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  1. Two kinds of models, many kinds of souls: Shallice on neuropsychology.Bruce Bridgeman - 1991 - Behavioral and Brain Sciences 14 (3):440-441.
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  • Spatial and cognitive vision differentiate at low levels, but not in language.Bruce Bridgeman - 1993 - Behavioral and Brain Sciences 16 (2):240-240.
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  • One need not be a Marxist: A response to Vandenberg.Crittenden Brian, Maxine Greene & Robin Small - 1987 - Educational Philosophy and Theory 19 (1):12-19.
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  • Modeling separate processing pathways for spatial and object vision.Bruce Bridgeman - 1989 - Behavioral and Brain Sciences 12 (3):398-398.
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  • Iconic storage and saccadic eye movements.Bruce Bridgeman & Melanie Mayer - 1983 - Behavioral and Brain Sciences 6 (1):16-17.
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  • How our world remains stable despite disturbing influences.Bruce Bridgeman, A. H. C. Van der Heijden & Boris M. Velichkovsky - 1994 - Behavioral and Brain Sciences 17 (2):282-292.
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  • A theory of visual stability across saccadic eye movements.Bruce Bridgeman, A. H. C. Van der Heijden & Boris M. Velichkovsky - 1994 - Behavioral and Brain Sciences 17 (2):247-258.
    We identify two aspects of the problem of maintaining perceptual stability despite an observer's eye movements. The first, visual direction constancy, is the (egocentric) stability of apparent positions of objects in the visual world relative to the perceiver. The second, visual position constancy, is the (exocentric) stability of positions of objects relative to each other. We analyze the constancy of visual direction despite saccadic eye movements.Three information sources have been proposed to enable the visual system to achieve stability: the structure (...)
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  • Icon as visual persistence: Alive and well.Bruno G. Breitmeyer - 1983 - Behavioral and Brain Sciences 6 (1):15-16.
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  • Protocounting as a last resort.Richard F. Braaten - 1988 - Behavioral and Brain Sciences 11 (4):581-581.
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  • Another far more ancient tongue.John Bradshaw - 1995 - Behavioral and Brain Sciences 18 (2):385-386.
    Language started evolving early, before gesture; commonalities of generativity between language and praxis have been over-emphasized. Language did not drive hominid brain evolution, evolving multifactorially and interactively. More than communication, it permits a cognitive modelling of reality and hierarchical data management. As the interactive sum of various cognitive and linguistic systems, and of brain structures each semi-independently evolved, it is not part of a single, general-purpose cognitive processor, nor is it a separately-evolved quasi-independent module.
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  • On “raw perception” of “the stimulus itself”.Robert M. Boynton - 1983 - Behavioral and Brain Sciences 6 (1):15-15.
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  • Kanting processes in the chimpanzee: What really counts?Sarah T. Boysen - 1988 - Behavioral and Brain Sciences 11 (4):580-580.
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  • About assumptions and exponents.Robert M. Boynton - 1989 - Behavioral and Brain Sciences 12 (2):271-271.
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  • Conscious awareness of action potentiates sensorimotor learning.Arnaud Boutin, Yannick Blandin, Cristina Massen, Herbert Heuer & Arnaud Badets - 2014 - Cognition 133 (1):1-9.
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  • The Computational and Neural Basis of Cognitive Control: Charted Territory and New Frontiers.Matthew M. Botvinick - 2014 - Cognitive Science 38 (6):1249-1285.
    Cognitive control has long been one of the most active areas of computational modeling work in cognitive science. The focus on computational models as a medium for specifying and developing theory predates the PDP books, and cognitive control was not one of the areas on which they focused. However, the framework they provided has injected work on cognitive control with new energy and new ideas. On the occasion of the books' anniversary, we review computational modeling in the study of cognitive (...)
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  • Effects of domain-specific knowledge on memory for serial order.Matthew M. Botvinick - 2005 - Cognition 97 (2):135-151.
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  • Short-term recognition memory under rehearsal instructions and imaging instructions.C. Alan Boneau - 1990 - Bulletin of the Psychonomic Society 28 (4):297-299.
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  • Shruti's Ontology is Representational.Luca Bonatti - 1996 - Behavioral and Brain Sciences 19 (2):326-328.
    I argue that SHRUTl's ontology is heavily committed to a representational view of mind. This is best seen when one thinks of how SHRUTI could be developed to account for psychological data on deductive reasoning.
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  • Determining what is perceived.Radu J. Bogdan - 1983 - Behavioral and Brain Sciences 6 (1):66-67.
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  • On the Use of Response Chunking as a Tool to Investigate Strategies.Christopher L. Blume, Alexander P. Boone & Nelson Cowan - 2015 - Frontiers in Psychology 6.
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  • Consciousness and cognitive access.Ned Block - 2008 - Proceedings of the Aristotelian Society 108 (1pt3):289-317.
    This article concerns the interplay between two issues that involve both philosophy and neuroscience: whether the content of phenomenal consciousness is 'rich' or 'sparse', whether phenomenal consciousness goes beyond cognitive access, and how it would be possible for there to be evidence one way or the other.
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  • Does the nervous system use equilibrium-point control to guide single and multiple joint movements?E. Bizzi, N. Hogan, F. A. Mussa-Ivaldi & S. Giszter - 1992 - Behavioral and Brain Sciences 15 (4):603-613.
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  • To resolve Fechner versus Stevens: Settle the dispute concerning “ratios” and “differences”.Michael H. Birnbaum - 1989 - Behavioral and Brain Sciences 12 (2):270-271.
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  • Recognition-by-components: A theory of human image understanding.Irving Biederman - 1987 - Psychological Review 94 (2):115-147.
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  • Language Experience Affects Grouping of Musical Instrument Sounds.Anjali Bhatara, Natalie Boll-Avetisyan, Trevor Agus, Barbara Höhle & Thierry Nazzi - 2016 - Cognitive Science 40 (7):1816-1830.
    Language experience clearly affects the perception of speech, but little is known about whether these differences in perception extend to non-speech sounds. In this study, we investigated rhythmic perception of non-linguistic sounds in speakers of French and German using a grouping task, in which complexity was manipulated. In this task, participants grouped sequences of auditory chimeras formed from musical instruments. These chimeras mimic the complexity of speech without being speech. We found that, while showing the same overall grouping preferences, the (...)
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  • Learning and transfer of working memory gating policies.Apoorva Bhandari & David Badre - 2018 - Cognition 172 (C):89-100.
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  • The Rules of Information Aggregation and Emergence of Collective Intelligent Behavior.Luís M. A. Bettencourt - 2009 - Topics in Cognitive Science 1 (4):598-620.
    Information is a peculiar quantity. Unlike matter and energy, which are conserved by the laws of physics, the aggregation of knowledge from many sources can in fact produce more information (synergy) or less (redundancy) than the sum of its parts. This feature can endow groups with problem‐solving strategies that are superior to those possible among noninteracting individuals and, in turn, may provide a selection drive toward collective cooperation and coordination. Here we explore the formal properties of information aggregation as a (...)
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  • In defense of development.Ruth A. Berman - 1991 - Behavioral and Brain Sciences 14 (4):612-613.
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  • An on-line method in studying music parsing.Iris Berent & Charles A. Perfetti - 1993 - Cognition 46 (3):203-222.
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  • The Power of 2: How an Apparently Irregular Numeration System Facilitates Mental Arithmetic.Andrea Bender & Sieghard Beller - 2017 - Cognitive Science 41 (1):158-187.
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  • There is more to location than prepositions.David C. Bennett - 1993 - Behavioral and Brain Sciences 16 (2):239-239.
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  • The Cognitive Advantages of Counting Specifically: A Representational Analysis of Verbal Numeration Systems in Oceanic Languages.Andrea Bender, Dirk Schlimm & Sieghard Beller - 2015 - Topics in Cognitive Science 7 (4):552-569.
    The domain of numbers provides a paradigmatic case for investigating interactions of culture, language, and cognition: Numerical competencies are considered a core domain of knowledge, and yet the development of specifically human abilities presupposes cultural and linguistic input by way of counting sequences. These sequences constitute systems with distinct structural properties, the cross-linguistic variability of which has implications for number representation and processing. Such representational effects are scrutinized for two types of verbal numeration systems—general and object-specific ones—that were in parallel (...)
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  • The compatibility of complex systems and reduction: A case analysis of memory research. [REVIEW]William Bechtel - 2001 - Minds and Machines 11 (4):483-502.
    Some theorists who emphasize the complexity of biological and cognitive systems and who advocate the employment of the tools of dynamical systems theory in explaining them construe complexity and reduction as exclusive alternatives. This paper argues that reduction, an approach to explanation that decomposes complex activities and localizes the components within the complex system, is not only compatible with an emphasis on complexity, but provides the foundation for dynamical analysis. Explanation via decomposition and localization is nonetheless extremely challenging, and an (...)
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  • Philosophy 
of 
the 
Cognitive 
Sciences.William Bechtel & Mitchell Herschbach - 2010-01-04 - In Fritz Allhoff (ed.), Philosophies of the Sciences. Wiley‐Blackwell. pp. 239--261.
    Cognitive science is an interdisciplinary research endeavor focusing on human cognitive phenomena such as memory, language use, and reasoning. It emerged in the second half of the 20th century and is charting new directions at the beginning of the 21st century. This chapter begins by identifying the disciplines that contribute to cognitive science and reviewing the history of the interdisciplinary engagements that characterize it. The second section examines the role that mechanistic explanation plays in cognitive science, while the third focuses (...)
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  • Mechanisms in cognitive psychology: What are the operations?William Bechtel - 2008 - Philosophy of Science 75 (5):983-994.
    Cognitive psychologists, like biologists, frequently describe mechanisms when explaining phenomena. Unlike biologists, who can often trace material transformations to identify operations, psychologists face a more daunting task in identifying operations that transform information. Behavior provides little guidance as to the nature of the operations involved. While not itself revealing the operations, identification of brain areas involved in psychological mechanisms can help constrain attempts to characterize the operations. In current memory research, evidence that the same brain areas are involved in what (...)
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  • The Item versus the Object in Memory: On the Implausibility of Overwriting As a Mechanism for Forgetting in Short-Term Memory.C. Philip Beaman & Dylan M. Jones - 2016 - Frontiers in Psychology 7.
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  • Less Is More—Cyclists-Triathlete’s 30 min Cycling Time-Trial Performance Is Impaired With Multiple Feedback Compared to a Single Feedback.Freya Bayne, Sebastien Racinais, Katya Mileva, Steve Hunter & Nadia Gaoua - 2020 - Frontiers in Psychology 11.
    Purpose: The purpose of this article was to compare different modes of feedback on 30 min cycling time-trial performance in non-cyclist’s and cyclists-triathletes, and investigate cyclists-triathlete’s information acquisition.Methods: 20 participants performed two 30 min self-paced cycling time-trials with either a single feedback or multiple feedback. Cyclists-triathlete’s information acquisition was also monitored during the multiple feedback trial via an eye tracker. Perceptual measurements of task motivation, ratings of perceived exertion and affect were collected every 5 min. Performance variables and heart rate (...)
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  • Force as the controlling muscle variable in limb movement.P. N. S. Bawa & J. Dickinson - 1982 - Behavioral and Brain Sciences 5 (4):543-543.
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  • Plausible inference and implicit representation.Malcolm I. Bauer - 1993 - Behavioral and Brain Sciences 16 (3):452-453.
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  • Conscious thought is for facilitating social and cultural interactions: How mental simulations serve the animal–culture interface.Roy F. Baumeister & E. J. Masicampo - 2010 - Psychological Review 117 (3):945-971.
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  • Varieties of consciousness.Paolo Bartolomeo & Gianfranco Dalla Barba - 2002 - Behavioral and Brain Sciences 25 (3):331-332.
    In agreement with some of the ideas expressed by Perruchet & Vinter (P&V), we believe that some phenomena hitherto attributed to processing may in fact reflect a fundamental distinction between direct and reflexive forms of consciousness. This dichotomy, developed by the phenomenological tradition, is substantiated by examples coming from experimental psychology and lesion neuropsychology.
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  • Time phases, pointers, rules and embedding.John A. Barnden - 1993 - Behavioral and Brain Sciences 16 (3):451-452.
    This paper is a commentary on the target article by Lokendra Shastri & Venkat Ajjanagadde [S&A]: “From simple associations to systematic reasoning: A connectionist representation of rules, variables and dynamic bindings using temporal synchrony” in same issue of the journal, pp.417–451. -/- It puts S&A's temporal-synchrony binding method in a broader context, comments on notions of pointing and other ways of associating information - in both computers and connectionist systems - and mentions types of reasoning that are a challenge to (...)
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  • Quantifying Contextual Information For Cognitive Control.Francisco Barceló & Patrick S. Cooper - 2018 - Frontiers in Psychology 9.
    Cognition is context-sensitive, as the same sensory information is processed differently depending on its context (e.g., on its probabilistic association with goal-directed actions and their outcomes). Despite this, the concept of context in studies of higher-order cognitive processes, like cognitive control, is often simplified to nominal stimulus categories (like a target vs. distractor). Here we propose that quantifying contextual information to model cognitive demands is (1) fruitful as it can provide novel insight into the nature of cognitive control, (2) accessible (...)
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  • On the law relating processing to storage in working memory.Pierre Barrouillet, Sophie Portrat & Valérie Camos - 2011 - Psychological Review 118 (2):175-192.
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  • Information and semantics.Jon Barwise - 1983 - Behavioral and Brain Sciences 6 (1):65-65.
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  • How to estimate the randomness in random sequence generation tasks?Anna Barbasz, Krzysztof Piotrowski, Michal Wierzchoń, Zbigniew Stettner & Jakub Barbasz - 2008 - Polish Psychological Bulletin 39 (1):42-46.
    How to estimate the randomness in random sequence generation tasks? The aim of the paper was to discuss the accuracy of the multiple indexes used for random sequences generation results calculation. In the first part of the paper the models explaining deviations from randomness were presented. The key role of the structural limitations interpretation was suggested. Secondly, the multiple indexes of the deviation from randomness used in random sequence generation task studies were presented. The authors concluded that too many indexes (...)
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  • Base-rate respect: From ecological rationality to dual processes.Aron K. Barbey & Steven A. Sloman - 2007 - Behavioral and Brain Sciences 30 (3):241-254.
    The phenomenon of base-rate neglect has elicited much debate. One arena of debate concerns how people make judgments under conditions of uncertainty. Another more controversial arena concerns human rationality. In this target article, we attempt to unpack the perspectives in the literature on both kinds of issues and evaluate their ability to explain existing data and their conceptual coherence. From this evaluation we conclude that the best account of the data should be framed in terms of a dual-process model of (...)
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  • On the decay of the icon.William P. Banks - 1983 - Behavioral and Brain Sciences 6 (1):14-14.
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  • How Does the Mind Render Streaming Experience as Events?Dare A. Baldwin & Jessica E. Kosie - 2021 - Topics in Cognitive Science 13 (1):79-105.
    Events—the experiences we think we are having and recall having had—are constructed; they are not what actually occurs. What occurs is ongoing dynamic, multidimensional, sensory flow, which is somehow transformed via psychological processes into structured, describable, memorable units of experience. But what is the nature of the redescription processes that fluently render dynamic sensory streams as event representations? How do such processes cope with the ubiquitous novelty and variability that characterize sensory experience? How are event‐rendering skills acquired and how do (...)
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  • The fickle measuring instrument.John C. Baird - 1989 - Behavioral and Brain Sciences 12 (2):269-270.
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