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  1. What is morphological computation? On how the body contributes to cognition and control.Vincent C. Müller & Matej Hoffmann - 2017 - Artificial Life 23 (1):1-24.
    The contribution of the body to cognition and control in natural and artificial agents is increasingly described as “off-loading computation from the brain to the body”, where the body is said to perform “morphological computation”. Our investigation of four characteristic cases of morphological computation in animals and robots shows that the ‘off-loading’ perspective is misleading. Actually, the contribution of body morphology to cognition and control is rarely computational, in any useful sense of the word. We thus distinguish (1) morphology that (...)
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  2. Implications of Action-Oriented Paradigm Shifts in Cognitive Science.Peter F. Dominey, Tony J. Prescott, Jeannette Bohg, Andreas K. Engel, Shaun Gallagher, Tobias Heed, Matej Hoffmann, Gunther Knoblich, Wolfgang Prinz & Andrew Schwartz - 2016 - In Andreas K. Engel, Karl J. Friston & Danica Kragic (eds.), The Pragmatic Turn: Toward Action-Oriented Views in Cognitive Science. MIT Press. pp. 333-356.
    An action-oriented perspective changes the role of an individual from a passive observer to an actively engaged agent interacting in a closed loop with the world as well as with others. Cognition exists to serve action within a landscape that contains both. This chapter surveys this landscape and addresses the status of the pragmatic turn. Its potential influence on science and the study of cognition are considered (including perception, social cognition, social interaction, sensorimotor entrainment, and language acquisition) and its impact (...)
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  3. Simple or complex bodies? Trade-offs in exploiting body morphology for control.Matej Hoffmann & Vincent C. Müller - 2017 - In Gordana Dodig-Crnkovic & Raffaela Giovagnoli (eds.), Representation of Reality: Humans, Other Living Organism and Intelligent Machines. Heidelberg: Springer. pp. 335-345.
    Engineers fine-tune the design of robot bodies for control purposes, however, a methodology or set of tools is largely absent, and optimization of morphology (shape, material properties of robot bodies, etc.) is lagging behind the development of controllers. This has become even more prominent with the advent of compliant, deformable or ”soft” bodies. These carry substantial potential regarding their exploitation for control—sometimes referred to as ”morphological computation”. In this article, we briefly review different notions of computation by physical systems and (...)
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  4. Diagrammatic Reasoning as the Basis for Developing Concepts: A Semiotic Analysis of Students' Learning about Statistical Distribution.Arthur Bakker & Michael H. G. Hoffmann - 2005 - Educational Studies in Mathematics 60:333–358.
    In recent years, semiotics has become an innovative theoretical framework in mathematics education. The purpose of this article is to show that semiotics can be used to explain learning as a process of experimenting with and communicating about one's own representations of mathematical problems. As a paradigmatic example, we apply a Peircean semiotic framework to answer the question of how students learned the concept of "distribution" in a statistics course by "diagrammatic reasoning" and by developing "hypostatic abstractions," that is by (...)
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  5. Die Mehrdeutigkeit als Träger des sprachlichen Witzes.Magdalena Hoffmann - 2010 - Acta Universitatis Lodziensis. Folia Germanica 6:79-94.
    W niniejszym artykule opisany i zbadany został jeden z wyznaczników dowcipu słownego, jakim jest szeroko pojęta wieloznaczność. Technika wykorzystywana w przypadku dowcipu polisemicznego polega na neutralizacji czynników, które sygnalizują w tekście różne znaczenia każdego wieloznacznego wyrazu. Elementem wyodrębniającym jedno konkretne znaczenie jest kontekst, czyli najbliższe leksykalne lub syntaktyczne otoczenie wyrazu kluczowego. W przypadku dowcipu polisemantycznego kompozycja kontekstu charakteryzuje się dużą różnorodnością – kontekst jest maksymalnie neutralny i sygnalizuje znaczenie, które nie może być zrealizowane.
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  6. Das Problem der Zukunft im Rahmen holistischer Ethiken. Im Ausgang von Platon und Peirce.Michael H. G. Hoffmann - 1996 - In Hans Werner Ingensiep & Richard Hoppe-Sailer (eds.), NaturStücke. Zur Kulturgeschichte der Natur. edition tertium. pp. 17–41.
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  7. The role of self-touch experience in the formation of the self.Matej Hoffmann - 2017 - The Development of the Self Workshop at IEEE ICDL-EpiRob 2017.
    The human self has many facets: there is the physical body and then there are different concepts or representations supported by processes in the brain such as the ecological, social, temporal, conceptual, and experiential self. The mechanisms of operation and formation of the self are, however, largely unknown. The basis is constituted by the ecological or sensorimotor self that deals with the configuration of the body in space and its action possibilities. This self is prereflective, prelinguistic, and initially perhaps even (...)
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  8. Robots as Powerful Allies for the Study of Embodied Cognition from the Bottom Up.Matej Hoffmann & Rolf Pfeifer - 2018 - In Albert Newen, Leon De Bruin & Shaun Gallagher (eds.), The Oxford Handbook of 4E Cognition. Oxford: Oxford University Press.
    A large body of compelling evidence has been accumulated demonstrating that embodiment – the agent’s physical setup, including its shape, materials, sensors and actuators – is constitutive for any form of cognition and as a consequence, models of cognition need to be embodied. In contrast to methods from empirical sciences to study cognition, robots can be freely manipulated and virtually all key variables of their embodiment and control programs can be systematically varied. As such, they provide an extremely powerful tool (...)
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  9. Development of reaching to the body in early infancy: From experiments to robotic models.Matej Hoffmann, Lisa K. Chinn, Eszter Somogyi, Tobias Heed, Jacqueline Fagard, Jeffrey J. Lockman & Kevin J. O'Regan - 2017 - In Matej Hoffmann, Lisa K. Chinn, Eszter Somogyi, Tobias Heed, Jacqueline Fagard, Jeffrey J. Lockman & Kevin J. O'Regan (eds.), 2017 Joint IEEE International Conference on Development and Learning and Epigenetic Robotics (ICDL-EpiRob). IEEE. pp. 112-119.
    We have been observing how infants between 3 and 21 months react when a vibrotactile stimulation (a buzzer) is applied to different parts of their bodies. Responses included in particular movement of the stimulated body part and successful reaching for and removal of the buzzer. Overall, there is a pronounced developmental progression from general to specific movement patterns, especially in the first year. In this article we review the series of studies we conducted and then focus on possible mechanisms that (...)
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