative proposal is then considered, one that models visual experiences on incomplete descriptions. It is shown that introspection does not favor the pictorial view. It is also shown that the phenomenon of blurriness in visual experience does not provide (...)
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  4. Finding out about filling-in: A guide to perceptual completion for visual science and the philosophy of perception.Luiz Pessoa, Evan Thompson & Alva Noë - 1998 - Behavioral and Brain Sciences 21 (6):723-748.
    In visual science the term filling-inis used in different ways, which often leads to confusion. This target article presents a taxonomy of perceptual completion phenomena to organize and clarify theoretical and empirical discussion. Examples of boundary completion (illusory contours) and featural completion (color, brightness, motion, texture, and depth) are examined, and single-cell studies relevant to filling-in are reviewed and assessed. Filling-in issues must be understood in relation to theoretical issues about neuralignoring an absencejumping to a conclusionanalytic (...)
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  5.  10
    Filling-In: Visual Science and the Philosophy of Perception.Evan Thompson - 1999 - In Denis Fisette (ed.), Consciousness and Intentionality: Models and Modalities of Attribution. Springer. pp. 145--161.
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  6.  36
    On the filling in of the visual blind spot: Some rules of thumb.Frank H. Durgin - 1995 - Perception 24:827-40.
  7. Filling in: Why Dennett is wrong.Patricia S. Churchland & Vilayanur S. Ramachandran - 1993 - In B. Dahlbom (ed.), Dennett and His Critics. Blackwell.
     
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  8.  18
    Filling-in as a within-level propagation may be an illusion.Talis Bachmann - 1998 - Behavioral and Brain Sciences 21 (6):749-750.
    “Finding out” about the visual world as approached from the organismic level may well include the “filling-in” type of perceptual completion if considered in terms of underlying neurophysiological mechanisms. But “filling in” can be interpreted not only as a result of within-level propagating of neural activity, but as a byproduct of the process that is necessary for modulating preconscious information about physically present objects or events so as to generate conscious quality in attending to them.
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  9.  42
    Quasi-modal encounters of the third kind: The filling-in of visual detail.Frank H. Durgin - 1998 - Behavioral and Brain Sciences 21 (6):756-757.
    Although Pessoa et al. imply that many aspects of the filling-in debate may be displaced by a regard for active vision, they remain loyal to naive neural reductionist explanations of certain pieces of psychophysical evidence. Alternative interpretations are provided for two specific examples and a new category of filling-in (of visual detail) is proposed.
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  10. Visual Representations in Science - Concept and Epistemology.Nicola Mößner - 2018 - London AND New York: Routledge.
    Visual representations (photographs, diagrams, etc.) play crucial roles in scientific processes. They help, for example, to communicate research results and hypotheses to scientific peers as well as to the lay audience. In genuine research activities they are used as evidence or as surrogates for research objects which are otherwise cognitively inaccessible. Despite their important functional roles in scientific practices, philosophers of science have more or less neglected visual representations in their analyses of epistemic methods and tools of reasoning (...)
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  11.  31
    Filling-in the forms.Stephen Grossberg - 1998 - Behavioral and Brain Sciences 21 (6):758-759.
    Boundary completion and surface filling-in are computationally complementary processes whose multiple processing stages form processing streams that realize a hierarchical resolution of uncertainty. Such complementarity and uncertainty principles provide a new foundation for philosophical discussions about visual perception, and lead to neural explanations of difficult perceptual data.
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  12.  26
    Filling-in while finding out: Guiding behavior by representing information.William D. Ross - 1998 - Behavioral and Brain Sciences 21 (6):770-771.
    Discriminating behavior depends on neural representations in which the sensory activity patterns guiding different responses are decorrelated from one another. Visual information can often be parsimoniously transformed into these behavioral bridge-locus representations within neuro-computational visuo-spatial maps. Isomorphic inverse-optical world representation is not the goal. Nevertheless, such useful transformations can involve neural filling-in. Such a subpersonal representation of information is consistent with personal-level vision theory.
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  13.  29
    Perceptual filling-in and the resonant binding of distributed cortical representations.Tony Vladusich - 2001 - Behavioral and Brain Sciences 24 (6):1136-1137.
    Pessoa et al. (1998a) summarize a wide body of data suggesting that perceptual filling-in phenomena can be attributed to neural filling-in processes. However, they reject, on philosophical grounds, the hypothesis that filled-in representations in the brain are the immediate substrate of visual percepts. It is proposed in this commentary that resonant binding between distributed cortical areas may instead be the crucial ingredient for conscious visual percepts, and that filling-in processes may facilitate the interactions between behaving (...)
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  14.  61
    Filling-in: One or many?Luiz Pessoa, Evan Thompson & Alva Noë - 2001 - Behavioral and Brain Sciences 24 (6):1137-1139.
    (1) The main issue with regard to modal and amodal completion is not which phenomena are cognitive, and which perceptual. At the level of the animal, both are visuo-cognitive. At the level of visual processing, however, we need to dissect the different functional effects of these kinds of completion. (2) Resonant binding between distributed cortical areas may play a role in perceptual completion, but evidence is needed.
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  15.  45
    Should we agree to disagree? Pragmatism and peer disagreement.Susan Dieleman & Steven W. Visual Analogies and Arguments - unknown
    In this paper, I take up the conciliatory-steadfast debate occurring within social epistemology in regards to the phenomenon of peer disagreement. I will argue, because the conciliatory perspective al-lows us to understand argumentation pragmatically—as a method of problem-solving within a community rather than as a method for obtaining the truth—that in most cases, we should not simply agree to disagree.
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  16. Filled/non-filled pairs: An empirical challenge to the integrated information theory of consciousness.Amber R. Hopkins & Kelvin J. McQueen - 2022 - Consciousness and Cognition 97 (C):103245.
    Perceptual filling-in for vision is the insertion of visual properties (e.g., color, contour, luminance, or motion) into one’s visual field, when those properties have no corresponding retinal input. This paper introduces and provides preliminary empirical support for filled/non-filled pairs, pairs of images that appear identical, yet differ by amount of filling-in. It is argued that such image pairs are important to the experimental testing of theories of consciousness. We review recent experimental research and conclude that (...)-in involves brain activity with relatively high integrated information (Phi) compared to veridical visual perceptions. We then present filled/non-filled pairs as an empirical challenge to the integrated information theory of consciousness, which predicts that phenomenologically identical experiences depend on brain processes with identical Phi. (shrink)
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  17.  43
    Engaging Fringe Stakeholders in Business and Society Research: Applying Visual Participatory Research Methods.Judy N. Muthuri & Lauren McCarthy - 2018 - Business and Society 57 (1):131-173.
    Business and society researchers, as well as practitioners, have been critiqued for ignoring those with less voice and power often referred to as “fringe stakeholders.” Existing methods used in B&S research often fail to address issues of meaningful participation, voice and power, especially in developing countries. In this article, we stress the utility of visual participatory research methods in B&S research to fill this gap. Through a case study on engaging Ghanaian cocoa farmers on gender inequality issues, we explore (...)
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  18. “In seinem bekannten Buch Uber das, Sehen” des Mensche& macht David Marr im ersten Kapitel folgende rUckblickende Bemerkung:, The problems of visual perception have attracted the curiosity of scientists for many.Carnaps Ubernahme der Gestalttheorie In den & Computationaler Theorien des Sehens - 2003 - In Thomas Bonk (ed.), Language, Truth and Knowledge. Kluwer Academic Publishers.
     
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  19.  8
    The Victorians and the Visual Imagination.Kate Flint & Reader in Victorian and Modern English Literature and Fellow Kate Flint - 2000 - Cambridge University Press.
    Richly illustrated study drawing on art, literature and science to explore Victorian attitudes towards sight.
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  20.  10
    From Orality to Visuality: Panegyric and Photography in Contemporary Lagos, Nigeria.Adélékè Adéè̇ó - 2012 - Critical Inquiry 38 (2):330-361.
    A new line of self projection magazines that started blooming in Lagos, Nigeria, about the mid-1990s defined itself by filling almost completely every issue with photographs that depict politicians, businesspeople, sports and show business stars enjoying fruits of their extraordinary achievements on festive occasions. The magazine’s cozy coverage of the rich and famous irks a lot of serious cultural and literary critics who believe that this style resembles praise singing too closely. This paper, unlike mainline criticisms of the pictorial (...)
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  21. A sensorimotor account of vision and visual consciousness.J. Kevin O’Regan & Alva Noë - 2001 - Behavioral and Brain Sciences 24 (5):883-917.
    Many current neurophysiological, psychophysical, and psychological approaches to vision rest on the idea that when we see, the brain produces an internal representation of the world. The activation of this internal representation is assumed to give rise to the experience of seeing. The problem with this kind of approach is that it leaves unexplained how the existence of such a detailed internal representation might produce visual consciousness. An alternative proposal is made here. We propose that seeing is a way (...)
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  22.  11
    On centripetal flows of entities in scale-free networks with nodes of finite capability.Jesus Felix Valenzuela, Christopher Monterola, Erika Fille Legara, Xiuju Fu & Rick Siow Mong Goh - 2016 - Complexity 21 (1):283-295.
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  23. Visual Narrative Structure.Neil Cohn - 2013 - Cognitive Science 37 (3):413-452.
    Narratives are an integral part of human expression. In the graphic form, they range from cave paintings to Egyptian hieroglyphics, from the Bayeux Tapestry to modern day comic books (Kunzle, 1973; McCloud, 1993). Yet not much research has addressed the structure and comprehension of narrative images, for example, how do people create meaning out of sequential images? This piece helps fill the gap by presenting a theory of Narrative Grammar. We describe the basic narrative categories and their relationship to a (...)
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  24.  13
    Law, Culture and Visual Studies.Richard K. Sherwin & Anne Wagner (eds.) - 2014 - Dordrecht: Imprint: Springer.
    The proposed volumes are aimed at a multidisciplinary audience and seek to fill the gap between law, semiotics and visuality providing a comprehensive theoretical and analytical overview of legal visual semiotics. They seek to promote an interdisciplinary debate from law, semiotics and visuality bringing together the cumulative research traditions of these related areas as a prelude to identifying fertile avenues for research going forward. Advance Praise for Law, Culture and Visual Studies This diverse and exhilarating collection of essays (...)
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  25. (Un)conscious Perspectival Shape and Attention Guidance in Visual Search: A reply to Morales, Bax, and Firestone (2020).Benjamin Henke & Assaf Weksler - 2023 - In Michal Polák, Tomáš Marvan & Juraj Hvorecký (eds.), Conscious and Unconscious Mentality: Examining Their Nature, Similarities and Differences. Routledge.
    When viewing a circular coin rotated in depth, it fills an elliptical region of the distal scene. For some, this appears to generate a two-fold experience, in which one sees the coin as simultaneously circular (in light of its 3D shape) and elliptical (in light of its 2D ‘perspectival shape’ or ‘p-shape’). An energetic philosophical debate asks whether the latter p-shapes are genuinely presented in perceptual experience (as ‘perspectivalists’ argue) or if, instead, this appearance is somehow derived or inferred from (...)
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  26.  7
    Visual Classification of Music Style Transfer Based on PSO-BP Rating Prediction Model.Tianjiao Li - 2021 - Complexity 2021:1-9.
    In this paper, based on computer reading and processing of music frequency, amplitude, timbre, image pixel, color filling, and so forth, a method of image style transfer guided by music feature data is implemented in real-time playback, using existing music files and image files, processing and trying to reconstruct the fluent relationship between the two in terms of auditory and visual, generating dynamic, musical sound visualization with real-time changes in the visualization. Although recommendation systems have been well developed (...)
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  27.  13
    Exploring the status of filled pauses as pragmatic markers.Loulou Kosmala - 2022 - Pragmatics and Cognition 29 (2):272-296.
    The present study aims to explore the status of filled pauses as pragmatic markers by taking into account their accompanying visual and gestural behavior. This aspect has not yet been widely explored, and the current study breaks new ground by demonstrating that the analysis of gaze and gesture can shed substantial light on the pragmatic functions of filled pauses and other pausing phenomena. Filled pauses (FPs) serve several pragmatic functions in speech, mainly planning but also turn-holding and emphasis, and (...)
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  28.  80
    The relationship between visual illusion and aesthetic preference – an attempt to unify experimental phenomenology and empirical aesthetics.Kaoru Noguchi - 2003 - Axiomathes 13 (3-4):261-281.
    Experimental phenomenology has demonstrated that perception is much richer than stimulus. As is seen in color perception, one and the same stimulus provides more than several modes of appearance or perceptual dimensions. Similarly, there are various perceptual dimensions in form perception. Even a simple geometrical figure inducing visual illusion gives not only perceptual impressions of size, shape, slant, depth, and orientation, but also affective or aesthetic impressions. The present study reviews our experimental phenomenological work on visual illusion and (...)
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  29.  8
    Spatial Memory and Blindness: The Role of Visual Loss on the Exploration and Memorization of Spatialized Sounds.Walter Setti, Luigi F. Cuturi, Elena Cocchi & Monica Gori - 2022 - Frontiers in Psychology 13.
    Spatial memory relies on encoding, storing, and retrieval of knowledge about objects’ positions in their surrounding environment. Blind people have to rely on sensory modalities other than vision to memorize items that are spatially displaced, however, to date, very little is known about the influence of early visual deprivation on a person’s ability to remember and process sound locations. To fill this gap, we tested sighted and congenitally blind adults and adolescents in an audio-spatial memory task inspired by the (...)
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  30.  20
    Effects of Visual Predictive Information and Sequential Context on Neural Processing of Musical Syntax.Hana Shin & Takako Fujioka - 2018 - Frontiers in Psychology 9.
    The early right anterior negativity (ERAN) in event-related potentials (ERPs) is typically elicited by syntactically unexpected events in Western tonal music. We examined how visual predictive information influences syntactic processing, how musical or non-musical cues have different effects, and how they interact with sequential effects between trials, which could modulate with the strength of the sense of established tonality. The EEG was recorded from musicians who listened to chord sequences paired with one of four types of visual stimuli; (...)
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  31.  13
    What do we see when we look at networks: Visual network analysis, relational ambiguity, and force-directed layouts.Pablo Jensen, Mathieu Jacomy & Tommaso Venturini - 2021 - Big Data and Society 8 (1).
    It is increasingly common in natural and social sciences to rely on network visualizations to explore relational datasets and illustrate findings. Such practices have been around long enough to prove that scholars find it useful to project networks in a two-dimensional space and to use their visual qualities as proxies for their topological features. Yet these practices remain based on intuition, and the foundations and limits of this type of exploration are still implicit. To fill this lack of formalization, (...)
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  32. Visual thinking in mathematics: an epistemological study.Marcus Giaquinto - 2007 - New York: Oxford University Press.
    Visual thinking -- visual imagination or perception of diagrams and symbol arrays, and mental operations on them -- is omnipresent in mathematics. Is this visual thinking merely a psychological aid, facilitating grasp of what is gathered by other means? Or does it also have epistemological functions, as a means of discovery, understanding, and even proof? By examining the many kinds of visual representation in mathematics and the diverse ways in which they are used, Marcus Giaquinto argues (...)
  33.  72
    From phenomenology to field theory: Faraday's visual reasoning.David C. Gooding - 2006 - Perspectives on Science 14 (1):40-65.
    : Faraday is often described as an experimentalist, but his work is a dialectical interplay of concrete objects, visual images, abstract, theoretically-informed visual models and metaphysical precepts. From phenomena described in terms of patterns formed by lines of force he created a general explanation of space-filling systems of force which obey both empirical laws and principles of conservation and economy. I argue that Faraday's articulation of situated experience via visual models into a theory capable of verbal (...)
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  34. Tracking Early Differences in Tetris Perfomance Using Eye Aspect Ratio Extracted Blinks.Gianluca Guglielmo, Michal Klincewicz, Elisabeth Huis in 'T. Veld & Pieter Spronck - 2023 - IEEE Transactions on Games 1:1-8.
    This study aimed to evaluate if eye blinks can be used to discriminate players with different performance in a session of Nintendo Entertainment System (NES) Tetris. To that end, we developed a state-of-the-art method for blink extraction from EAR measures, which is robust enough to be used with data collected by a low-grade webcam such as the ones widely available on laptop computers. Our results show a significant decrease in blink rate per minute (blinks/m) during the first minute of playing (...)
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  35. Gestalt issues in modern neuroscience.Walter H. Ehrenstein, Lothar Spillmann & Viktor Sarris - 2003 - Axiomathes 13 (3-4):433-458.
    We present select examples of how visual phenomena can serve as tools to uncoverbrain mechanisms. Specifically, receptive field organization is proposed as a Gestalt-like neural mechanism of perceptual organization. Appropriate phenomena, such as brightness and orientation contrast, subjective contours, filling-in, and aperture-viewed motion, allow for a quantitative comparison between receptive fields and their psychophysical counterparts, perceptive fields. Phenomenology might thus be extended from the study of perceptual qualities to their transphenomenal substrates, including memory functions. In conclusion, classic issues (...)
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  36. Filling in space.Simon W. Blackburn - 1990 - Analysis 50 (2):62-5.
  37. In Anthropology, the Image Can Never Have the Last Say the Ninth Annual Gdat Debate, Held in the University of Manchester on 6th December 1997.Bill Watson, Peter Wade & Group for Debates in Anthropological Theory - 1998
     
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  38.  82
    Museum education and the project of interpretation in the twenty-first century.Rika Burnham & Elliott Kai-Kee - 2007 - Journal of Aesthetic Education 41 (2):11-13.
    In lieu of an abstract, here is a brief excerpt of the content:Museum Education and the Project of Interpretation in the Twenty-First CenturyRika Burnham and Elliott Kai-KeeThis is what we shall look for as we move: freedom developed by human beings who have acted to make a space for themselves in the presence of others, human beings become "challengers" ready for alternatives, alternatives that include caring and community. And we shall seek, as we go, implications for emancipatory education conducted by (...)
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  39. Visual Imagery in the Thought of Monkeys and Apes.Christopher Gauker - 2017 - In Kristin Andrews & Jacob Beck (eds.), The Routledge Handbook of Philosophy of Animal Minds. Routledge. pp. 25-33.
    Explanations of animal problem-solving often represent our choices as limited to two: first, we can explain the observed behavior as a product of trained responses to sensory stimuli, or second, we can explain it as due to the animal’s possession of general rules utilizing general concepts. My objective in this essay is to bring to life a third alternative, namely, an explanation in terms of imagistic cognition.The theory of imagistic cognition posits representations that locate objects in a multidimensional similarity space. (...)
     
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  40.  59
    Auras in mysticism and synaesthesia: A comparison.M. A. Rodríguez Artacho, L. C. Delgado-Pastor, A. González-Hernández, M. Hochel, O. Iborra, E. Salazar & E. G. Milán - 2012 - Consciousness and Cognition 21 (1):258-268.
    In a variety of synaesthesia, photisms result from affect-laden stimuli as emotional words, or faces of familiar people. For R, who participated in this study, the sight of a familiar person triggers a mental image of "a human silhouette filled with colour". Subjective descriptions of synaesthetic experiences induced by the visual perception of people's figures and faces show similarities with the reports of those who claim to possess the ability to see the aura. It has been proposed that the (...)
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  41. Visual Arguments in Film.Jesús Alcolea-Banegas - 2009 - Argumentation 23 (2):259-275.
    Our aim is to point out some differences between verbal and visual arguments, promoting the rhetorical perspective of argumentation beyond the relevance of logic and pragmatics. In our view, if it is to be rational and successful, film as (visual) argumentation must be addressed to spectators who hold informed beliefs about the theme watched on the screen and the medium’s constraints and conventions. In our reflections to follow, we apply rhetorical analysis to film as a symbolic, human, and (...)
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  42. Visual models in analogical problem solving.Jim Davies, Nancy J. Nersessian & Ashok K. Goel - 2005 - Foundations of Science 10 (1):133-152.
    Visual analogy is believed to be important in human problem solving. Yet, there are few computational models of visual analogy. In this paper, we present a preliminary computational model of visual analogy in problem solving. The model is instantiated in a computer program, called Galatea, which uses a language for representing and transferring visual information called Privlan. We describe how the computational model can account for a small slice of a cognitive-historical analysis of Maxwell’s reasoning about (...)
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  43.  27
    Filling-in as the phenomenal side of binding.Karl Frederick Arrington - 1998 - Behavioral and Brain Sciences 21 (6):749-749.
    The question is broadened from isomorphism to invertible transformation and optimal representation. Motivations are drawn from image compression but with an emphasis on object segmentation. Filling-in is considered as the phenomenal side of the binding process with back-surface filling-in being important. Finally, re-normalization of local filtering by globally integrated context is emphasized.
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  44. Perceptual filling in of artificially induced scotomas in human vision.Vilayanur S. Ramachandran & Richard L. Gregory - 1991 - Nature 350:699-702.
  45. Why explain visual experience in terms of content?Adam Pautz - 2010 - In Bence Nanay (ed.), Perceiving the World. Oxford University Press. pp. 254--309.
  46.  18
    Filling-in models of completion: Rejoinder to Kellman, Garrigan, Shipley, and Keane (2007) and Albert (2007).Barton L. Anderson - 2007 - Psychological Review 114 (2):509-525.
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  47. Visual Studies in Byzantium. A pictorial turn avant la lettre.Emmanuel Alloa - 2013 - Journal of Visual Culture 12 (1):3-29.
    As Hegel once said, in Byzantium, between homoousis and homoiousis, the difference of one letter could decide the life and death of thousands. As this article seeks to argue, Byzantine thinking was not only attentive to conceptual differences, but also to iconic ones. The iconoclastic controversy (726-842 AD) arose from two different interpretations of the nature of images: whereas iconoclastic philosophy is based on the assumption of a fundamental 'iconic identity', iconophile philosophy defends the idea of'iconic difference'. And while the (...)
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  48.  47
    Visual Metaphors in the Sciences: The Case of Epigenetic Landscape Images.Jan Baedke & Tobias Schöttler - 2016 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie:1-22.
    Recent philosophical analyses of the epistemic dimension of images in the sciences show a certain trend in acknowledging potential roles of these images beyond their merely decorative or pedagogical functions. We argue, however, that this new debate has yet paid little attention to a special type of pictures, we call ‘visual metaphor’, and its versatile heuristic potential in organizing data, supporting communication, and guiding research, modeling, and theory formation. Based on a case study of Conrad Hal Waddington’s epigenetic landscape (...)
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  49.  31
    Visual Experiences in Cinquecento Theatrical Spaces.Javier Berzal de Dios - 2018 - Toronto, ON, Canada: University of Toronto Press.
    Through an interdisciplinary examination of sixteenth-century theatre, Visual Experiences in Cinquecento Theatrical Spaces studies the performative aspects of the early modern stage, paying special attention to the overlooked complexities of audience experience. Examining the period’s philosophical and aesthetic ideas about space, place, and setting, the book shows how artists consciously moved away from traditional representations of real spaces on stage, instead providing their audiences with more imaginative and collaborative engagements that were untethered by strict definitions of naturalism. In this (...)
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  50. Filling in versus finding out: A ubiquitous confusion in cognitive science.Daniel C. Dennett - 1992 - In H. Pick, P. Van den Broek & D. Knill (eds.), [Book Chapter]. American Psychological Association.
    One of the things you learn if you read books and articles in (or about) cognitive science is that the brain does a lot of "filling in"--not filling in, but "filling in"--in scare quotes. My claim today will be that this way of talking is not a safe bit of shorthand, or an innocent bit of temporizing, but a source of deep confusion and error. The phenomena described in terms of "filling in" are real, surprising, and (...)
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