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  1. Dreaming of a stable world: vision and action in sleep.Melanie Rosen - 2019 - Synthese 198 (17):4107-4142.
    Our eyes, bodies, and perspectives are constantly shifting as we observe the world. Despite this, we are very good at distinguishing between self-caused visual changes and changes in the environment: the world appears mostly stable despite our visual field moving around. This, it seems, also occurs when we are dreaming. As we visually investigate the dream environment, we track moving objects with our dream eyes, examine objects, and shift focus. These movements, research suggests, are reflected in the rapid movements or (...)
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  • Aphantasia, dysikonesia, anauralia: call for a single term for the lack of mental imagery – Commentary on Dance et al. (2021) and Hinwar and Lambert (2021).Merlin Monzel, David Mitchell, Fiona Macpherson, Joel Pearson & Adam Zeman - forthcoming - Cortex.
    Recently, the term ‘aphantasia’ has become current in scientific and public discourse to denote the absence of mental imagery. However, new terms for aphantasia or its subgroups have recently been proposed, e.g. ‘dysikonesia’ or ‘anauralia’, which complicates the literature, research communication and understanding for the general public. Before further terms emerge, we advocate the consistent use of the term ‘aphantasia’ as it can be used flexibly and precisely, and is already widely known in the scientific community and among the general (...)
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  • Aphantasia, imagination and dreaming.Cecily M. K. Whiteley - 2020 - Philosophical Studies 178 (6):2111-2132.
    Aphantasia is a recently discovered disorder characterised by the total incapacity to generate visual forms of mental imagery. This paper proposes that aphantasia raises important theoretical concerns for the ongoing debate in the philosophy and science of consciousness over the nature of dreams. Recent studies of aphantasia and its neurobehavioral correlates reveal that the majority of aphantasics, whilst unable to produce visual imagery while awake, nevertheless retain the capacity to experience rich visual dreams. This finding constitutes a novel explanandum for (...)
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  • How to distinguish memory representations? A historical and critical journey.Marina Trakas - 2019 - Voluntas: Revista Internacional de Filosofia 10 (3):53-86.
    Memory is not a unitary phenomenon. Even among the group of long-term individual memory representations (known in the literature as declarative memory) there seems to be a distinction between two kinds of memory: memory of personally experienced events (episodic memory) and memory of facts or knowledge about the world (semantic memory). Although this distinction seems very intuitive, it is not so clear in which characteristic or set of interrelated characteristics lies the difference. In this article, I present the different criteria (...)
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  • Unconscious Imagination and the Mental Imagery Debate.Berit Brogaard & Dimitria Electra Gatzia - 2017 - Frontiers in Psychology 8.
    Traditionally, philosophers have appealed to the phenomenological similarity between visual experience and visual imagery to support the hypothesis that there is significant overlap between the perceptual and imaginative domains. The current evidence, however, is inconclusive: while evidence from transcranial brain stimulation seems to support this conclusion, neurophysiological evidence from brain lesion studies (e.g., from patients with brain lesions resulting in a loss of mental imagery but not a corresponding loss of perception and vice versa) indicates that there are functional and (...)
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  • Personal memories.Marina Trakas - 2015 - Dissertation, Macquarie University
    This thesis is intended to analyze a mental phenomenon widely neglected in current philosophical discussions: personal memories. The first part presents a general framework to better understand what personal memories are, how we access our personal past and what we access about our personal past. Chapter 1 introduces traditional theories of memory: direct realism and representationalism in their different versions, as well as some objections. I defend here a particular form of representationalism that is based on the distinction between content, (...)
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  • Visual cognition: An introduction.Steven Pinker - 1984 - Cognition 18 (1-3):1-63.
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  • Do we have one brain or two? Babylon revisited?Aaron Smith - 1985 - Behavioral and Brain Sciences 8 (4):647-648.
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  • Reinterpreting Visual Patterns in Mental Imagery.Ronald A. Finks, Steven Pinker & Martha J. Farah - 1989 - Cognitive Science 13 (1):51-78.
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  • Hemisphere differences before 1800.Gert-Jan C. Lokhorst - 1985 - Behavioral and Brain Sciences 8 (4):642-642.
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  • Right and left as symbols.M. C. Corballis - 1985 - Behavioral and Brain Sciences 8 (4):636-637.
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  • Pre-frontal executive committee for perception, working memory, attention, long-term memory, motor control, and thinking: A tutorial review.Bill Faw - 2003 - Consciousness and Cognition 12 (1):83-139.
    As an explicit organizing metaphor, memory aid, and conceptual framework, the prefrontal cortex may be viewed as a five-member ‘Executive Committee,’ as the prefrontal-control extensions of five sub-and-posterior-cortical systems: the ‘Perceiver’ is the frontal extension of the ventral perceptual stream which represents the world and self in object coordinates; the ‘Verbalizer’ is the frontal extension of the language stream which represents the world and self in language coordinates; the ‘Motivator’ is the frontal cortical extension of a subcortical extended-amygdala stream which (...)
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  • Mental imagery.Nigel J. T. Thomas - 2001 - Stanford Encyclopedia of Philosophy.
    Mental imagery (varieties of which are sometimes colloquially refered to as “visualizing,” “seeing in the mind's eye,” “hearing in the head,” “imagining the feel of,” etc.) is quasi-perceptual experience; it resembles perceptual experience, but occurs in the absence of the appropriate external stimuli. It is also generally understood to bear intentionality (i.e., mental images are always images of something or other), and thereby to function as a form of mental representation. Traditionally, visual mental imagery, the most discussed variety, was thought (...)
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  • Propositional attitude psychology as an ideal type.Justin Schwartz - 1992 - Topoi 11 (1):5-26.
    This paper critiques the view, widely held by philosophers of mind and cognitive scientists, that psychological explanation is a matter of ascribing propositional attitudes (such as beliefs and desires) towards language-like propositions in the mind, and that cognitive mental states consist in intentional attitudes towards propositions of a linguistic quasi-linguistic nature. On this view, thought is structured very much like a language. Denial that propositional attitude psychology is an adequate account of mind is therefore, on this view, is tantamount to (...)
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  • Imaginability as Representability: A Wittgensteinian Approach to Aphantasia.Christian Oliver Scholz - 2023 - Master of Logic Thesis (Mol) Series.
    Aphantasia, i.e., the inability to voluntarily form visual mental images, affects approximately 2 to 5 percent of the population and plays an important role in a more general debate revolving around the role of imagery for our cognition. This thesis investigates aphantasia by means of an interdisciplinary approach, combining insights from contemporary neuroscientific research with historical philosophical arguments, with a specific focus on the later philosophy of Ludwig Wittgenstein. A new theoretical concept, meta-imagination, is developed and it is argued that (...)
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  • Reinventing hemisphere differences.John L. Bradshaw - 1985 - Behavioral and Brain Sciences 8 (4):635-635.
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  • An explanation for normal and anomalous drawing ability and some implications for research on perception and imagery.Jennifer A. McMahon - 2006 - Visual Arts Research 28 (1):38-52.
    The aim of this paper is to draw the attention of those conducting research on imagery to the different kinds of visual information deployed by expert drawers compared to non-expert drawers. To demonstrate this difference I draw upon the cognitive science literature on vision and imagery to distinguish between three different ways that visual phenomena can be represented in memory: structural descriptions, denotative descriptions, and configural descriptions. Research suggests that perception and imagery deploy the same mental processes and that the (...)
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  • The ability to recall scenes is a stable individual difference: Evidence from autobiographical remembering.David C. Rubin - 2020 - Cognition 197 (C):104164.
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  • A Systematic Investigation of the Effect of Action Observation Training and Motor Imagery Training on the Development of Mental Representation Structure and Skill Performance.Taeho Kim, Cornelia Frank & Thomas Schack - 2017 - Frontiers in Human Neuroscience 11.
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  • The pre-reflective experience of “I” as a continuously existing being: The role of temporal functional binding.Peter A. White - 2015 - Consciousness and Cognition 31:98-114.
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  • Laterality as a means and laterality as an end.Paul Eling - 1985 - Behavioral and Brain Sciences 8 (4):637-637.
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  • Lateralization and sex.Ursula Mittwoch - 1985 - Behavioral and Brain Sciences 8 (4):644-644.
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  • On Picturing a Candle: The Prehistory of Imagery Science.Matthew MacKisack, Susan Aldworth, Fiona Macpherson, John Onians, Crawford Winlove & Adam Zeman - 2016 - Frontiers in Psychology 7.
    The past 25 years have seen a rapid growth of knowledge about brain mechanisms involved in visual mental imagery. These advances have largely been made independently of the long history of philosophical – and even psychological – reckoning with imagery and its parent concept ‘imagination’. We suggest that the view from these empirical findings can be widened by an appreciation of imagination’s intellectual history, and we seek to show how that history both created the conditions for – and presents challenges (...)
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  • The many-mind problem: Neuroscience or neurotheology?John C. Marshall - 1985 - Behavioral and Brain Sciences 8 (4):642-643.
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  • Scenes enable a sense of reliving: Implications for autobiographical memory.David C. Rubin, Samantha A. Deffler & Sharda Umanath - 2019 - Cognition 183:44-56.
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  • Rapid Eye Movements in Sleep Furnish a Unique Probe Into Consciousness.Charles C.-H. Hong, James H. Fallon, Karl J. Friston & James C. Harris - 2018 - Frontiers in Psychology 9:377231.
    The neural correlates of rapid eye movements (REMs) in sleep are extraordinarily robust; including REM-locked activation in the retrosplenial cortex, the supplementary eye field and areas overlapping cholinergic basal nucleus. The phenomenology of REMs speaks to the notion that perceptual experience in both sleep and wakefulness is a constructive process – in which we generate predictions of sensory inputs and then test those predictions through actively sampling the sensorium with eye movements. On this view, REMs during sleep may index an (...)
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  • Action simulation in hallucination-prone adolescents.Tarik Dahoun, Stephan Eliez, Fei Chen, Deborah Badoud, Maude Schneider, Frank Larøi & Martin Debbane - 2013 - Frontiers in Human Neuroscience 7.
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  • Domain specificity in conceptual development: Neuropsychological evidence from autism.Alan M. Leslie & Laila Thaiss - 1992 - Cognition 43 (3):225-251.
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  • Towards a Pluralistic Account of Thought Experiments.Mélanie Frappier - forthcoming - Philosophia:1-9.
    In light of our knowledge about neurodiversity, I argue that the cognitive science framework Miščević uses in Thought Experiments must be broaden to create a pluralistic account of thought experimentation, one able to account for the many ways thought experiments are replicated using not only visual models, but also arguments, conceptual analyses, and images as some of the many instruments used in the laboratory of our mind.
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  • The ambidextral culture society and the “duality of mind”.Lauren Julius Harris - 1985 - Behavioral and Brain Sciences 8 (4):639-640.
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  • Experiencing two selves: The history of a mistake.Roland Puccetti - 1985 - Behavioral and Brain Sciences 8 (4):646-647.
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  • Continuity of thought on duality of brain and mind?Jane M. Oppenheimer - 1985 - Behavioral and Brain Sciences 8 (4):645-646.
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  • What textbooks between 1887 and 1911 said about hemisphere differences.David J. Murray - 1985 - Behavioral and Brain Sciences 8 (4):644-645.
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  • Two hemispheres do not make a dichotomy.A. David Milner - 1985 - Behavioral and Brain Sciences 8 (4):643-644.
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  • Scientific amnesia.David E. Leary - 1985 - Behavioral and Brain Sciences 8 (4):641-642.
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  • Seeing and imagining in the cerebral hemispheres: A computational approach.Stephen M. Kosslyn - 1987 - Psychological Review 94 (2):148-175.
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  • The case for applied history of medicine, and the place of Wigan.H. Isler & M. Regard - 1985 - Behavioral and Brain Sciences 8 (4):640-641.
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  • Nineteenth-century ideas on hemisphere differences and "duality of mind".Anne Harrington - 1985 - Behavioral and Brain Sciences 8 (4):617-660.
    It is widely felt that the sorts of ideas current in modern laterality and split-brain research are largely without precedent in the behavioral and brain sciences. This paper not only challenges that view, but makes a first attempt to define the relevance of older concepts and data to present research programs.
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  • Historical and scientific issues en route from Wigan to Sperry.Anne Harrington - 1985 - Behavioral and Brain Sciences 8 (4):648-659.
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  • Nineteenth-century views on madness and hypnosis: A 1985 perspective.J. Gruzelier - 1985 - Behavioral and Brain Sciences 8 (4):638-639.
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  • Brain theory and the uses of history.Samuel H. Greenblatt - 1985 - Behavioral and Brain Sciences 8 (4):637-638.
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  • Mental rotation and orientation-invariant object recognition: Dissociable processes.Martha J. Farah & Katherine M. Hammond - 1988 - Cognition 29 (1):29-46.
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  • Hemisphere asymmetry: Old views in new light.Jozef Černáček - 1985 - Behavioral and Brain Sciences 8 (4):636-636.
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  • Autonomic nervous system correlates in movement observation and motor imagery.C. Collet, F. Di Rienzo, N. El Hoyek & A. Guillot - 2013 - Frontiers in Human Neuroscience 7.
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