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JOSÉ SANTOS
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Name
Affiliation
Papers
JOSÉ SANTOS
Computer Science Department, University of A Coruña, Spain
36
Collaborators
Citations
PageRank
35
97
14.77
Referers
Referees
References
174
396
295
Search Limit
100
396
Publications (36 rows)
Collaborators (35 rows)
Referers (100 rows)
Referees (100 rows)
Title
Citations
PageRank
Year
Evolving cellular automata schemes for protein folding modeling using the Rosetta atomic representation
0
0.34
2022
Niching methods integrated with a differential evolution memetic algorithm for protein structure prediction
0
0.34
2022
Evolution of Amino Acid Properties in the Context of Protein Secondary Structure Prediction
0
0.34
2021
Automatically obtaining a cellular automaton scheme for modeling protein folding using the FCC model
1
0.37
2019
Crowding Differential Evolution for Protein Structure Prediction.
0
0.34
2019
Evolved synaptic delay based neural controllers for walking patterns in hexapod robotic structures.
0
0.34
2017
Protein Folding Modeling with Neural Cellular Automata Using the Face-Centered Cubic Model.
1
0.36
2017
A protein folding model using the face-centered cubic lattice model.
0
0.34
2017
Protein Folding Modeling with Neural Cellular Automata Using Rosetta.
1
0.36
2016
Finding a needle in the blogosphere: An information fusion approach for blog distillation search.
1
0.35
2015
Evolution of Synaptic Delay Based Neural Controllers for Implementing Central Pattern Generators in Hexapod Robotic Structures
1
0.35
2015
Studying the capability of different cancer hallmarks to initiate tumor growth using a cellular automaton simulation. Application in a cancer stem cell context.
2
0.42
2014
Combination Of Reinforcement Learning With Evolution For Automatically Obtaining Robot Neural Controllers
3
0.40
2013
Cellular automata for modeling protein folding using the HP model
5
0.44
2013
Multiobjective differential evolution in the optimization of topological active models
1
0.36
2013
Evolved Center-Crossing Recurrent Synaptic Delay Based Neural Networks For Biped Locomotion Control
2
0.39
2013
Topological Active Volume 3D segmentation model optimized with genetic approaches
1
0.37
2012
Topological Active Models optimization with Differential Evolution
6
0.45
2012
Biped locomotion control with evolved adaptive center-crossing continuous time recurrent neural networks
8
0.58
2012
Simulated evolution applied to study the genetic code optimality using a model of codon reassignments.
13
0.62
2011
Differential evolution optimization of 3D topological active volumes
1
0.36
2011
Differential evolution for protein structure prediction using the HP model
14
0.64
2011
Optimization of Topological Active Nets with Differential Evolution
4
0.42
2011
Learning action descriptions of opponent behaviour in the robocup 2D simulation environment
2
0.36
2010
Evolutionary multiobjective optimization of Topological Active Nets
4
0.41
2010
Localisation of the optic disc by means of GA-optimised Topological Active Nets
12
0.74
2009
Genetic Approaches for the Automatic Division of Topological Active Volumes
0
0.34
2009
Optic Disc Segmentation by Means of GA-Optimized Topological Active Nets
4
0.48
2008
Automatic Topological Active Net Division in a Genetic-Greedy Hybrid Approach
0
0.34
2007
Genetic-Greedy Hybrid Approach for Topological Active Nets Optimization
1
0.37
2007
Simulated Evolution of the Adaptability of the Genetic Code Using Genetic Algorithms
1
0.41
2007
Complex behaviours through modulation in autonomous robot control
5
0.51
2005
Neural clustering analysis of macroevolutionary and genetic algorithms in the evolution of robot controllers
0
0.34
2005
Robust Visual Recognition with High-Order Gaussian Synapses Networks
0
0.34
2000
Applying synaptic delays for virtual sensing and actuation in mobile robots
2
0.49
2000
Synaptic delay based artificial neural networks and discrete time backpropagation applied to QRS complex detection
1
0.37
1997
1