A Framework for Coupled Simulations of Robots and Spiking Neuronal Networks
10.1007/s10846-016-0412-6
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2020
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sg-nus-scholar.10635-1792712024-04-04T02:35:07Z A Framework for Coupled Simulations of Robots and Spiking Neuronal Networks Hinkel, G Groenda, H Krach, S Vannucci, L Denninger, O Cauli, N Ulbrich, S Roennau, A Falotico, E Gewaltig, M.-O Knoll, A Dillmann, R Laschi, C Reussner, R MECHANICAL ENGINEERING Computer programming languages Graphical user interfaces Image processing Neurons Problem oriented languages Robots Domain specific languages Human brain Model-driven Engineering Neurorobotics Spiking neuronal networks Neural networks 10.1007/s10846-016-0412-6 Journal of Intelligent and Robotic Systems: Theory and Applications 85 1 71-91 2020-10-23T02:41:27Z 2020-10-23T02:41:27Z 2017 Article Hinkel, G, Groenda, H, Krach, S, Vannucci, L, Denninger, O, Cauli, N, Ulbrich, S, Roennau, A, Falotico, E, Gewaltig, M.-O, Knoll, A, Dillmann, R, Laschi, C, Reussner, R (2017). A Framework for Coupled Simulations of Robots and Spiking Neuronal Networks. Journal of Intelligent and Robotic Systems: Theory and Applications 85 (1) : 71-91. ScholarBank@NUS Repository. https://doi.org/10.1007/s10846-016-0412-6 0921-0296 https://scholarbank.nus.edu.sg/handle/10635/179271 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Springer Netherlands Unpaywall 20201031 |
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Computer programming languages Graphical user interfaces Image processing Neurons Problem oriented languages Robots Domain specific languages Human brain Model-driven Engineering Neurorobotics Spiking neuronal networks Neural networks |
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Computer programming languages Graphical user interfaces Image processing Neurons Problem oriented languages Robots Domain specific languages Human brain Model-driven Engineering Neurorobotics Spiking neuronal networks Neural networks Hinkel, G Groenda, H Krach, S Vannucci, L Denninger, O Cauli, N Ulbrich, S Roennau, A Falotico, E Gewaltig, M.-O Knoll, A Dillmann, R Laschi, C Reussner, R A Framework for Coupled Simulations of Robots and Spiking Neuronal Networks |
description |
10.1007/s10846-016-0412-6 |
author2 |
MECHANICAL ENGINEERING |
author_facet |
MECHANICAL ENGINEERING Hinkel, G Groenda, H Krach, S Vannucci, L Denninger, O Cauli, N Ulbrich, S Roennau, A Falotico, E Gewaltig, M.-O Knoll, A Dillmann, R Laschi, C Reussner, R |
format |
Article |
author |
Hinkel, G Groenda, H Krach, S Vannucci, L Denninger, O Cauli, N Ulbrich, S Roennau, A Falotico, E Gewaltig, M.-O Knoll, A Dillmann, R Laschi, C Reussner, R |
author_sort |
Hinkel, G |
title |
A Framework for Coupled Simulations of Robots and Spiking Neuronal Networks |
title_short |
A Framework for Coupled Simulations of Robots and Spiking Neuronal Networks |
title_full |
A Framework for Coupled Simulations of Robots and Spiking Neuronal Networks |
title_fullStr |
A Framework for Coupled Simulations of Robots and Spiking Neuronal Networks |
title_full_unstemmed |
A Framework for Coupled Simulations of Robots and Spiking Neuronal Networks |
title_sort |
framework for coupled simulations of robots and spiking neuronal networks |
publisher |
Springer Netherlands |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/179271 |
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1800914548121665536 |