2007 |
11 | EE | Javier Molina-Vilaplana,
Jorge Feliú Batlle,
Juan López Coronado:
A modular neural network architecture for step-wise learning of grasping tasks.
Neural Networks 20(5): 631-645 (2007) |
10 | EE | Javier Molina-Vilaplana,
Juan López Coronado:
Neural modelling of hand grip formation during reach to grasp.
Neurocomputing 71(1-3): 411-416 (2007) |
2006 |
9 | EE | Alejandro Linares-Barranco,
Rafael Paz-Vicente,
Gabriel Jiménez,
Juan L. Pedreño-Molina,
Javier Molina-Vilaplana,
Juan López Coronado:
AER Neuro-Inspired interface to Anthropomorphic Robotic Hand.
IJCNN 2006: 1497-1504 |
8 | EE | Javier Molina-Vilaplana,
Juan López Coronado:
A neural network model for coordination of hand gesture during reach to grasp.
Neural Networks 19(1): 12-30 (2006) |
2005 |
7 | EE | Juan L. Pedreño-Molina,
Javier Molina-Vilaplana,
Juan López Coronado,
Philippe Gorce:
A modular neural network linking Hyper RBF and AVITE models for reaching moving objects.
Robotica 23(5): 625-633 (2005) |
2004 |
6 | EE | Javier Molina-Vilaplana,
Jorge Feliú Batlle,
Juan López Coronado:
A neural model of hand grip formation during reach to grasp.
SMC (1) 2004: 542-546 |
5 | EE | Javier Molina-Vilaplana,
Juan L. Pedreño-Molina,
Juan López Coronado:
Hyper RBF model for accurate reaching in redundant robotic systems.
Neurocomputing 61: 495-501 (2004) |
2003 |
4 | EE | Juan L. Pedreño-Molina,
Antonio Guerrero-González,
Oscar A. Florez-Giraldo,
Javier Molina-Vilaplana:
Sensory-motor Control Scheme Based on Kohonen Maps and AVITE Model.
IWANN (2) 2003: 185-192 |
2002 |
3 | EE | Francisco García-Córdova,
Javier Molina-Vilaplana,
Juan López Coronado:
A Corticospinal Network for Control of Voluntary Movements of a Physiologically Based Experimental Platform.
ICANN 2002: 216-222 |
2 | EE | Javier Molina-Vilaplana,
Jorge Feliú Batlle,
Juan López Coronado:
A Neural Model of Spatio Temporal Coordination in Prehension.
ICANN 2002: 9-14 |
2001 |
1 | EE | Javier Molina-Vilaplana,
Jorge Feliú Batlle,
Juan López Coronado:
Connectionist Models of Cortico-Basal Ganglia Adaptive Neural Networks During Learning of Motor Sequential Procedures.
IWANN (1) 2001: 394-401 |