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  1. Mining the Brain for a New Taxonomy of the Mind.Michael L. Anderson - 2015 - Philosophy Compass 10 (1):68-77.
    In this paper, I summarize an emerging debate in the cognitive sciences over the right taxonomy for understanding cognition – the right theory of and vocabulary for describing the structure of the mind – and the proper role of neuroscientific evidence in specifying this taxonomy. In part because the discussion clearly entails a deep reconsideration of the supposed autonomy of psychology from neuroscience, this is a debate in which philosophers should be interested, with which they should be familiar, and to (...)
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  • Antagonistic neural networks underlying differentiated leadership roles.Richard E. Boyatzis, Kylie Rochford & Anthony I. Jack - 2014 - Frontiers in Human Neuroscience 8.
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  • The Dark Side of Morality – Neural Mechanisms Underpinning Moral Convictions and Support for Violence.Clifford I. Workman, Keith J. Yoder & Jean Decety - 2020 - American Journal of Bioethics Neuroscience 11 (4):269-284.
    People are motivated by shared social values that, when held with moral conviction, can serve as compelling mandates capable of facilitating support for ideological violence. The current study examined this dark side of morality by identifying specific cognitive and neural mechanisms associated with beliefs about the appropriateness of sociopolitical violence, and determining the extent to which the engagement of these mechanisms was predicted by moral convictions. Participants reported their moral convictions about a variety of sociopolitical issues prior to undergoing functional (...)
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  • The standard ontological framework of cognitive neuroscience: Some lessons from Broca’s area.Marco Viola & Elia Zanin - 2017 - Philosophical Psychology 30 (7):945-969.
    Since cognitive neuroscience aims at giving an integrated account of mind and brain, its ontology should include both neural and cognitive entities and specify their relations. According to what we call the standard ontological framework of cognitive neuroscience, the aim of cognitive neuroscience should be to establish one-to-one mappings between neural and cognitive entities. Where such entities do not yet closely align, this can be achieved by reforming the cognitive ontology, the neural ontology, or both. In order to assess the (...)
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  • Two Routes to Expertise in Mental Rotation.Alexander Provost, Blake Johnson, Frini Karayanidis, Scott D. Brown & Andrew Heathcote - 2013 - Cognitive Science 37 (7):1321-1342.
    The ability to imagine objects undergoing rotation (mental rotation) improves markedly with practice, but an explanation of this plasticity remains controversial. Some researchers propose that practice speeds up the rate of a general-purpose rotation algorithm. Others maintain that performance improvements arise through the adoption of a new cognitive strategy—repeated exposure leads to rapid retrieval from memory of the required response to familiar mental rotation stimuli. In two experiments we provide support for an integrated explanation of practice effects in mental rotation (...)
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  • The propositional nature of human associative learning.Chris J. Mitchell, Jan De Houwer & Peter F. Lovibond - 2009 - Behavioral and Brain Sciences 32 (2):183-198.
    The past 50 years have seen an accumulation of evidence suggesting that associative learning depends on high-level cognitive processes that give rise to propositional knowledge. Yet, many learning theorists maintain a belief in a learning mechanism in which links between mental representations are formed automatically. We characterize and highlight the differences between the propositional and link approaches, and review the relevant empirical evidence. We conclude that learning is the consequence of propositional reasoning processes that cooperate with the unconscious processes involved (...)
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  • Social psychology as a natural kind.Jason P. Mitchell - 2009 - Trends in Cognitive Sciences 13 (6):246.
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  • Mixtures and Psychological Inference with Resting State fMRI.Joseph McCaffrey & David Danks - 2022 - British Journal for the Philosophy of Science 73 (3):583-611.
    In this essay, we examine the use of resting state fMRI data for psychological inferences. We argue that resting state studies hold the paired promises of discovering novel functional brain networks, and of avoiding some of the limitations of task-based fMRI. However, we argue that the very features of experimental design that enable resting state fMRI to support exploratory science also generate a novel confound. We argue that seemingly key features of resting state functional connectivity networks may be artefacts resulting (...)
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  • In Defense of Reverse Inference.Edouard Machery - 2014 - British Journal for the Philosophy of Science 65 (2):251-267.
    Reverse inference is the most commonly used inferential strategy for bringing images of brain activation to bear on psychological hypotheses, but its inductive validity has recently been questioned. In this article, I show that, when it is analyzed in likelihoodist terms, reverse inference does not suffer from the problems highlighted in the recent literature, and I defend the appropriateness of treating reverse inference in these terms. 1 Introduction2 Reverse Inference3 Reverse Inference Defended3.1 Typical reverse inferences are fallacious3.2 No quick and (...)
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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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  • What’s on Your Mind? A Brain Scan Won’t Tell.Yakir Levin & Itzhak Aharon - 2011 - Review of Philosophy and Psychology 2 (4):699-722.
    Reverse Inference ( RI ) is an imaging-based type of inference from brain states to mental states, which has become highly widespread in neuroscience, most especially in neuroeconomics. Recent critical studies of RI may be taken to show that, if cautiously used, RI can help achieve research goals that may be difficult to achieve by way of behavior-based procedures alone. But can RI exceed the limits of these procedures and achieve research goals that are impossible for them to achieve alone? (...)
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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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  • Brain Imaging, Forward Inference, and Theories of Reasoning.Evan Heit - 2014 - Frontiers in Human Neuroscience 8.
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  • The Perception‐Action Model: Counting Computational Mechanisms.Thor Grünbaum - 2017 - Mind and Language 32 (4):416-445.
    Milner and Goodale's Two Visual Systems Hypothesis is regarded as common ground in recent discussions of visual consciousness. A central part of TVSH is a functional model of vision and action. In this paper, I provide a brief overview of these current discussions and argue that there is ambiguity between a strong and a weak version of PAM. I argue that, given a standard way of individuating computational mechanisms, the available evidence cannot be used to distinguish between these versions. This (...)
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  • Eager for fairness or for revenge? Psychological altruism in economics.Christine Clavien - 2010 - Economics and Philosophy 26 (3):267-290.
    To understand the human capacity for psychological altruism, one requires a proper understanding of how people actually think and feel. This paper addresses the possible relevance of recent findings in experimental economics and neuroeconomics to the philosophical controversy over altruism and egoism. After briefly sketching and contextualizing the controversy, we survey and discuss the results of various studies on behaviourally altruistic helping and punishing behaviour, which provide stimulating clues for the debate over psychological altruism. On closer analysis, these studies prove (...)
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  • Abductive reasoning in cognitive neuroscience: weak and strong reverse inference.Fabrizio Calzavarini & Gustavo Cevolani - 2022 - Synthese 200 (2):1-26.
    Reverse inference is a crucial inferential strategy used in cognitive neuroscience to derive conclusions about the engagement of cognitive processes from patterns of brain activation. While widely employed in experimental studies, it is now viewed with increasing scepticism within the neuroscience community. One problem with reverse inference is that it is logically invalid, being an instance of abduction in Peirce’s sense. In this paper, we offer the first systematic analysis of reverse inference as a form of abductive reasoning and highlight (...)
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  • A unitary signal-detection model of implicit and explicit memory.Christopher J. Berry, David R. Shanks & Richard N. A. Henson - 2008 - Trends in Cognitive Sciences 12 (10):367-373.
    Do dissociations imply independent systems? In the memory field, the view that there are independent implicit and explicit memory systems has been predominantly supported by dissociation evidence. Here, we argue that many of these dissociations do not necessarily imply distinct memory systems. We review recent work with a single-system computational model that extends signal-detection theory (SDT) to implicit memory. SDT has had a major influence on research in a variety of domains. The current work shows that it can be broadened (...)
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  • Evidence for Information Processing in the Brain.Marc Burock - 2010
    Many cognitive scientists, neuroscientists, and philosophers of science consider it uncontroversial that the brain processes information. In this work we broadly consider the types of experimental evidence that would support this claim, and find that although physical features of specific brain areas selectively covary with external stimuli or abilities, there is no direct evidence supporting an information processing function of any particular brain area.
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  • Philosophical foundations of neuroeconomics: economics and the revolutionary challenge from neuroscience.Roberto Fumagalli - 2011 - Dissertation, London School of Economics
    This PhD thesis focuses on the philosophical foundations of Neuroeconomics, an innovative research program which combines findings and modelling tools from economics, psychology and neuroscience to account for human choice behaviour. The proponents of Neuroeconomics often manifest the ambition to foster radical modifications in the accounts of choice behaviour developed by its parent disciplines. This enquiry provides a philosophically informed appraisal of the potential for success and the relevance of neuroeconomic research for economics. My central claim is that neuroeconomists can (...)
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  • There and Up Again: On the Uses and Misuses of Neuroimaging in Psychology.Guillermo Del Pinal & Marco J. Nathan - 2013 - Cognitive Neuropsychology 30 (4):233-252.
    The aim of this article is to discuss the conditions under which functional neuroimaging can contribute to the study of higher cognition. We begin by presenting two case studies—on moral and economic decision making—which will help us identify and examine one of the main ways in which neuroimaging can help advance the study of higher cognition. We agree with critics that functional magnetic resonance imaging (fMRI) studies seldom “refine” or “confirm” particular psychological hypotheses, or even provide details of the neural (...)
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  • Data Mining the Brain to Decode the Mind.Daniel Weiskopf - forthcoming - In Neural Mechanisms: New Challenges in the Philosophy of Neuroscience.
    In recent years, neuroscience has begun to transform itself into a “big data” enterprise with the importation of computational and statistical techniques from machine learning and informatics. In addition to their translational applications such as brain-computer interfaces and early diagnosis of neuropathology, these tools promise to advance new solutions to longstanding theoretical quandaries. Here I critically assess whether these promises will pay off, focusing on the application of multivariate pattern analysis (MVPA) to the problem of reverse inference. I argue that (...)
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  • Information and the function of neurons.Marc Burock - 2011
    Many of us consider it uncontroversial that information processing is a natural function of the brain. Since functions in biology are only won through empirical investigation, there should be a significant body of unambiguous evidence that supports this functional claim. Before we can interpret the evidence, however, we must ask what it means for a biological system to process information. Although a concept of information is generally accepted in the neurosciences without critique, in other biological sciences applications of information, despite (...)
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