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  1. What do double dissociations prove?G. Van Orden - 2001 - Cognitive Science 25 (1):111-172.
    Brain damage may doubly dissociate cognitive modules, but the practice of revealing dissociations is predicated on modularity being true (T. Shallice, 1988). This article questions the utility of assuming modularity, as it examines a paradigmatic double dissociation of reading modules. Reading modules illustrate two general problems. First, modularity fails to converge on a fixed set of exclusionary criteria that define pure cases. As a consequence, competing modular theories force perennial quests for purer cases, which simply perpetuates growth in the list (...)
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  • Perceptual recognition as a function of meaningfulness of stimulus material.Gerald M. Reicher - 1969 - Journal of Experimental Psychology 81 (2):275.
  • Can cognitive processes be inferred from neuroimaging data?Russell A. Poldrack - 2006 - Trends in Cognitive Sciences 10 (2):59-63.
  • What do double dissociations prove?Guy C. Orden, Bruce F. Pennington & Gregory O. Stone - 2001 - Cognitive Science 25 (1):111-172.
    Brain damage may doubly dissociate cognitive modules, but the practice of revealing dissociations is predicated on modularity being true (T. Shallice, 1988). This article questions the utility of assuming modularity, as it examines a paradigmatic double dissociation of reading modules. Reading modules illustrate two general problems. First, modularity fails to converge on a fixed set of exclusionary criteria that define pure cases. As a consequence, competing modular theories force perennial quests for purer cases, which simply perpetuates growth in the list (...)
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  • Dissociations in Neuropsychology and Cognitive Neuroscience.Edouard Machery - 2012 - Philosophy of Science 79 (4):490-518.
    In this article, I compare the epistemic standing of the function-to-structure inferences found in cognitive neuroscience and of the inferences based on dissociations in neuropsychology. I argue that the former have a poorer epistemic standing than the latter.
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  • Carving the mind at its (not necessarily modular) joints.Jack C. Lyons - 2001 - British Journal for the Philosophy of Science 52 (2):277-302.
    The cognitive neuropsychological understanding of a cognitive system is roughly that of a ‘mental organ’, which is independent of other systems, specializes in some cognitive task, and exhibits a certain kind of internal cohesiveness. This is all quite vague, and I try to make it more precise. A more precise understanding of cognitive systems will make it possible to articulate in some detail an alternative to the Fodorian doctrine of modularity (since not all cognitive systems are modules), but it will (...)
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  • Functional homology and homology of function: Biological concepts and philosophical consequences.Alan C. Love - 2007 - Biology and Philosophy 22 (5):691-708.
    “Functional homology” appears regularly in different areas of biological research and yet it is apparently a contradiction in terms—homology concerns identity of structure regardless of form and function. I argue that despite this conceptual tension there is a legitimate conception of ‘homology of function’, which can be recovered by utilizing a distinction from pre-Darwinian physiology (use versus activity) to identify an appropriate meaning of ‘function’. This account is directly applicable to molecular developmental biology and shares a connection to the theme (...)
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  • Philosophical issues in neuroimaging.Colin Klein - 2010 - Philosophy Compass 5 (2):186-198.
    Functional neuroimaging (NI) technologies like Positron Emission Tomography and functional Magnetic Resonance Imaging (fMRI) have revolutionized neuroscience, and provide crucial tools to link cognitive psychology and traditional neuroscientific models. A growing discipline of 'neurophilosophy' brings fMRI evidence to bear on traditional philosophical issues such as weakness of will, moral psychology, rational choice, social interaction, free will, and consciousness. NI has also attracted critical attention from psychologists and from philosophers of science. I review debates over the evidential status of fMRI, including (...)
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  • The shared circuits model (SCM): How control, mirroring, and simulation can enable imitation, deliberation, and mindreading.Susan Hurley - 2008 - Behavioral and Brain Sciences 31 (1):1-22.
    Imitation, deliberation, and mindreading are characteristically human sociocognitive skills. Research on imitation and its role in social cognition is flourishing across various disciplines. Imitation is surveyed in this target article under headings of behavior, subpersonal mechanisms, and functions of imitation. A model is then advanced within which many of the developments surveyed can be located and explained. The shared circuits model (SCM) explains how imitation, deliberation, and mindreading can be enabled by subpersonal mechanisms of control, mirroring, and simulation. It is (...)
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  • The shared circuits model. How control, mirroring, and simulation can enable imitation and mind reading.Susan Hurley - 2008 - Behavioral and Brain Sciences 31 (1):1-22.
    Imitation, deliberation, and mindreading are characteristically human sociocognitive skills. Research on imitation and its role in social cognition is flourishing across various disciplines; it is here surveyed under headings of behavior, subpersonal mechanisms, and functions of imitation. A model is then advanced within which many of the developments surveyed can be located and explained. The shared circuits model explains how imitation, deliberation, and mindreading can be enabled by subpersonal mechanisms of control, mirroring and simulation. It is cast at a middle, (...)
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  • Double Dissociation: Understanding its Role in Cognitive Neuropsychology.Martin Davies - 2010 - Mind and Language 25 (5):500-540.
    The paper makes three points about the role of double dissociation in cognitive neuropsychology. First, arguments from double dissociation to separate modules work by inference to the best, not the only possible, explanation. Second, in the development of computational cognitive neuropsychology, the contribution of connectionist cognitive science has been to broaden the range of potential explanations of double dissociation. As a result, the competition between explanations, and the characteristic features of the assessment of theories against the criteria of probability and (...)
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  • DRC: A dual route cascaded model of visual word recognition and reading aloud.Max Coltheart, Kathleen Rastle, Conrad Perry, Robyn Langdon & Johannes Ziegler - 2001 - Psychological Review 108 (1):204-256.
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  • Neural reuse and cognitive homology.Vincent Bergeron - 2010 - Behavioral and Brain Sciences 33 (4):268-269.
    Neural reuse theories suggest that, in the course of evolution, a brain structure may acquire or lose a number of cognitive uses while maintaining its cognitive workings (or low-level operations) fixed. This, in turn, suggests that homologous structures may have very different cognitive uses, while sharing the same workings. And this, essentially, is homology thinking applied to brain function.
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  • Anatomical and functional modularity in cognitive science: Shifting the focus.Vincent Bergeron - 2007 - Philosophical Psychology 20 (2):175 – 195.
    Much of cognitive science is committed to the modular approach to the study of cognition. The core of this approach consists of a pair of assumptions - the anatomical and the functional modularity assumptions - which motivate two kinds of inference: the anatomical and the functional modularity inferences. The legitimacy of both of these inferences has been strongly challenged, a situation that has had surprisingly little impact on most theorizing in the field. Following the introduction of an important, yet rarely (...)
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  • The massive redeployment hypothesis and the functional topography of the brain.Michael L. Anderson - 2008 - Philosophical Psychology 21 (2):143-174.
    This essay introduces the massive redeployment hypothesis, an account of the functional organization of the brain that centrally features the fact that brain areas are typically employed to support numerous functions. The central contribution of the essay is to outline a middle course between strict localization on the one hand, and holism on the other, in such a way as to account for the supporting data on both sides of the argument. The massive redeployment hypothesis is supported by case studies (...)
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  • The Massive Redeployment Hypothesis and the Functional Topography of the Brain.Michael L. Anderson - 2007 - Philosophical Psychology 20 (2):143-174.
    This essay introduces the massive redeployment hypothesis, an account of the functional organization of the brain that centrally features the fact that brain areas are typically employed to support numerous functions. The central contribution of the essay is to outline a middle course between strict localization on the one hand, and holism on the other, in such a way as to account for the supporting data on both sides of the argument. The massive redeployment hypothesis is supported by case studies (...)
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  • Neural reuse: A fundamental organizational principle of the brain.Michael L. Anderson - 2010 - Behavioral and Brain Sciences 33 (4):245.
    An emerging class of theories concerning the functional structure of the brain takes the reuse of neural circuitry for various cognitive purposes to be a central organizational principle. According to these theories, it is quite common for neural circuits established for one purpose to be exapted (exploited, recycled, redeployed) during evolution or normal development, and be put to different uses, often without losing their original functions. Neural reuse theories thus differ from the usual understanding of the role of neural plasticity (...)
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  • Architecture and organizational principles of Broca's region.Katrin Amunts & Karl Zilles - 2012 - Trends in Cognitive Sciences 16 (8):418-426.
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  • The Organisation of Mind.Tim Shallice & Rick Cooper - 2011 - Oxford University Press.
    To understand the mind, we need to draw equally on the fields of cognitive science and neuroscience. But these two fields have very separate intellectual roots, and very different styles. So how can these two be reconciled in order to develop a full understanding of the mind and brain.This is the focus of this landmark new book.
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  • The Architecture of the Mind:Massive Modularity and the Flexibility of Thought: Massive Modularity and the Flexibility of Thought.Peter Carruthers - 2006 - New York: Oxford University Press UK.
    This book is a comprehensive development and defense of one of the guiding assumptions of evolutionary psychology: that the human mind is composed of a large number of semi-independent modules. The Architecture of the Mind has three main goals. One is to argue for massive mental modularity. Another is to answer a 'How possibly?' challenge to any such approach. The first part of the book lays out the positive case supporting massive modularity. It also outlines how the thesis should best (...)
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  • Lesion studies, spared performance, and cognitive systems.Jack C. Lyons - 2003 - Cortex 39 (1):145-7.
    A short discussion piece arguing that the neuropsychological phenomenon of double dissociations is most revealing of underlying cognitive architecture because of the capacities that are spared, more than the capacities that are lost.
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  • The Architecture of the Mind: Massive Modularity and the Flexibility of Thought.Peter Carruthers - 2009 - Critica 41 (122):113-124.
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