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  1. (1 other version)Cognitive Modularity, Biological Modularity and Evolvability.Claudia Lorena García - 2007 - Biological Theory: Integrating Development, Evolution and Cognition (KLI) 2 (1):62-73.
    There is an argument that has recently been deployed in favor of thinking that the mind is mostly (or even exclusively) composed of cognitive modules; an argument that draws from some ideas and concepts of evolutionary and of developmental biology. In a nutshell, the argument concludes that a mind that is massively composed of cognitive mechanisms that are cognitively modular (henceforth, c-modular) is more evolvable than a mind that is not c-modular (or that is scarcely c-modular), since a cognitive mechanism (...)
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  • Is the mind really modular?Jesse J. Prinz - 2006 - In Robert Stainton (ed.), Contemporary Debates in Cognitive Science. Oxford: Wiley-Blackwell. pp. 22--36.
    When Fodor titled his (1983) book the _Modularity of Mind_, he overstated his position. His actual view is that the mind divides into systems some of which are modular and others of which are not. The book would have been more aptly, if less provocatively, called _The Modularity of Low-Level Peripheral Systems_. High-level perception and cognitive systems are non-modular on Fodor’s theory. In recent years, modularity has found more zealous defenders, who claim that the entire mind divides into highly specialized (...)
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  • Why Neuroscience Matters to Cognitive Neuropsychology.Victoria McGeer - 2007 - Synthese 159 (3):347 - 371.
    The broad issue in this paper is the relationship between cognitive psychology and neuroscience. That issue arises particularly sharply for cognitive neurospsychology, some of whose practitioners claim a methodological autonomy for their discipline. They hold that behavioural data from neuropsychological impairments are sufficient to justify assumptions about the underlying modular structure of human cognitive architecture, as well as to make inferences about its various components. But this claim to methodological autonomy can be challenged on both philosophical and empirical grounds. A (...)
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  • Comorbidity: A network perspective.Angélique Oj Cramer, Lourens J. Waldorp, Han Lj van der Maas & Denny Borsboom - 2010 - Behavioral and Brain Sciences 33 (2-3):137-150.
    The pivotal problem of comorbidity research lies in the psychometric foundation it rests on, that is, latent variable theory, in which a mental disorder is viewed as a latent variable that causes a constellation of symptoms. From this perspective, comorbidity is a (bi)directional relationship between multiple latent variables. We argue that such a latent variable perspective encounters serious problems in the study of comorbidity, and offer a radically different conceptualization in terms of a network approach, where comorbidity is hypothesized to (...)
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  • Extending, changing, and explaining the brain.Mazviita Chirimuuta - 2013 - Biology and Philosophy 28 (4):613-638.
    This paper addresses concerns raised recently by Datteri (Biol Philos 24:301–324, 2009) and Craver (Philos Sci 77(5):840–851, 2010) about the use of brain-extending prosthetics in experimental neuroscience. Since the operation of the implant induces plastic changes in neural circuits, it is reasonable to worry that operational knowledge of the hybrid system will not be an accurate basis for generalisation when modelling the unextended brain. I argue, however, that Datteri’s no-plasticity constraint unwittingly rules out numerous experimental paradigms in behavioural and systems (...)
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  • Modeling language acquisition in atypical phenotypes.Michael S. C. Thomas & Annette Karmiloff-Smith - 2003 - Psychological Review 110 (4):647-682.
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  • Studying development in the 21st century.Michael S. C. Thomas, Gert Westermann, Denis Mareschal, Mark H. Johnson, Sylvain Sirois & Michael Spratling - 2008 - Behavioral and Brain Sciences 31 (3):345-356.
    In this response, we consider four main issues arising from the commentaries to the target article. These include further details of the theory of interactive specialization, the relationship between neuroconstructivism and selectionism, the implications of neuroconstructivism for the notion of representation, and the role of genetics in theories of development. We conclude by stressing the importance of multidisciplinary approaches in the future study of cognitive development and by identifying the directions in which neuroconstructivism can expand in the Twenty-first Century.
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  • (1 other version)Cognitive Modularity, Biological Modularity, and Evolvability.Claudia Lorena García - 2007 - Biological Theory 2 (1):62-73.
    I examine an argument that has recently appeared in the cognitive science literature in favor of thinking that the mind is mostly composed of Fodorian-type cognitive modules; an argument that concludes that a mind that is massively composed of classical cognitive mechanisms that are cognitively modular is more evolvable than a mind that is not cognitively modular, since a cognitive mechanism that is cognitively modular is likely to be biologically modular, and biologically modular characters are more evolvable. I argue that (...)
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  • Nativism and neuroconstructivism in the explanation of Williams syndrome.Philip Gerrans - 2003 - Biology and Philosophy 18 (1):41-52.
    Nativists about syntactic processing have argued that linguisticprocessing, understood as the implementation of a rule-basedcomputational architecture, is spared in Williams syndrome, (WMS)subjects – and hence that it provides evidence for a geneticallyspecified language module. This argument is bolstered by treatingSpecific Language Impairments (SLI) and WMS as a developmental doubledissociation which identifies a syntax module. Neuroconstructivists haveargued that the cognitive deficits of a developmental disorder cannot beadequately distinguished using the standard gross behavioural tests ofneuropsychology and that the linguistic abilities of the (...)
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  • Does dyslexia exist?Julian G. Elliott & Simon Gibbs - 2008 - Journal of Philosophy of Education 42 (3-4):475-491.
    In this paper we argue that attempts to distinguish between categories of 'dyslexia' and 'poor reader' or 'reading disabled' are scientifically unsupportable, arbitrary and thus potentially discriminatory. We do not seek to veto scientific curiosity in examining underlying factors in reading disability, for seeking greater understanding of the relationship between visual symbols and spoken language is crucial. However, while stressing the potential of genetics and neuroscience for guiding assessment and educational practice at some stage in the future, we argue that (...)
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  • What are modules and what is their role in development?Stephen Andrew Butterfill - 2007 - Mind and Language 22 (4):450–473.
    Modules are widely held to play a central role in explaining mental development and in accounts of the mind generally. But there is much disagreement about what modules are, which shows that we do not adequately understand modularity. This paper outlines a Fodoresque approach to understanding one type of modularity. It suggests that we can distinguish modular from nonmodular cognition by reference to the kinds of process involved, and that modular cognition differs from nonmodular forms of cognition in being a (...)
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  • Cognitive architecture and descent with modification☆.G. Marcus - 2006 - Cognition 101 (2):443-465.
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  • Précis of neuroconstructivism: How the brain constructs cognition.Sylvain Sirois, Michael Spratling, Michael S. C. Thomas, Gert Westermann, Denis Mareschal & Mark H. Johnson - 2008 - Behavioral and Brain Sciences 31 (3):321-331.
    Neuroconstructivism: How the Brain Constructs Cognition proposes a unifying framework for the study of cognitive development that brings together (1) constructivism (which views development as the progressive elaboration of increasingly complex structures), (2) cognitive neuroscience (which aims to understand the neural mechanisms underlying behavior), and (3) computational modeling (which proposes formal and explicit specifications of information processing). The guiding principle of our approach is context dependence, within and (in contrast to Marr [1982]) between levels of organization. We propose that three (...)
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  • Speed of processing and reading disability: A cross-linguistic investigation of dyslexia and borderline intellectual functioning.Paola Bonifacci & Margaret J. Snowling - 2008 - Cognition 107 (3):999-1017.
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  • What exactly is Universal Grammar, and has anyone seen it?Ewa Dąbrowska - 2015 - Frontiers in Psychology 6.
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  • Dynamic Self‐Organization and Early Lexical Development in Children.Ping Li, Xiaowei Zhao & Brian Mac Whinney - 2007 - Cognitive Science 31 (4):581-612.
    In this study we present a self-organizing connectionist model of early lexical development. We call this model DevLex-II, based on the earlier DevLex model. DevLex-II can simulate a variety of empirical patterns in children's acquisition of words. These include a clear vocabulary spurt, effects of word frequency and length on age of acquisition, and individual differences as a function of phonological short-term memory and associative capacity. Further results from lesioned models indicate developmental plasticity in the network's recovery from damage, in (...)
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  • Disociaciones cognoscitivas y la evolucionabilidad de la mente.Claudia Lorena García - 2009 - Análisis Filosófico 29 (1):73-103.
    En las ciencias cognoscitivas, existe una teoría con respecto a la arquitectura computacional de la mente conocida como el modularismo masivo. Esta teoría sostiene que la mente está en su mayoría constituida por mecanismos que son cognoscitivamente modulares. Algunos de los defensores de esta teoría proponen un argumento cuya conclusión es que es muy probable que mecanismos que son cognoscitivamente muy modulares sean más evolucionables que aquellos mecanismos que no son cognoscitivamente modulares. Aquí muestro que para poder defender plausiblemente esta (...)
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  • The missing developmental dimension in the network perspective.Sam Wass & Annette Karmiloff-Smith - 2010 - Behavioral and Brain Sciences 33 (2-3):175-176.
    We welcome network theory as a tool for modelling the multi-directional interactions that characterise disease. However, we feel that Cramer et al. have neglected one important aspect: how diseases change over developmental time. We discuss principles such as fan in, fan out, bottlenecks, and common pathways, and argue that modelling these developmental aspects can be vital, particularly in deriving properly targeted treatments.
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  • Multiscale Modeling of Gene–Behavior Associations in an Artificial Neural Network Model of Cognitive Development.Michael S. C. Thomas, Neil A. Forrester & Angelica Ronald - 2016 - Cognitive Science 40 (1):51-99.
    In the multidisciplinary field of developmental cognitive neuroscience, statistical associations between levels of description play an increasingly important role. One example of such associations is the observation of correlations between relatively common gene variants and individual differences in behavior. It is perhaps surprising that such associations can be detected despite the remoteness of these levels of description, and the fact that behavior is the outcome of an extended developmental process involving interaction of the whole organism with a variable environment. Given (...)
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  • La lecture de pensée pour débutants.Philip Gerrans - 2006 - Philosophiques 33 (1):125-145.
    Some evolutionary psychologists (EP) are strong nativists about Theory of Mind (TOM). They argue that the development of specialised cognitive competence required for TOM requires genetic specification of the developmental trajectory of a specialised cognitive system. EP arrives at this conclusion via conceptual arguments concerning the inadequacy of blank slate neuroconstructivism (strong neuroconstructivism) and empirical evidence from developmental and neuropsychology. I argue that the correct understanding of the conceptual argument applied to the case of TOM supports a moderate form of (...)
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