Results for ' retinotopic representations'

973 found
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  1.  48
    A retinotopic representation of filling in: Further supporting evidence.Ikuya Murakami - 1998 - Behavioral and Brain Sciences 21 (6):765-766.
    A few findings from our laboratory are provided as evidence favoring “isomrphism” in filling-in. One is the responsivity of macaque-cortical area V1 cells to a stimulus designed for surface filling-in at the blind spot. Another is a phenomenological observation of motion aftereffect confined within a filled-in surface at the blind spot. Our recent study on the monkey's perception of surface filling-in at a scotoma is also mentioned.
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  2.  23
    Shape representation by second-order isomorphism and the chorus model: SIC.Shimon Edelman - 1998 - Behavioral and Brain Sciences 21 (4):484-493.
    Proximal mirroring of distal similarities is, at present, the only solution to the problem of representation that is both theoretically sound (for reasons discussed in the target article) and practically feasible (as attested by the performance of the Chorus model). Augmenting the latter by a capability to refer selectively to retinotopically defined object fragments should lead to a comprehensive theory of shape processing.
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  3.  23
    Extrastriate activity reflects the absence of local retinal input.Poutasi W. B. Urale, Lydia Zhu, Roberta Gough, Derek Arnold & Dietrich Samuel Schwarzkopf - 2023 - Consciousness and Cognition 114 (C):103566.
    The physiological blind spot corresponds to the optic disc where the retina contains no light-detecting photoreceptor cells. Our perception seemingly fills in this gap in input. Here we suggest that rather than an active process, such perceptual filling-in could instead be a consequence of the integration of visual inputs at higher stages of processing discounting the local absence of retinal input. Using functional brain imaging, we resolved the retinotopic representation of the physiological blind spot in early human visual cortex (...)
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  4.  62
    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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  5.  32
    Transcranial Magnetic Stimulation to the Occipital Place Area Biases Gaze During Scene Viewing.George L. Malcolm, Edward H. Silson, Jennifer R. Henry & Chris I. Baker - 2018 - Frontiers in Human Neuroscience 12:327695.
    We can understand viewed scenes and extract task-relevant information within a few hundred milliseconds. This process is generally supported by three cortical regions that show selectivity for scene images: parahippocampal place area (PPA), medial place area (MPA) and occipital place area (OPA). Prior studies have focused on the visual information each region is responsive to, usually within the context of recognition or navigation. Here, we move beyond these tasks to investigate gaze allocation during scene viewing. Eye movements rely on a (...)
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  6.  68
    Four frames suffice: A provisional model of vision and space.Jerome A. Feldman - 1985 - Behavioral and Brain Sciences 8 (2):265-289.
    This paper presents a general computational treatment of how mammals are able to deal with visual objects and environments. The model tries to cover the entire range from behavior and phenomenological experience to detailed neural encodings in crude but computationally plausible reductive steps. The problems addressed include perceptual constancies, eye movements and the stable visual world, object descriptions, perceptual generalizations, and the representation of extrapersonal space.The entire development is based on an action-oriented notion of perception. The observer is assumed to (...)
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  7.  16
    Perception and action without 3D coordinate frames.A. Glennerster & J. Stazicker - unknown
    Neuroscientists commonly assume that the brain generates representations of a scene in various non-retinotopic 3D coordinate frames, for example in 'egocentric' and 'allocentric' frames. Although neurons in early visual cortex might be described as representing a scene in an eye-centred frame, using 2 dimensions of visual direction and one of binocular disparity, there is no convincing evidence of similarly organized cortical areas using non-retinotopic 3D coordinate frames nor of any systematic transfer of information from one frame to (...)
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  8. Beyond the classic receptive field: the effect of contextual stimuli.Lothar Spillmann, Birgitta Dresp-Langley & Chia-Huei Tseng - 2015 - Journal of Vision 15:1-22.
    Following the pioneering studies of the receptive field (RF), the concept gained further significance for visual perception by the discovery of input effects from beyond the classical RF. These studies demonstrated that neuronal responses could be modulated by stimuli outside their RFs, consistent with the perception of induced brightness, color, orientation, and motion. Lesion scotomata are similarly modulated perceptually from the surround by RFs that have migrated from the interior to the outer edge of the scotoma and in this way (...)
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  9.  57
    Afterimages: A tool for defining the neural correlate of visual consciousness.Kuno Kirschfeld - 1999 - Consciousness and Cognition 8 (4):462-483.
    Our visual system not only mediates information about the visual environment but is capable of generating pictures of nonexistent worlds: afterimages, illusions, phosphenes, etc. We are ''aware'' of these pictures just as we are aware of the images of natural, physical objects. This raises the question: is the neural correlate of consciousness (NCC) of such images the same as that of images of physical objects? Images of natural objects have some properties in common with afterimages (e.g., stability of verticality) but (...)
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  10. Focus in discourse: Alternative semantics vs. a representational approach in sdrt.Semantics Vs A. Representational - 2004 - In J.M. Larrazabal & L.A Perez Miranda (eds.), Language, Knowledge, and Representation. Kluwer Academic Publishers. pp. 51.
     
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  11. Interpretation in Science and in the Arts.Art as Representation - 1993 - In George Levine (ed.), Realism and Representation. University of Wisconsin Press.
     
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  12. Elisabetta ladavas and Alessandro farne.Representations Of Space & Near Specific Body Parts - 2004 - In Charles Spence & Jon Driver (eds.), Crossmodal Space and Crossmodal Attention. Oxford University Press.
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  13.  22
    subset of Treisman and DeSchepper's (1996) experiments.Can Object Representations Be - 2012 - In Jeremy Wolfe & Lynn Robertson (eds.), From Perception to Consciousness: Searching with Anne Treisman. Oxford University Press. pp. 253.
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  14. Buata MALELA.Comme Représentation Et Mode de Proximité & Avec Soi-Même Et le Monde - 2007 - Cahiers Internationaux de Symbolisme 116:85.
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  15. Structural representations: causally relevant and different from detectors.Paweł Gładziejewski & Marcin Miłkowski - 2017 - Biology and Philosophy 32 (3):337-355.
    This paper centers around the notion that internal, mental representations are grounded in structural similarity, i.e., that they are so-called S-representations. We show how S-representations may be causally relevant and argue that they are distinct from mere detectors. First, using the neomechanist theory of explanation and the interventionist account of causal relevance, we provide a precise interpretation of the claim that in S-representations, structural similarity serves as a “fuel of success”, i.e., a relation that is exploitable (...)
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  16.  83
    Showing, Sensing, and Seeming: Distinctively Sensory Representations and Their Contents.Dominic Gregory - 2013 - New York: Oxford University Press UK.
    Certain representations are bound in special ways to our sensory capacities; consider, for instance, pictures, sound recordings, and the various forms of mental sensory imagery. What do these representations have in common, and what makes them different from representations of other kinds? Dominic Gregory employs novel ideas on perceptual states and sensory perspectives to explain the special nature of the contents of distinctively sensory representations. The book contains extensive discussions of e.g. perceptual imagination, pictorial representation, and (...)
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  17.  27
    Rules and representations.Noam Chomsky (ed.) - 1980 - New York: Columbia University Press.
    In Rules and Representations, first published in 1980, Noam Chomsky lays out many of the concepts that have made his approach to linguistics and human cognition so instrumental to our understanding of language.Chomsky arrives at his well-known position that there is a universal grammar, structured in the human mind and common to all human languages. Based on Chomsky's 1978 Woodbridge Lectures, this edition contains revised versions of the lectures and two new essays.
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  18. Thinking With External Representations.David Kirsh - 2010 - AI and Society 25 (4):441-454.
    Why do people create extra representations to help them make sense of situations, diagrams, illustrations, instructions and problems? The obvious explanation— external representations save internal memory and com- putation—is only part of the story. I discuss seven ways external representations enhance cognitive power: they change the cost structure of the inferential landscape; they provide a structure that can serve as a shareable object of thought; they create persistent referents; they facilitate re- representation; they are often a more (...)
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  19. Obscure representations from a pragmatic point of view.Francey Russell - 2024 - European Journal of Philosophy 32 (4):1068-1085.
    Kant's most sustained discussion of obscure representations can be found in the first book of his Anthropology from a Pragmatic Point of View. What is puzzling is that in the middle of the section devoted to the topic, Kant asserts that “because this field can only be perceived in his passive side as a play of sensations, the theory of obscure representations belongs only to physiological anthropology, and so it is properly disregarded here.” So, do obscure representations (...)
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  20. Representations: philosophical essays on the foundations of cognitive science.Jerry A. Fodor - 1981 - Cambridge: MIT Press.
    Introduction: Something on the State of the Art 1 I. Functionalism and Realism 1. Operationalism and Ordinary Language 35 2. The Appeal to Tacit Knowledge in Psychological Explanations 63 3. What Psychological States are Not 79 4. Three Cheers for Propositional Attitudes 100 II. Reduction and Unity of Science 5. Special Sciences 127 6. Computation and Reduction 146 III. Intensionality and Mental Representation 7. Propositional Attitudes 177 8. Tom Swift and His Procedural Grandmother 204 9. Methodological Solipsism Considered as a (...)
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  21.  76
    Representations in Distributed Cognitive Tasks.Jiaje Zhang & Donald A. Norman - 1994 - Cognitive Science 18 (1):87-122.
    In this article we propose a theoretical framework of distributed representations and a methodology of representational analysis for the study of distributed cognitive tasks—tasks that require the processing of information distributed across the internal mind and the external environment. The basic principle of distributed representations Is that the representational system of a distributed cognitive task is a set of internal and external representations, which together represent the abstract structure of the task. The basic strategy of representational analysis (...)
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  22. Is the free-energy principle a formal theory of semantics? From variational density dynamics to neural and phenotypic representations.Inês Hipólito, Maxwell Ramstead & Karl Friston - 2020 - Entropy 1 (1):1-30.
    The aim of this paper is twofold: (1) to assess whether the construct of neural representations plays an explanatory role under the variational free-energy principle and its corollary process theory, active inference; and (2) if so, to assess which philosophical stance - in relation to the ontological and epistemological status of representations - is most appropriate. We focus on non-realist (deflationary and fictionalist-instrumentalist) approaches. We consider a deflationary account of mental representation, according to which the explanatorily relevant contents (...)
     
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  23. Investigating neural representations: the tale of place cells.William Bechtel - 2016 - Synthese 193 (5):1287-1321.
    While neuroscientists often characterize brain activity as representational, many philosophers have construed these accounts as just theorists’ glosses on the mechanism. Moreover, philosophical discussions commonly focus on finished accounts of explanation, not research in progress. I adopt a different perspective, considering how characterizations of neural activity as representational contributes to the development of mechanistic accounts, guiding the investigations neuroscientists pursue as they work from an initial proposal to a more detailed understanding of a mechanism. I develop one illustrative example involving (...)
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  24. Horizontal spatial representations of time: evidence for the STEARC effect.Masami Ishihara, Peter Keller, Yves Rossetti & Wolfgang Prinz - 2008 - Cortex 44 (4):454–61.
     
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  25.  60
    Representations and retrieval processes in short-term memory: Recognition and recall of faces.Edward E. Smith & Gerald D. Nielsen - 1970 - Journal of Experimental Psychology 85 (3):397.
  26. Formal Representations of Belief.Franz Huber - 2008 - Stanford Encyclopedia of Philosophy.
    Epistemology is the study of knowledge and justified belief. Belief is thus central to epistemology. It comes in a qualitative form, as when Sophia believes that Vienna is the capital of Austria, and a quantitative form, as when Sophia's degree of belief that Vienna is the capital of Austria is at least twice her degree of belief that tomorrow it will be sunny in Vienna. Formal epistemology, as opposed to mainstream epistemology (Hendricks 2006), is epistemology done in a formal way, (...)
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  27.  46
    Manipulating representations.Angelo Nm Recchia-Luciani - 2012 - Biosemiotics 5 (1):95-120.
    The present paper proposes a definition for the complex polysemic concepts of consciousness and awareness (in humans as well as in other species), and puts forward the idea of a progressive ontological development of consciousness from a state of ‘childhood’ awareness, in order to explain that humans are not only able to manipulate objects, but also their mental representations. The paper builds on the idea of qualia intended as entities posing regular invariant requests to neural processes, trough the permanence (...)
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  28. Generics and mental representations.Ariel Cohen - 2004 - Linguistics and Philosophy 27 (5):529-556.
    It is widely agreed that generics tolerate exceptions. It turns out, however, that exceptions are tolerated only so long as they do not violate homogeneity: when the exceptions are not concentrated in a salient “chunk” of the domain of the generic. The criterion for salience of a chunk is cognitive: it is dependent on the way in which the domain is mentally represented. Findings of psychological experiments about the ways in which different domains are represented, and the actors affecting such (...)
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  29. Visual Representations and Confirmation.Laura Perini - 2005 - Philosophy of Science 72 (5):913-926.
    Publications in contemporary science journals often include figures like graphs, diagrams, photographs, and MRIs, which are presented as support for the hypothesis the author is defending. As a first step to explaining how figures contribute to confirmation, I present an account of visual representation and use examples to show how the visual format is involved in the support those figures provide the authors’ conclusions. I then show that attempts to explain what figures contribute to scientific arguments without analyzing them as (...)
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  30.  73
    The representations of the approximate number system.Stefan Buijsman - 2021 - Philosophical Psychology 34 (2):300-317.
    The Approximate Number System (ANS) is a system that allows us to distinguish between collections based on the number of items, though only if the ratio between numbers is high enough. One of the questions that has been raised is what the representations involved in this system represent. I point to two important constraints for any account: (a) it doesn’t involve numbers, and (b) it can account for the approximate nature of the ANS. Furthermore, I argue that representations (...)
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  31. Double victims: Fictional representations of women in the holocaust.Shauna Copeland - 2003 - Inquiry: The University of Arkansas Undergraduate Research Journal 4.
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  32. What are linguistic representations?David Adger - 2022 - Mind and Language 37 (2):248-260.
    Linguistic representations are taken by some to be representations of something, specifically of Standard Linguistic Entities, such as phonemes, clauses, noun phrases etc. This perspective takes them to be intentional. Rey (2021) further argues that the SLEs themselves are inexistent. Here I argue that linguistic representations are simply structures, abstractions of brain states, and hence not intentional, and show how they nevertheless connect to the systems that use them.
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  33.  52
    Shared Representations as Coordination Tools for Interaction.Giovanni Pezzulo - 2011 - Review of Philosophy and Psychology 2 (2):303-333.
    Why is interaction so simple? This article presents a theory of interaction based on the use of shared representations as “coordination tools” (e.g., roundabouts that facilitate coordination of drivers). By aligning their representations (intentionally or unintentionally), interacting agents help one another to solve interaction problems in that they remain predictable, and offer cues for action selection and goal monitoring. We illustrate how this strategy works in a joint task (building together a tower of bricks) and discuss its requirements (...)
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  34. Visual representations in science.William Goodwin - 2009 - Philosophy of Science 76 (3):372-390.
    This paper evaluates a general argument for the conclusion that visual representations in science must play the role of truth bearers if they are to figure as legitimate contributors to scientific arguments and explanations. The argument is found to be unsound. An alternative approach to assessing the role of visual representations in science is exemplified by an examination of the role of structural formulas in organic chemistry. Structural formulas are found not to play the role of truth bearers; (...)
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  35.  71
    Forming and updating object representations without awareness: Evidence from motion-induced blindness.Stephen R. Mitroff & Brian J. Scholl - 2005 - Vision Research 45 (8):961-967.
  36.  22
    Valent Representations, Bodily Feelings, and Social Norms.Christine Sievers & Rebekka Hufendiek - 2024 - Journal of Philosophy of Emotion 5 (2):24-29.
    In this commentary, we discuss Tom Cochrane’s theory of emotions. Cochrane offers an appealingly unified account of valent representations, ranging from simple responses to complex representations within a mechanistic framework. This offers some guidance as to how we might conceive of emotions as simple action-guiding responses in infants and animals, as well as context-sensitive evaluative states. While Cochrane argues for the centrality of bodily feelings, he does not consider his approach to be embodied in the narrower sense. We (...)
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  37. Steering Representations—Towards a Critical Understanding of Digital Twins.Paulan Korenhof, Vincent Blok & Sanneke Kloppenburg - 2021 - Philosophy and Technology 34 (4):1751-1773.
    Digital Twins are conceptualised in the academic technical discourse as real-time realistic digital representations of physical entities. Originating from product engineering, the Digital Twin quickly advanced into other fields, including the life sciences and earth sciences. Digital Twins are seen by the tech sector as the new promising tool for efficiency and optimisation, while governmental agencies see it as a fruitful means for improving decision-making to meet sustainability goals. A striking example of the latter is the European Commission who (...)
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  38.  76
    Neural Representations Beyond “Plus X”.Alessio Plebe & Vivian M. De La Cruz - 2018 - Minds and Machines 28 (1):93-117.
    In this paper we defend structural representations, more specifically neural structural representation. We are not alone in this, many are currently engaged in this endeavor. The direction we take, however, diverges from the main road, a road paved by the mathematical theory of measure that, in the 1970s, established homomorphism as the way to map empirical domains of things in the world to the codomain of numbers. By adopting the mind as codomain, this mapping became a boon for all (...)
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  39.  18
    Representations of the Natural System in the Nineteenth Century.Robert J. O' Hara - 1991 - Biology and Philosophy 6 (2):255.
    ‘The Natural System’ is the abstract notion of the order in living diversity. The richness and complexity of this notion is revealed by the diversity of representations of the Natural System drawn by ornithologists in the Nineteenth Century. These representations varied in overall form from stars, to circles, to maps, to evolutionary trees and cross-sections through trees. They differed in their depiction of affinity, analogy, continuity, directionality, symmetry, reticulation and branching, evolution, and morphological convergence and divergence. Some (...) were two-dimensional, and some were three-dimensional; n-dimensional representations were discussed but never illustrated. The study of diagrammatic representations of the Natural System is made difficult by the frequent failure of authors to discuss them in their texts, and by the consequent problem of distinguishing features which carried meaning from arbitrary features and printing conventions which did not. Many of the systematics controversies of the last thirty years have their roots in the conceptual problems which surrounded the Natural System in the late 1800s, problems which were left unresolved when interest in higher-level systematics declined at the turn of this century. (shrink)
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  40.  28
    Conceptual representations and figurative language in language shift.Maïa Ponsonnet - 2017 - Cognitive Linguistics 28 (4):631-671.
    This article explores the correlations between linguistic figurative features and their corresponding conceptual representations, by considering their respective continuities and discontinuities in language shift. I compare the figurative encoding of emotions in Kriol, a creole of northern Australia, with those of Dalabon, one of the languages replaced by this creole, with a particular focus on evidence from metaphorical gestures. The conclusions are three-fold. Firstly, the prominent figurative association between the body and the emotions observed in Dalabon is, overall, not (...)
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  41. Representations, Targets, and Attitudes.Robert Cummins - 1996 - MIT Press.
  42. (4 other versions)Rules and representations.Noam A. Chomsky - 1980 - Behavioral and Brain Sciences 3 (127):1-61.
    The book from which these sections are excerpted is concerned with the prospects for assimilating the study of human intelligence and its products to the natural sciences through the investigation of cognitive structures, understood as systems of rules and representations that can be regarded as These mental structui′es serve as the vehicles for the exercise of various capacities. They develop in the mind on the basis of an innate endowment that permits the growth of rich and highly articulated structures (...)
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  43. Memory representations during slow change blindness.Haley G. Frey, Lua Koenig, Ned Block, Biyu He & Jan Brascamp - 2024 - Journal of Vision 24 (9):1-8.
    Classic change blindness is the phenomenon where seemingly obvious changes which coincide with visual disruptions (such as blinks or brief blanks) go unnoticed by an attentive observer. Some early work into the causes of classic change blindness suggested that any pre-change stimulus representation is overwritten by a representation of the altered post-change stimulus, preventing change detection. However, recent work revealed that even when observers do maintain memory representations of both the pre- and post-change stimulus states, they can still miss (...)
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  44. (2 other versions)Scientific theories as intervening representations.Thomas Mormann & Andoni Ibarra - 2006 - Theoria 21 (1):21-38.
    In this paper some classical representational ideas of Hertz and Duhem are used to show how the dichotomy between representation and intervention can be overcome. More precisely, scientific theories are reconstructed as complex networks of intervening representations (or representational interventions). The formal apparatus developed is applied to elucidate various theoretical and practical aspects of the in vivo/in vitro problem of biochemistry. Moreover, adjoint situations (Galois connections) are used to explain the relation berween empirical facts and theoretical laws in a (...)
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  45. Intentions and Motor Representations: the Interface Challenge.Myrto Mylopoulos & Elisabeth Pacherie - 2017 - Review of Philosophy and Psychology 8 (2):317-336.
    A full account of purposive action must appeal not only to propositional attitude states like beliefs, desires, and intentions, but also to motor representations, i.e., non-propositional states that are thought to represent, among other things, action outcomes as well as detailed kinematic features of bodily movements. This raises the puzzle of how it is that these two distinct types of state successfully coordinate. We examine this so-called “Interface Problem”. First, we clarify and expand on the nature and role of (...)
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  46.  32
    Social Representations Theory: A Progressive Research Programme for Social Psychology.Martin W. Bauer & George Gaskell - 2008 - Journal for the Theory of Social Behaviour 38 (4):335-353.
    The study “Psychoanalysis—its image and its public” intimates that common sense is increasingly informed by science. But common sense asserts its autonomy and, in turn, may affect the trajectory of science. This is a process that leads to many differentiations—in common sense, in scientific innovation and in political and regulatory structures. Bauer and Gaskell's toblerone model of triangles of mediation provided a distillation of their reading of “La Psychanalyse.” Here it was argued that representations are multi-modal phenomena necessitating the (...)
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  47. Are Generative Models Structural Representations?Marco Facchin - 2021 - Minds and Machines 31 (2):277-303.
    Philosophers interested in the theoretical consequences of predictive processing often assume that predictive processing is an inferentialist and representationalist theory of cognition. More specifically, they assume that predictive processing revolves around approximated Bayesian inferences drawn by inverting a generative model. Generative models, in turn, are said to be structural representations: representational vehicles that represent their targets by being structurally similar to them. Here, I challenge this assumption, claiming that, at present, it lacks an adequate justification. I examine the only (...)
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  48. Representations without rules, connectionism and the syntactic argument.Kenneth Aizawa - 1994 - Synthese 101 (3):465-92.
    Terry Horgan and John Tienson have suggested that connectionism might provide a framework within which to articulate a theory of cognition according to which there are mental representations without rules (RWR) (Horgan and Tienson 1988, 1989, 1991, 1992). In essence, RWR states that cognition involves representations in a language of thought, but that these representations are not manipulated by the sort of rules that have traditionally been posited. In the development of RWR, Horgan and Tienson attempt to (...)
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  49.  28
    Distributed representations of structure: A theory of analogical access and mapping.John E. Hummel & Keith J. Holyoak - 1997 - Psychological Review 104 (3):427-466.
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  50. Taking time : temporal representations and cultural politics.Richard Terdiman - 2008 - In Tyrus Miller (ed.), Given world and time: temporalities in context. New York: CEU Press.
     
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