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  1. The relevance of the machine metaphor.Thomas Roeper - 1983 - Behavioral and Brain Sciences 6 (3):413.
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  • Evidence for instrumental plasticity in the cardiovascular system is circumstantial.Larry E. Roberts - 1986 - Behavioral and Brain Sciences 9 (2):301-302.
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  • Nonconscious motor images.Giacomo Rizzolatti - 1994 - Behavioral and Brain Sciences 17 (2):220-220.
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  • Computing in the nick of time.J. Brendan Ritchie & Colin Klein - 2023 - Ratio 36 (3):169-179.
    The medium‐independence of computational descriptions has shaped common conceptions of computational explanation. So long as our goal is to explain how a system successfully carries out its computations, then we only need to describe the abstract series of operations that achieve the desired input–output mapping, however they may be implemented. It is argued that this abstract conception of computational explanation cannot be applied to so‐called real‐time computing systems, in which meeting temporal deadlines imposed by the systems with which a device (...)
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  • Deception: A need for theory and ethology.Carolyn A. Ristau - 1988 - Behavioral and Brain Sciences 11 (2):262-263.
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  • Qualities and relations in folk theories of mind.Lance J. Rips - 1993 - Behavioral and Brain Sciences 16 (1):75-76.
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  • Why presume analyses are on-line?Georges Rey - 1993 - Behavioral and Brain Sciences 16 (1):74-75.
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  • Tactical deception: A likely kind of primate action.Vernon Reynolds - 1988 - Behavioral and Brain Sciences 11 (2):262-262.
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  • Sanity surrounded by madness.Georges Rey - 1988 - Behavioral and Brain Sciences 11 (1):48-50.
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  • Biological roots of musical epistemology: Functional cycles, Umwelt, and enactive listening.Mark Reybrouck - 2001 - Semiotica 2001 (134):599-633.
    This article argues for an epistemology of music, stating that dealing with music can be considered as a process of knowledge acquisition. What really matters is not the representation of an ontological musical reality, but the generation of music knowledge as a tool for adaptation to the sonic world. Three major positions are brought together: the epistemological claims of Jean Piaget, the biological methodology of Jakob von Uexküll, and the constructivistic conceptions of Ernst von Glasersfeld, each ingstress the role of (...)
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  • Prospects for a cognitive neuroscience of consciousness.Antti Revonsuo - 1995 - Behavioral and Brain Sciences 18 (4):694-695.
    In this commentary, I point out some weaknesses in Gray's target article and, in the light of that discussion, I attempt to delineate the kinds of problem a cognitive neuroscience of consciousness faces on its way to a scientific understanding of subjective experience.
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  • Perceptual Co-Reference.Michael Rescorla - 2020 - Review of Philosophy and Psychology 11 (3):569-589.
    The perceptual system estimates distal conditions based upon proximal sensory input. It typically exploits information from multiple cues across and within modalities: it estimates shape based upon visual and haptic cues; it estimates depth based upon convergence, binocular disparity, motion parallax, and other visual cues; and so on. Bayesian models illuminate the computations through which the perceptual system combines sensory cues. I review key aspects of these models. Based on my review, I argue that we should posit co-referring perceptual representations (...)
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  • Bayesian Sensorimotor Psychology.Michael Rescorla - 2016 - Mind and Language 31 (1):3-36.
    Sensorimotor psychology studies the mental processes that control goal-directed bodily motion. Recently, sensorimotor psychologists have provided empirically successful Bayesian models of motor control. These models describe how the motor system uses sensory input to select motor commands that promote goals set by high-level cognition. I highlight the impressive explanatory benefits offered by Bayesian models of motor control. I argue that our current best models assign explanatory centrality to a robust notion of mental representation. I deploy my analysis to defend intentional (...)
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  • Are Computational Transitions Sensitive to Semantics?Michael Rescorla - 2012 - Australasian Journal of Philosophy 90 (4):703-721.
    The formal conception of computation (FCC) holds that computational processes are not sensitive to semantic properties. FCC is popular, but it faces well-known difficulties. Accordingly, authors such as Block and Peacocke pursue a ?semantically-laden? alternative, according to which computation can be sensitive to semantics. I argue that computation is insensitive to semantics within a wide range of computational systems, including any system with ?derived? rather than ?original? intentionality. FCC yields the correct verdict for these systems. I conclude that there is (...)
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  • To dream is not to (intend to) do.Jean Requin - 1994 - Behavioral and Brain Sciences 17 (2):218-219.
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  • How human is SOAR?Roger W. Remington, Michael G. Shafto & Colleen M. Seifert - 1992 - Behavioral and Brain Sciences 15 (3):455-455.
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  • Is there more than one type of mental algorithm?Ronan G. Reilly - 1987 - Behavioral and Brain Sciences 10 (3):489-490.
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  • Imagery and creativity.Klaus Rehkämper - 1994 - Behavioral and Brain Sciences 17 (3):550-550.
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  • Level of analysis is not a central issue.James A. Reggia - 1990 - Behavioral and Brain Sciences 13 (2):406-407.
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  • Ways and means.Adam V. Reed - 1987 - Behavioral and Brain Sciences 10 (3):488-489.
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  • Unitary consciousness requires distributed comparators and global mappings.George N. Reeke - 1995 - Behavioral and Brain Sciences 18 (4):693-694.
    Gray, like other recent authors, seeks a scientific approach to consciousness, but fails to provide a biologically convincing description, partly because he implicitly bases his model on a computationalist foundation that embeds the contents of thought in irreducible symbolic representations. When patterns of neural activity instantiating conscious thought are shorn of homuncular observers, it appears most likely that these patterns and the circuitry that compares them with memories and plans should be found distributed over large regions of neocortex.
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  • Philosophy of Computer Science.William J. Rapaport - 2005 - Teaching Philosophy 28 (4):319-341.
    There are many branches of philosophy called “the philosophy of X,” where X = disciplines ranging from history to physics. The philosophy of artificial intelligence has a long history, and there are many courses and texts with that title. Surprisingly, the philosophy of computer science is not nearly as well-developed. This article proposes topics that might constitute the philosophy of computer science and describes a course covering those topics, along with suggested readings and assignments.
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  • Researching data and searching for theory.K. Ramakrishna Rao & John Palmer - 1990 - Behavioral and Brain Sciences 13 (2):387-389.
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  • Do connectionist representations earn their explanatory keep?William Ramsey - 1997 - Mind and Language 12 (1):34-66.
    In this paper I assess the explanatory role of internal representations in connectionist models of cognition. Focusing on both the internal‘hidden’units and the connection weights between units, I argue that the standard reasons for viewing these components as representations are inadequate to bestow an explanatorily useful notion of representation. Hence, nothing would be lost from connectionist accounts of cognitive processes if we were to stop viewing the weights and hidden units as internal representations.
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  • Do Connectionist Representations Earn Their Explanatory Keep?William Ramsey - 1997 - Mind and Language 12 (1):34-66.
    In this paper I assess the explanatory role of internal representations in connectionist models of cognition. Focusing on both the internal‘hidden’units and the connection weights between units, I argue that the standard reasons for viewing these components as representations are inadequate to bestow an explanatorily useful notion of representation. Hence, nothing would be lost from connectionist accounts of cognitive processes if we were to stop viewing the weights and hidden units as internal representations.
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  • Theories of mind: Some methodological/conceptual problems and an alternative approach.Sam S. Rakover - 1993 - Behavioral and Brain Sciences 16 (1):73-74.
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  • Outflanking the mind-body problem: Scientific progress in the history of psychology.Sam S. Rakover - 1992 - Journal for the Theory of Social Behaviour 22 (2):145–173.
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  • Empirical criteria for task susceptibility to introspective awareness and awareness effects.Sam Rakover - 1993 - Philosophical Psychology 6 (4):451 – 467.
    A proposed empirical criterion for task susceptibility to introspective awareness distinguishes cognitive processes of which one cannot be aware from those of which one can be aware. The empirical criterion for task susceptibility to awareness effects proposes that there are tasks which cannot be affected by awareness of the rules constituting the tasks. These criteria were applied to research programmes in rule-learning in which past studies in the area of learning without awareness were included as well as current research in (...)
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  • Theory-theory theory.Howard Rachlin - 1993 - Behavioral and Brain Sciences 16 (1):72-73.
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  • The cognitive laboratory, the library and the Skinner box.Howard Rachlin - 1991 - Behavioral and Brain Sciences 14 (3):501-501.
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  • The elusive quale.Howard Rachlin - 1995 - Behavioral and Brain Sciences 18 (4):692-693.
    If sensations were behaviorally conceived, as they should be, as complex functional patterns of interaction between overt behavior and the environment, there would be no point in searching for them as instantaneous psychic elements within the brain or as internal products of the brain.
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  • Only external representations are needed.Howard Rachlin - 1988 - Behavioral and Brain Sciences 11 (2):261-262.
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  • Which are more easily deceived, friends or strangers?Duane Quiatt - 1988 - Behavioral and Brain Sciences 11 (2):260-261.
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  • Unified psychobiological theory.Duane Quiatt - 1992 - Behavioral and Brain Sciences 15 (3):454-455.
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  • Perceptual Pluralism.Jake Quilty-Dunn - 2019 - Noûs 54 (4):807-838.
    Perceptual systems respond to proximal stimuli by forming mental representations of distal stimuli. A central goal for the philosophy of perception is to characterize the representations delivered by perceptual systems. It may be that all perceptual representations are in some way proprietarily perceptual and differ from the representational format of thought (Dretske 1981; Carey 2009; Burge 2010; Block ms.). Or it may instead be that perception and cognition always trade in the same code (Prinz 2002; Pylyshyn 2003). This paper rejects (...)
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  • Is Iconic Memory Iconic?Jake Quilty-Dunn - 2019 - Philosophy and Phenomenological Research 101 (3):660-682.
    Short‐term memory in vision is typically thought to divide into at least two memory stores: a short, fragile, high‐capacity store known as iconic memory, and a longer, durable, capacity‐limited store known as visual working memory (VWM). This paper argues that iconic memory stores icons, i.e., image‐like perceptual representations. The iconicity of iconic memory has significant consequences for understanding consciousness, nonconceptual content, and the perception–cognition border. Steven Gross and Jonathan Flombaum have recently challenged the division between iconic memory and VWM by (...)
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  • The neural basis of cognitive development: A constructivist manifesto.Steven R. Quartz & Terrence J. Sejnowski - 1997 - Behavioral and Brain Sciences 20 (4):537-556.
    How do minds emerge from developing brains? According to the representational features of cortex are built from the dynamic interaction between neural growth mechanisms and environmentally derived neural activity. Contrary to popular selectionist models that emphasize regressive mechanisms, the neurobiological evidence suggests that this growth is a progressive increase in the representational properties of cortex. The interaction between the environment and neural growth results in a flexible type of learning: minimizes the need for prespecification in accordance with recent neurobiological evidence (...)
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  • From cognitive science to cognitive neuroscience to neuroeconomics.Steven R. Quartz - 2008 - Economics and Philosophy 24 (3):459-471.
    As an emerging discipline, neuroeconomics faces considerable methodological and practical challenges. In this paper, I suggest that these challenges can be understood by exploring the similarities and dissimilarities between the emergence of neuroeconomics and the emergence of cognitive and computational neuroscience two decades ago. From these parallels, I suggest the major challenge facing theory formation in the neural and behavioural sciences is that of being under-constrained by data, making a detailed understanding of physical implementation necessary for theory construction in neuroeconomics. (...)
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  • A two-dimensional array of models of cognitive function.Gardner C. Quarton - 1988 - Behavioral and Brain Sciences 11 (1):48-48.
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  • What’s in a Mind?Zenon W. Pylyshyn - 1987 - Synthese 70 (January):97-122.
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  • Visual indexes, preconceptual objects, and situated vision.Zenon W. Pylyshyn - 2001 - Cognition 80 (1-2):127-158.
    This paper argues that a theory of situated vision, suited for the dual purposes of object recognition and the control of action, will have to provide something more than a system that constructs a conceptual representation from visual stimuli: it will also need to provide a special kind of direct (preconceptual, unmediated) connection between elements of a visual representation and certain elements in the world. Like natural language demonstratives (such as `this' or `that') this direct connection allows entities to be (...)
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  • Unified theories must explain the codependencies among perception, cognition and action.Robert W. Proctor & Addie Dutta - 1992 - Behavioral and Brain Sciences 15 (3):453-454.
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  • Subsymbols aren't much good outside of a symbol-processing architecture.Alan Prince & Steven Pinker - 1988 - Behavioral and Brain Sciences 11 (1):46-47.
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  • Motor images are action plans.Wolfgang Prinz - 1994 - Behavioral and Brain Sciences 17 (2):218-218.
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  • Damn the (behavioral) data, full steam ahead.William Prinzmetal & Richard Ivry - 1989 - Behavioral and Brain Sciences 12 (3):413-414.
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  • Behaviorism and mentalism: Is there a third alternative?Beth Preston - 1994 - Synthese 100 (2):167-96.
    Behaviorism and mentalism are commonly considered to be mutually exclusive and conjunctively exhaustive options for the psychological explanation of behavior. Behaviorism and mentalism do differ in their characterization of inner causes of behavior. However, I argue that they are not mutually exclusive on the grounds that they share important foundational assumptions, two of which are the notion of an innerouter split and the notion of control. I go on to argue that mentalism and behaviorism are not conjunctively exhaustive either, on (...)
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  • Matching and mental-state ascription.Ian Pratt - 1993 - Behavioral and Brain Sciences 16 (1):71-72.
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  • The Case against Stephen Stich's Syntactic Theory of Mind.Kevin Possin - 1986 - Philosophical Studies 49 (3):405 - 418.
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  • Unified cognition misses language.Csaba Pléh - 1992 - Behavioral and Brain Sciences 15 (3):451-453.
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  • Representational development and theory-of-mind computations.David C. Plaut & Annette Karmiloff-Smith - 1993 - Behavioral and Brain Sciences 16 (1):70-71.
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