The cognitive nature of action - functional links between cognitive psychology, movement science, and robotics
Schack T, Ritter H (2009)
In: Mind and Motion: The Bidirectional Link Between Thought and Action. Raab M, Johnson J, Heekeren H (Eds); Progress in Brain Research, 174. Amsterdam : Elsevier BV: 231-252.
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| Veröffentlicht | Englisch
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Autor*in
Herausgeber*in
Raab, Markus;
Johnson, Joseph;
Heekeren, Hauke
Einrichtung
SFB 673 Alignment in Communication
Research Institute for Cognition and Robotics
Center of Excellence - Cognitive Interaction Technology CITEC
Technische Fakultät > AG Neuroinformatik
Fakultät für Psychologie und Sportwissenschaft > Abteilung Sportwissenschaft > Arbeitsbereich II - Neurokognition und Bewegung - Biomechanik
Research Institute for Cognition and Robotics
Center of Excellence - Cognitive Interaction Technology CITEC
Technische Fakultät > AG Neuroinformatik
Fakultät für Psychologie und Sportwissenschaft > Abteilung Sportwissenschaft > Arbeitsbereich II - Neurokognition und Bewegung - Biomechanik
Abstract / Bemerkung
This paper examines the cognitive architecture of human action, showing how it is organized over several levels and how it is built up. Basic action concepts (BACs) are identified as major building blocks on a representation level. These BACs are cognitive tools for mastering the functional demands of movement tasks. Results from different lines of research showed that not only the structure formation of mental representations in long-term memory but also chunk formation in working memory are built up on BACs and relate systematically to movement structures. It is concluded that such movement representations might provide the basis for action implementation and action control in skilled voluntary movements in the form of cognitive reference structures. To simulate action implementation we discuss challenges and issues that arise when we try to replicate complex movement abilities in robots. Among the key issues to be addressed is the question how structured representations can arise during skill acquisition and how the underlying processes can be understood sufficiently succinctly to replicate them on robot platforms. Working towards this goal, we translate our findings in studies of motor control in humans into models that can guide the implementation of cognitive robot architectures. Focusing on the issue of manual action control, we illustrate some results in the context of grasping with a five-fingered anthropomorphic robot hand.
Stichworte
models;
mental representation;
manual intelligence;
computational;
cognitive psychology;
robotics
Erscheinungsjahr
2009
Buchtitel
Mind and Motion: The Bidirectional Link Between Thought and Action
Serientitel
Progress in Brain Research
Band
174
Seite(n)
231-252
ISBN
9780444533562
ISSN
0079-6123
Page URI
https://pub.uni-bielefeld.de/record/1794389
Zitieren
Schack T, Ritter H. The cognitive nature of action - functional links between cognitive psychology, movement science, and robotics. In: Raab M, Johnson J, Heekeren H, eds. Mind and Motion: The Bidirectional Link Between Thought and Action. Progress in Brain Research. Vol 174. Amsterdam : Elsevier BV; 2009: 231-252.
Schack, T., & Ritter, H. (2009). The cognitive nature of action - functional links between cognitive psychology, movement science, and robotics. In M. Raab, J. Johnson, & H. Heekeren (Eds.), Progress in Brain Research: Vol. 174. Mind and Motion: The Bidirectional Link Between Thought and Action (pp. 231-252). Amsterdam : Elsevier BV. https://doi.org/10.1016/S0079-6123(09)01319-3
Schack, Thomas, and Ritter, Helge. 2009. “The cognitive nature of action - functional links between cognitive psychology, movement science, and robotics”. In Mind and Motion: The Bidirectional Link Between Thought and Action, ed. Markus Raab, Joseph Johnson, and Hauke Heekeren, 174:231-252. Progress in Brain Research. Amsterdam : Elsevier BV.
Schack, T., and Ritter, H. (2009). “The cognitive nature of action - functional links between cognitive psychology, movement science, and robotics” in Mind and Motion: The Bidirectional Link Between Thought and Action, Raab, M., Johnson, J., and Heekeren, H. eds. Progress in Brain Research, vol. 174, (Amsterdam : Elsevier BV), 231-252.
Schack, T., & Ritter, H., 2009. The cognitive nature of action - functional links between cognitive psychology, movement science, and robotics. In M. Raab, J. Johnson, & H. Heekeren, eds. Mind and Motion: The Bidirectional Link Between Thought and Action. Progress in Brain Research. no.174 Amsterdam : Elsevier BV, pp. 231-252.
T. Schack and H. Ritter, “The cognitive nature of action - functional links between cognitive psychology, movement science, and robotics”, Mind and Motion: The Bidirectional Link Between Thought and Action, M. Raab, J. Johnson, and H. Heekeren, eds., Progress in Brain Research, vol. 174, Amsterdam : Elsevier BV, 2009, pp.231-252.
Schack, T., Ritter, H.: The cognitive nature of action - functional links between cognitive psychology, movement science, and robotics. In: Raab, M., Johnson, J., and Heekeren, H. (eds.) Mind and Motion: The Bidirectional Link Between Thought and Action. Progress in Brain Research. 174, p. 231-252. Elsevier BV, Amsterdam (2009).
Schack, Thomas, and Ritter, Helge. “The cognitive nature of action - functional links between cognitive psychology, movement science, and robotics”. Mind and Motion: The Bidirectional Link Between Thought and Action. Ed. Markus Raab, Joseph Johnson, and Hauke Heekeren. Amsterdam : Elsevier BV, 2009.Vol. 174. Progress in Brain Research. 231-252.
Daten bereitgestellt von European Bioinformatics Institute (EBI)
19 Zitationen in Europe PMC
Daten bereitgestellt von Europe PubMed Central.
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The mental representation of the human gait in patients with severe knee osteoarthrosis: a clinical study to aid understanding of impairment and disability.
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A Systematic Investigation of the Effect of Action Observation Training and Motor Imagery Training on the Development of Mental Representation Structure and Skill Performance.
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Seegelke C, Schack T., Front Public Health 4(), 2016
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The BASE-Program-A Multidimensional Approach for Health Promotion in Companies.
Wollesen B, Menzel J, Lex H, Mattes K., Healthcare (Basel) 4(4), 2016
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Perceptual-Cognitive Changes During Motor Learning: The Influence of Mental and Physical Practice on Mental Representation, Gaze Behavior, and Performance of a Complex Action.
Frank C, Land WM, Schack T., Front Psychol 6(), 2015
PMID: 26779089
Frank C, Land WM, Schack T., Front Psychol 6(), 2015
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Decoding of human hand actions to handle missing limbs in neuroprosthetics.
Belić JJ, Faisal AA., Front Comput Neurosci 9(), 2015
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Belić JJ, Faisal AA., Front Comput Neurosci 9(), 2015
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The mental representation of the human gait in young and older adults.
Stöckel T, Jacksteit R, Behrens M, Skripitz R, Bader R, Mau-Moeller A., Front Psychol 6(), 2015
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Stöckel T, Jacksteit R, Behrens M, Skripitz R, Bader R, Mau-Moeller A., Front Psychol 6(), 2015
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The influence of visual feedback on the mental representation of gait in patients with THR: a new approach for an experimental rehabilitation strategy.
Schega L, Bertram D, Fölsch C, Hamacher D, Hamacher D., Appl Psychophysiol Biofeedback 39(1), 2014
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Schega L, Bertram D, Fölsch C, Hamacher D, Hamacher D., Appl Psychophysiol Biofeedback 39(1), 2014
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Expertise affects representation structure and categorical activation of grasp postures in climbing.
Bläsing BE, Güldenpenning I, Koester D, Schack T., Front Psychol 5(), 2014
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Bläsing BE, Güldenpenning I, Koester D, Schack T., Front Psychol 5(), 2014
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Morphological computation and morphological control: steps toward a formal theory and applications.
Füchslin RM, Dzyakanchuk A, Flumini D, Hauser H, Hunt KJ, Luchsinger RH, Reller B, Scheidegger S, Walker R., Artif Life 19(1), 2013
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Füchslin RM, Dzyakanchuk A, Flumini D, Hauser H, Hunt KJ, Luchsinger RH, Reller B, Scheidegger S, Walker R., Artif Life 19(1), 2013
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Representing the egocentric auditory space: relationships of surrounding region concepts.
Campos MC, Hermann T, Schack T, Bläsing B., Acta Psychol (Amst) 142(3), 2013
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Campos MC, Hermann T, Schack T, Bläsing B., Acta Psychol (Amst) 142(3), 2013
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Event-related brain potentials for goal-related power grips.
Westerholz J, Schack T, Koester D., PLoS One 8(7), 2013
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Westerholz J, Schack T, Koester D., PLoS One 8(7), 2013
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Motor control as the control of perception.
Marken RS, Mansell W, Khatib Z., Percept Mot Skills 117(1), 2013
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Marken RS, Mansell W, Khatib Z., Percept Mot Skills 117(1), 2013
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From action representation to action execution: exploring the links between cognitive and biomechanical levels of motor control.
Land WM, Volchenkov D, Bläsing BE, Schack T., Front Comput Neurosci 7(), 2013
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Land WM, Volchenkov D, Bläsing BE, Schack T., Front Comput Neurosci 7(), 2013
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Representation of grasp postures and anticipatory motor planning in children.
Stöckel T, Hughes CM, Schack T., Psychol Res 76(6), 2012
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Stöckel T, Hughes CM, Schack T., Psychol Res 76(6), 2012
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Functional relationship between cognitive representations of movement directions and visuomotor adaptation performance.
Lex H, Weigelt M, Knoblauch A, Schack T., Exp Brain Res 223(4), 2012
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Lex H, Weigelt M, Knoblauch A, Schack T., Exp Brain Res 223(4), 2012
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A dual physiological character for cerebral mechanisms of sexuality and cognition: common somatic peripheral afferents.
Motofei IG., BJU Int 108(10), 2011
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Motofei IG., BJU Int 108(10), 2011
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