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  1. A connectionist model of a continuous developmental transition in the balance scale task.Anna C. Schapiro & James L. McClelland - 2009 - Cognition 110 (3):395-411.
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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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  • Rule transition on the balance scale task: a case study in belief change.Brenda R. J. Jansen, Maartje E. J. Raijmakers & Ingmar Visser - 2007 - Synthese 155 (2):211-236.
    For various domains in proportional reasoning cognitive development is characterized as a progression through a series of increasingly complex rules. A multiplicative relationship between two task features, such as weight and distance information of blocks placed at both sides of the fulcrum of a balance scale, appears difficult to discover. During development, children change their beliefs about the balance scale several times: from a focus on the weight dimension (Rule I) to occasionally considering the distance dimension (Rule II), guessing (Rule (...)
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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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  • Toward automatic constructive learning.Thomas R. Shultz - 2008 - Behavioral and Brain Sciences 31 (3):344-345.
    Neuroconstructivist modeling can be usefully extended with algorithms that build their own topology and recruit existing knowledge, effectively constructing a hierarchy of network modules. Possible benefits include allowing abilities to emerge naturally, in a way that affords objective study, deeper insights, and more rapid progress, and provides more serious consideration of the implications of constructivism.
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  • Rule following and rule use in the balance-scale task.Thomas R. Shultz & Yoshio Takane - 2007 - Cognition 103 (3):460-472.
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  • Modeling acquisition of a torque rule on the balance-scale task.Fredéric Dandurand & Thomas R. Shultz - 2009 - In N. A. Taatgen & H. van Rijn (eds.), Proceedings of the 31st Annual Conference of the Cognitive Science Society. pp. 1541--6.
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