Articles (3): |
|
•
|
Newell F , Wallraven C and Huber S (March-2004) The role of characteristic motion in object categorization
Journal of Vision 4(2) 118-129.

|
|
•
|
Neumann T , Huber S and Bülthoff HH (December-2001) Artificial systems as models in biological cybernetics
Behavioral and Brain Sciences 24(6) 1071-1072.
 
|
|
•
|
Huber SA , Franz MO and Bülthoff HH (December-1998) On robots and flies: Modeling the visual orientation behavior of flies.
Robotics and Autonomous Systems 29(4) 227-242.
 
|
Conference papers (6): |
|
•
|
Huber S and Bülthoff HH (January-1998) Simulation and robot implementation of visual orientation behaviors of flies
In: From Animals to Animats 5, 5th International Conference on Simulation of Adaptive Behavior, MIT Press, Cambridge, MA, USA, 77-85.

|
|
•
|
Neumann TR , Huber SA and Bülthoff HH (October-1997) Minimalistic approach to 3D obstacle avoidance behavior from simulated evolution
In: Artificial Neural Networks: ICANN '97, 7th International Conference on Artificial Neural Networks, Springer, Berlin, Germany, 715-720.
 
|
|
•
|
Huber S and Bülthoff HH (October-1997) Modeling obstacle avoidance behavior of flies using an adaptive autonomous agent
In: Artificial Neural Networks: ICANN '97, 7th International Conference on Artificial Neural Networks, Springer, Berlin, Germany, 709-714.
 
|
|
•
|
Huber S , Mallot HA and Bülthoff HH (July-1996) Evolution of the sensorimotor control in an autonomous agent
In: From Animals to Animats 4, Fourth International Conference on Simulation of Adaptive Behavior (SAB '96), MIT Press, Cambridge, MA, USA, 449-457.

|
|
•
|
Huber S , Mallot HA and Bülthoff HH (July-1996) Using evolutionary algorithms for the optimization of the sensorimotor control in an autonomous agent
6th International Conference Information Processing and Management of Uncertainty in Knowledge-Based Systems (IPMU 1996), Universidad de Granada, Granada, Spain, 1241-1246.
|
|
•
|
Huber SA (October-1995) Autonome Navigation durch eine virtuelle Welt
Workshop Artificial Life, GMD Forschungszentrum Informationstechnik, Sankt Augustin, Germany, 237-246.
|
Contributions to books (2): |
|
•
|
Huber S and Chatziastros A : Neuromotorische Entwicklung im Säuglings- und frühen Kindesalter, 51-64.
In: Manuelle Therapie bei Kindern : Indikationen und Konzepte, (Ed) H. Biedermann, Elsevier, München, Germany, (January-2006).
|
|
•
|
Huber SA and Bülthoff HH : Visuomotor control in flies and behavior-based agents, 89-117.
In: Biologically inspired robot behavior engineering, (Ed) R. J. Duro, Physica-Verlag, Heidelberg, Germany, (2002).

|
Technical reports (3): |
|
•
|
Huber SA , Mallot HA and Bülthoff HH : Modeling biological sensorimotor control with genetic algorithms, 60, Max Planck Institute for Biological Cybernetics, Tübingen, Germany, (May-1998).
|
|
•
|
Huber S , Franz M and Bülthoff HH : On Robots and Flies: Modeling the visual orientation behavior of flies, 56, Max Planck Institute for Biological Cybernetics, Tübingen, Germany, (February-1998).
|
|
•
|
Huber S , Mallot HA and Bülthoff HH : Evolution of the Sensorimotor Control in an Autonomous Agent, 35, Max Planck Institute for Biological Cybernetics, Tübingen, Germany, (July-1996).
|
Posters (4): |
|
•
|
Huber SA , Newell FN and Wallraven C (August-2001): Categorisation of dynamic objects, Twenty-fourth European Conference on Visual Perception, Kusadasi, Turkey, Perception, 30(ECVP Abstract Supplement) 22.
|
|
•
|
Wallraven C , Newell FN and Huber SA (2001): The Role of Dynamic Object Properties in Categorisation, ESCOP 2001.
|
|
•
|
Huber SA , Schröder M and Chatziastros A (February-1998): Die zeitliche Illusion des kürzeren Rückwegs, 1. Tübinger Wahrnehmungskonferenz (TWK 98), Tübingen, Germany.
|
|
•
|
Huber S , Mallot HA and Bülthoff HH (January-1996): Self-organization of the sensorimotor control in an autonomous system using genetic algorithms., Brain and Evolution, Vol. I, (Eds.) N. Elsner, H.-U. Schnitzler. Thieme, Stuttgart, 1996, Volume I 240.
|
Theses (1): |
|
•
|
Huber SA : Studies of the visual orientation behavior in flies using the artificial life approach., (1997).
PhD thesis
|