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Neural Networks

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2012
[9]    Stramandinoli, F., Marocco, D., and Cangelosi, A. (2012) The grounding of higher order concepts in action and language: A cognitive robotics model. Neural Networks.
2011
[8]    Hinoshita, W., Arie, H., Tani, J., Okuno, H. G., and Ogata, T. (2011) Emergence of hierarchical structure mirroring linguistic composition in a recurrent neural network. Neural Networks, 24(4):311--320.
2009
[7]   (6)Fontanari, J. F., Tikhanoff, V., Cangelosi, A., Ilin, R., and Perlovsky, L. I. (2009) Cross-situational learning of object--word mapping using Neural Modeling Fields. Neural Networks, 22(5):579--585.
[6]   (1)Pulvermuller, F. and Knoblauch, A. (2009) Discrete combinatorial circuits emerging in neural networks: A mechanism for rules of grammar in the human brain? Neural Networks, 22(2):161--172.
[5]   (5)Perlovsky, L. (2009) Language and cognition. Neural Networks, 22(3):247--257.
2008
[4]   (4)Fontanari, J. F. and Perlovsky, L. I. (2008) How language can help discrimination in the Neural Modelling Fields framework. Neural Networks, 21(2):250--256.
2007
[3]    Cernansky, M., Makula, M., and Benuskova, L. (2007) Organization of the state space of a simple recurrent network before and after training on recursive linguistic structures. Neural Networks, 20(2):236--244.
2004
[2]   (4)Li, P., Farkas, I., and MacWhinney, B. (2004) Early lexical development in a self-organizing neural network. Neural Networks, 17(8-9):1345--1362.
2003
[1]   (8)Arbib, M. A. and Bota, M. (2003) Language evolution: neural homologies and neuroinformatics. Neural Networks, 16(9):1237--1260.

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