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  1. 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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  • Challenge and error: Critical events and attention-related errors.James Allan Cheyne, Jonathan S. A. Carriere, Grayden J. F. Solman & Daniel Smilek - 2011 - Cognition 121 (3):437-446.
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  • The three attentional networks and the two hemispheric mechanisms.Uri Fidelman - 1995 - Behavioral and Brain Sciences 18 (2):343-344.
    A methodological problem may distort the implications derived from the metabolism scans of the brain, but Posner & Raichle may have found neural networks which underlie the analytical and synthetical hemispheric data processing mechanism. This methodological problem is that a large regional consumption of energy, detected by the PET technique, is not necessarily related to more data processing. It may be related to the inefficiency of the neural system at this region.
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  • Broca's area: Motor encoding in somatic space.Peter T. Fox - 1995 - Behavioral and Brain Sciences 18 (2):344-345.
    Encoding articulate speech is widely accepted as the principal (or sole) role of the frontal operculum. Clinical observations of speech apraxia have been confirmed by brain-imaging studies of speech production. We present evidence that the frontal operculum also programs limb movements. We argue that this area is a ventral counterpart of the dorsal premotor area. The two are functionally distinguished by specialization for somatic and visual space, respectively.
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  • Brain imaging the psychoses.C. D. Frith & R. J. Dolan - 1995 - Behavioral and Brain Sciences 18 (2):346-347.
    The approach adopted by Posner & Raichle in this book, with its strong emphasis on the cognitive level of description, is ideally suited to the study of psychotic illnesses. However, their discussion of depression and schizophrenia is based on a very small number of studies and involves ad hoc arguments derived largely from neuroanatomy. Their conclusions are almost certainly wrong.
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  • The neurodynamics of heavy PETing, at/intention, learning, functional recovery, and rehabilitation.Gary Goldberg & Nathaniel H. Mayer - 1995 - Behavioral and Brain Sciences 18 (2):348-349.
    Research reported by Posner & Raichle may be usefully applied to the rehabilitation of persons with brain damage. Their findings are related to the “dual premotorsystems hypothesis” that reciprocally interactive medial and lateral brain systems are involved in attention and learning. Recent studies show that “brain healing” occurs through dynamic reorganization involving attentional networks postulated by Posner & Raichle.
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  • Brain imaging, ethology, and the nonhuman mind.Gordon M. Burghardt - 1995 - Behavioral and Brain Sciences 18 (2):339-340.
    Posner & Raichle's (1994) exciting, wonderfully illustrated book describes the past successes and future potential of the relatively noninvasive imaging of the nervous systems of living people. The focus has been on cognitive processes but there is no reason why emotional and motivational systems cannot also be tapped. Although the authors do not formally address such contentious issues as consciousness and the private experience of other species, imaging methods may hold promise for helping us to understand these phenomena, as well (...)
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  • Mindwatching.Rodney M. J. Cotterill - 1995 - Behavioral and Brain Sciences 18 (2):340-341.
    This book delivers much more than its title appears to promise; it is not merely a description of current methods for remotely monitoring brain activity. It primarily concentrates on just one such method: positron emission tomography, but it demonstrates beautifully how far that technique can now take us in the quest to discover the mechanisms underlying thought.
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  • Précis of Images of Mind.Michael I. Posner & Marcus E. Raichle - 1995 - Behavioral and Brain Sciences 18 (2):327-339.
    This volume explores how functional brain imaging techniques like positron emission tomography have influenced cognitive studies. The first chapter outlines efforts to relate human thought and cognition in terms of great books from the late 1800s through the present. Chapter 2 describes mental operations as they are measured in cognitive science studies. It develops a framework for relating mental operations to activity in nerve cells. In Chapter 3, the PET method is reviewed and studies are presented that use PET to (...)
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  • If a picture is worth a thousand words, how many pictures is a word worth?Ken A. Paller - 1995 - Behavioral and Brain Sciences 18 (2):367-368.
    Pictures of normal brain activity during human thought can be worth a great deal. Electrophysiology and functional neuroimaging together allow both temporal and spatial dimensions of neurocognitive functions to be explored. Although these techniqueshave their limitations, the Cognitive Neuroscience approach is well-suited to pursuing questions about how words are perceived, understood, and remembered.
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  • Neural images and neural coding.Antonio L. Perrone & Gianfranco Basti - 1995 - Behavioral and Brain Sciences 18 (2):368-369.
    In Posner & Raichle's (1994) book, two essential and strictly related limitations of cognitive neurophysiology are not sufficiently enhanced: (1) The problem of “coding,” namely the capability of a natural brain to redefine its own “basic symbols” as a function of a changing environment; (2) the inadequacy of a Hebbian rule to reckon with complex computational problems such as those solved by real brains.
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  • The meaning of baselines.David Lee Robinson - 1995 - Behavioral and Brain Sciences 18 (2):370-370.
    Images of mindsuperbly summarizes work on cognitive neuroscienee using PET scanning. Some of the data emphasized suggests that parietal cortex is involved in the disengagement of attention. We have discovered neurons in awake monkeys which could perform this function. Another point of emphasis is the concept of neutral cues. Although an appealing concept, it is extremely difficult to define what is actually neutral.
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  • Multiple scales of brain-mind interactions.Lester Ingber - 1995 - Behavioral and Brain Sciences 18 (2):360-362.
    Posner & Raichle'sImages of mindis an excellent educational book and very well written. Some flaws as a scientific publication are: (a) the accuracy of the linear subtraction method used in PET is subject to scrutiny by further research at finer spatial-temporal resolutions; (b) lack of accuracy of the experimental paradigm used for EEG complementary studies.
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  • Looking for images of memory.Narinder Kapur - 1995 - Behavioral and Brain Sciences 18 (2):364-365.
    This is an excellent book but it lacks a detailed presentation and formulation of images of memory. Positron emission tomography (PET) findings sometimes raise more enigmatic questions than they answer, with differences between studies and differences with established lesion evidence. Perhaps the book could have been more critical in its analysis of these enigmas, covering more of the basic issues and assumptions underlying PET research.
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  • When is it sensible to use PET to study brain function?Shane M. O'Mara - 1995 - Behavioral and Brain Sciences 18 (2):366-367.
    Posner & Raichle's book is a superbly presented and wellwritten overview of a fast-developing and important field in contemporary neuroscience. It suffers from being an overview, however, because it does not go into sufficient detail or depth in many of the issues that it raises. It also neglects many other important areas of current research, for example, technical advances in other areas, learning and memory, and lesion analysis of brain function.
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  • Models of atypical development must also be models of normal development.Gert Westermann & Denis Mareschal - 2002 - Behavioral and Brain Sciences 25 (6):771-772.
    Connectionist models aiming to reveal the mechanisms of atypical development must in their undamaged form constitute plausible models of normal development and follow a developmental trajectory that matches empirical data. Constructivist models that adapt their structure to the learning task satisfy this demand. They are therefore more informative in the study of atypical development than the static models employed by Thomas & Karmiloff-Smith (T&K-S).
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  • Are developmental disorders like cases of adult brain damage? Implications from connectionist modelling.Michael Thomas & Annette Karmiloff-Smith - 2002 - Behavioral and Brain Sciences 25 (6):727-750.
    It is often assumed that similar domain-specific behavioural impairments found in cases of adult brain damage and developmental disorders correspond to similar underlying causes, and can serve as convergent evidence for the modular structure of the normal adult cognitive system. We argue that this correspondence is contingent on an unsupported assumption that atypical development can produce selective deficits while the rest of the system develops normally (Residual Normality), and that this assumption tends to bias data collection in the field. Based (...)
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  • Progress toward an understanding of cortical computation.W. A. Phillips & W. Singer - 1997 - Behavioral and Brain Sciences 20 (4):703-714.
    The additional data, perspectives, questions, and criticisms contributed by the commentaries strengthen our view that local cortical processors coordinate their activity with the context in which it occurs using contextual fields and synchronized population codes. We therefore predict that whereas the specialization of function has been the keynote of this century the coordination of function will be the keynote of the next.
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  • Context, connection, and coordination: The need to switch.Robert D. Oades, Bernd Röpcke & Ljubov Oknina - 2003 - Behavioral and Brain Sciences 26 (1):97-97.
    Context, connection, and coordination (CCC) describe well where the problems that apply to thought-disordered patients with schizophrenia lie. But they may be part of the experience of those with other symptom constellations. Switching is an important mechanism to allow context to be applied appropriately to changing circumstances. In some cases, NMDA-voltage modulations may be central, but gain and shift are also functions that monoaminergic systems express in CCC.
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  • Reconciling schizophrenic deficits in top-down and bottom-up processes: Not yet.Angus W. MacDonald - 2003 - Behavioral and Brain Sciences 26 (1):96-96.
    This commentary challenges the authors to use their computational modeling techniques to support one of their central claims: that schizophrenic deficits in bottom-up (Gestalt-type tasks) and top-down (cognitive control tasks) context processing tasks arise from the same dysfunction. Further clarification about the limits of cognitive coordination would also strengthen the hypothesis.
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  • Schizophrenic cognition: Taken out of context?David R. Hemsley - 2003 - Behavioral and Brain Sciences 26 (1):91-91.
    This commentary addresses: (a) the problems of definition which have been prominent in the use of the term context in schizophrenia research; (b) potentially useful distinctions and links with other theories of schizophrenic cognition; and (c) possible pathways to schizophrenic symptoms. It is suggested that at least two major aspects of the operation of context may be distinguished and that both may be impaired in schizophrenia.
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  • Cognitive coordination deficits: A necessary but not sufficient factor in the development of schizophrenia.Diane C. Gooding & Jacqueline G. Braun - 2003 - Behavioral and Brain Sciences 26 (1):89-90.
    The Phillips & Silverstein model of NMDA-mediated coordination deficits provides a useful heuristic for the study of schizophrenic cognition. However, the model does not specifically account for the development of schizophrenia-spectrum disorders. The P&S model is compared to Meehl's seminal model of schizotaxia, schizotypy, and schizophrenia, as well as the model of schizophrenic cognitive dysfunction posited by McCarley and colleagues.
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  • Autism and coherence: A computational model.Claire O’Laughlin & Paul Thagard - 2000 - Mind and Language 15 (4):375–392.
    Recent theorizing about the nature of the cognitive impairment in autism suggests that autistic individuals display abnormally weak central coherence, the capacity to integrate information in order to make sense of one’s environment. Our article shows the relevance of computational models of coherence to the understanding of weak central coherence. Using a theory of coherence as constraint satisfaction, we show how weak coherence can be simulated ina a connectionist network that has unusually high inhibition compared to excitation. This connectionist model (...)
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  • Consciousness, art, and the brain: Lessons from Marcel Proust.Russell Epstein - 2004 - Consciousness and Cognition 13 (2):213-40.
    In his novel Remembrance of Things Past, Marcel Proust argues that conventional descriptions of the phenomenology of consciousness are incomplete because they focus too much on the highly-salient sensory information that dominates each moment of awareness and ignore the network of associations that lies in the background. In this paper, I explicate Proust’s theory of conscious experience and show how it leads him directly to a theory of aesthetic perception. Proust’s division of awareness into two components roughly corresponds to William (...)
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  • Toward a cognitive neuroscience of metacognition.Arthur P. Shimamura - 2000 - Consciousness and Cognition 9 (2):313-323.
    The relationship between metacognition and executive control is explored. According to an analysis by Fernandez-Duque, Baird, and Posner (this issue), metacognitive regulation involves attention, conflict resolution, error correction, inhibitory control, and emotional regulation. These aspects of metacognition are presumed to be mediated by a neural circuit involving midfrontal brain regions. An evaluation of the proposal by Fernandez-Duque et al. is made, and it is suggested that there is considerable convergence of issues associated with metacognition, executive control, working memory, and frontal (...)
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  • A model of the hierarchy of behaviour, cognition, and consciousness.Frederick Toates - 2006 - Consciousness and Cognition 15 (1):75-118.
    Processes comparable in important respects to those underlying human conscious and non-conscious processing can be identified in a range of species and it is argued that these reflect evolutionary precursors of the human processes. A distinction is drawn between two types of processing: stimulus-based and higher-order. For ‘higher-order,’ in humans the operations of processing are themselves associated with conscious awareness. Conscious awareness sets the context for stimulus-based processing and its end-point is accessible to conscious awareness. However, the mechanics of the (...)
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  • The Importance of Metamemory Functioning to the Pathogenesis of Psychosis.Sarah Eisenacher & Mathias Zink - 2017 - Frontiers in Psychology 8.
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  • Modeling the N400 ERP component as transient semantic over-activation within a neural network model of word comprehension.Samuel J. Cheyette & David C. Plaut - 2017 - Cognition 162 (C):153-166.
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  • Predicting the Self: Lessons from Schizophrenia.Valerie Gray Hardcastle - 2019 - Review of Philosophy and Psychology 10 (2):381-400.
    Newly developed Bayesian perspectives on schizophrenia hold out the promise that a common underlying mechanism can account for many, if not all, of the positive symptoms of schizophrenia. If this is the case, then understanding how schizophrenic minds go awry could shine light on how healthy minds maintain a sense of self. This article investigates this Bayesian promise by examining whether the approach can indeed account for the difficulties with self-awareness experienced in schizophrenia. While I conclude that it cannot, I (...)
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  • Improving the neural mechanisms of cognition through the pursuit of happiness.Karuna Subramaniam & Sophia Vinogradov - 2013 - Frontiers in Human Neuroscience 7.
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  • Goal-referenced selection of verbal action: Modeling attentional control in the Stroop task.Ardi Roelofs - 2003 - Psychological Review 110 (1):88-125.
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  • Conflict monitoring and cognitive control.Matthew M. Botvinick, Todd S. Braver, Deanna M. Barch, Cameron S. Carter & Jonathan D. Cohen - 2001 - Psychological Review 108 (3):624-652.
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  • Looking for Creativity: Where Do We Look When We Look for New Ideas?Carola Salvi & Edward M. Bowden - 2016 - Frontiers in Psychology 7.
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  • The Impact of Social Pressure and Monetary Incentive on Cognitive Control.Mina Ličen, Frank Hartmann, Grega Repovš & Sergeja Slapničar - 2016 - Frontiers in Psychology 7.
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  • The computational psychiatry of reward: broken brains or misguided minds?M. Moutoussis, G. W. Story & R. J. Dolan - 2015 - Frontiers in Psychology 6.
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  • The coherent organization of mental life depends on mechanisms for context-sensitive gain-control that are impaired in schizophrenia.William A. Phillips & Steven M. Silverstein - 2013 - Frontiers in Psychology 4.
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  • Setting domain boundaries for convergence of biological and psychological perspectives on cognitive coordination in schizophrenia.J. P. Ginsberg - 2003 - Behavioral and Brain Sciences 26 (1):88-89.
    The claim that the disorganized subtype of schizophrenia results from glutamate hypofunction is enhanced by consideration of current subtypology of schizophrenia, symptom definition, interdependence of neurotransmitters, and the nature of the data needed to support the hypothesis. Careful specification clarifies the clinical reality of disorganization as a feature of schizophrenia and increases the utility of the subtype.
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  • Guarding against over-inclusive notions of “context”: Psycholinguistic and electrophysiological studies of specific context functions in schizophrenia.Debra Titone & J. Bruno Debruille - 2003 - Behavioral and Brain Sciences 26 (1):108-109.
    Phillips & Silverstein offer an exciting synthesis of ongoing efforts to link the clinical and cognitive manifestations of schizophrenia with cellular accounts of its pathophysiology. We applaud their efforts but wonder whether the highly inclusive notion of “context” adequately captures some important details regarding schizophrenia and NMDA/glutamate function that are suggested by work on language processing and cognitive electrophysiology.
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  • The (b)link between creativity and dopamine: Spontaneous eye blink rates predict and dissociate divergent and convergent thinking.Soghra Akbari Chermahini & Bernhard Hommel - 2010 - Cognition 115 (3):458-465.
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  • A major advance in neuropsychology.David Freides - 1995 - Behavioral and Brain Sciences 18 (2):345-346.
    Posner & Raichle's book presents methods and data that increase support for mind-brain unity and provide a method for studying and verifying brain dysfunction objectively. Their incorporation into the assessment technology of neuropsychology should accordingly constitute a major advance. In addition, these techniques may help clarify longstanding controversies in cognitive psychology such as whether perception is multimodal or amodal.
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  • Tough times for dualists.Merlin Donald - 1995 - Behavioral and Brain Sciences 18 (2):342-343.
    Images of mindmarks a new era in human cognitive neuroscience. Despite the difficult conceptual problems associated with using group-averaged data and paired subtractions, human PET images converge well with existing data from other areas of cognitive neuroscience while opening up new theoretical and experimental possibilities. However, greater attention to individual differences might prove necessary in the study of culturally driven adaptations such as literacy.
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  • Interaction of method and theory in cognitive neuroscience.Michael I. Posner & Marcus E. Raichle - 1995 - Behavioral and Brain Sciences 18 (2):372-383.
    We divided the many diverse comments on our book into categories. These are: theory, scope and goals of our project, methods, comments on specific anatomical areas, the concept of attention, consciousness and cognitive control, and finally other issues. Although many of the points of the critics are certainly well taken, we believe studies that have emerged since our book provide strong evidence that the general approach taken in our book is now yielding important new data on the relation of cognitive (...)
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  • Bright red spots or – the meaning of the meaning.G. J. E. Schmitt - 1995 - Behavioral and Brain Sciences 18 (2):370-371.
    There are methodological problems with the new techniques reviewed by Posner & Raichle. Some brain mechanisms are not detected by the temporal and spatial resolution. Questions are also raised by the stimulation paradigms.
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  • Mind mappers and cognitive modelers: Toward cross-fertilization.Arthur M. Jacobs & Thomas H. Carr - 1995 - Behavioral and Brain Sciences 18 (2):362-363.
    It is argued that current neuroimaging studies can provide useful constraints for the construction of models of cognition, and that these studies should be guided by cognitive models. A numberof challenges for a successful cross-fertilization between “mind mappers” and cognitive modelers are discussed in the light of current research on word recognition.
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  • Is the human brain only responsive?Rumyana Kristeva-Feige & Bernd Feige - 1995 - Behavioral and Brain Sciences 18 (2):365-366.
    Posner & Raichle's (1994) book is a fascinating and readable account of the studies the authors have conducted on the localization of cognitive functions in the brain mainly using PET and EEC evoked potential methods. Our criticism concerns the underrepresentation of some imaging techniques (magnetoencephalography) and some forms of brain activity (spontaneous activity). Furthermore, the book leaves the reader with the impression that the brain only responds to external events.
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  • Images of mind: A window to the brain.Robert L. Solso - 1995 - Behavioral and Brain Sciences 18 (2):371-371.
    The authors ofImages of the Mindhave made a significant contribution to our understanding of the brain through imaging technology. The book is well written, timely, beautifully illustrated and conveys a sense of history. It will appeal to alay audience as well as a professional audience.
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  • Computation, PET images, and attention.John K. Tsotsos - 1995 - Behavioral and Brain Sciences 18 (2):372-372.
    Posner & Raichle (1994) is a nice addition to the Scientific American Library and the average reader will both enjoy the book and learn a great deal. As an activeresearcher, however, I find the book disappointing in many respects. My two major disappointments are in the illusion of computation that is created throughout the volume and in the inadequate perspective of the presentation on visual attention.
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  • PET may image the gates of awareness, not its center.Eric Halgren - 1995 - Behavioral and Brain Sciences 18 (2):358-359.
    PET detects changes in metabolism between task periods and is thus insensitive to areas that are activated during all or most of cognition. Depth-recorded, evokedpotentials indicate that many multimodal and limbic cortical areas may be activated during most cognitive tasks. Thus, PET may be insensitive to some core processes of awareness that are difficult to eliminate from the control periods.
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  • Tracking brain functions in space and time.Riitta Hari - 1995 - Behavioral and Brain Sciences 18 (2):359-360.
    The authors ofImages of mindhave been highly successful in unravelling the neural basis of complex brain functions. Their emphasis on top-down processingin experimental neuroscience is especially important and, it is hoped, influential. Tracking brain activation accurately botli in space and in time would benefit from studiesofindividual subjects without relying on grand average data.
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  • Regions, networks: Interpreting functional neuroimaging data.Barry Horwitz - 1995 - Behavioral and Brain Sciences 18 (2):360-360.
    The subtraction and covariance paradigms are two analytic techniques used with functional neuroimaging data. The first assumes that a brain region participating in a task should show altered neural activity (relative to a control task). The second assumes that tasks are mediated by networks of interacting regions.Images of mindattempts to link results from the subtraction paradigm with a network interpretation that could have been more explicitly done using the covariance paradigm.
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