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ESANN
2004
13 years 11 months ago
Modelling of biologically plausible excitatory networks: emergence and modulation of neural synchrony
To emphasize the electrical nature of information processing in the brain we use a compartmental model of single neurons. The realistic simulation of wave-like activity in the recu...
Karsten Kube, Andreas Herzog, Vadym Spravedlyvyy, ...
WSOM
2009
Springer
14 years 4 months ago
Top-Down Control of Learning in Biological Self-Organizing Maps
This paper discusses biological aspects of self-organising maps (SOMs) which includes a brief review of neurophysiological findings and classical models of neurophysiological SOMs...
Thomas P. Trappenberg, Pitoyo Hartono, Douglas Ras...
BMCBI
2008
99views more  BMCBI 2008»
13 years 10 months ago
Towards a lightweight generic computational grid framework for biological research
Background: An increasing number of scientific research projects require access to large-scale computational resources. This is particularly true in the biological field, whether ...
Mark D. Halling-Brown, David S. Moss, Adrian J. Sh...
BIBM
2008
IEEE
141views Bioinformatics» more  BIBM 2008»
14 years 4 months ago
Protein-Protein Interaction Network Alignment by Quantitative Simulation
We adapt a network simulation algorithm called quantitative simulation (QSim) for use in the alignment of biological networks. Unlike most network alignment methods, QSim finds l...
Perry Evans, Ted Sandler, Lyle H. Ungar
ICRA
2007
IEEE
151views Robotics» more  ICRA 2007»
14 years 4 months ago
Polychaete-like Pedundulatory Robotic Locomotion
— The polychaete annelid marine worms propel themselves in a variety of challenging locomotion environments by a unique form of tail-to-head body undulations, combined with the s...
Michael Sfakiotakis, Dimitris P. Tsakiris, Kostas ...