 | 2009 |
| 16 |  | Zhijun Yang,
Matthias H. Hennig,
Michael Postlethwaite,
Ian D. Forsythe,
Bruce P. Graham:
Wide-Band Information Transmission at the Calyx of Held.
Neural Computation 21(4): 991-1017 (2009) |
| 2008 |
| 15 |  | Rodrigo R. Braga,
Zhijun Yang,
Felipe Maia Galvão França:
Implementing an Artificial Centipede CPG - Integrating Appendicular and Axial Movements of the Scolopendromorph Centipede.
BIOSIGNALS (2) 2008: 58-62 |
| 14 |  | Zhijun Yang,
Alan F. Murray,
Juan Huo:
Deterministic Coincidence Detection and Adaptation Via Delayed Inputs.
ICANN (2) 2008: 453-461 |
| 13 |  | Zhijun Yang,
Juan Huo,
Alan F. Murray:
Self-organisation of Gait Pattern Transition - An Efficient Approach to Implementing Animal Gaits and Gait Transitions.
ICINCO-ICSO 2008: 75-79 |
| 12 |  | Juan Huo,
Alan F. Murray,
Leslie Smith,
Zhijun Yang:
Adaptation of barn owl localization system with spike timing dependent plasticity.
IJCNN 2008: 155-160 |
| 11 |  | Juan Huo,
Zhijun Yang,
Alan F. Murray:
Bio-inspired Real Time Sensory Map Realignment in a Robotic Barn Owl.
NIPS 2008: 713-720 |
| 2007 |
| 10 |  | Zhijun Yang,
Dongfeng Zhao:
A New Priority-based Scheme for QoS Differentiation in Wireless LAN.
IITA 2007: 192-195 |
| 2006 |
| 9 |  | Zhijun Yang,
Dongfeng Zhao:
Research on Multimedia Transmission of Mobile Learning Based on Wireless Network.
Edutainment 2006: 778-784 |
| 8 |  | Zhijun Yang,
Alan F. Murray,
Florentin Wörgötter,
Katherine L. Cameron,
Vasin Boonsobhak:
A neuromorphic depth-from-motion vision model with STDP adaptation.
IEEE Transactions on Neural Networks 17(2): 482-495 (2006) |
| 7 |  | Zhijun Yang,
Katherine L. Cameron,
Alan F. Murray,
Vasin Boonsobhak:
An Adaptive Visual Neuronal Model Implementing Competitive, Temporally Asymmetric Hebbian Learning.
Int. J. Neural Syst. 16(3): 151-162 (2006) |
| 6 |  | Zhijun Yang,
Alan F. Murray:
An artificial early visual model adopting spike-timing-dependent plasticity.
Neurocomputing 69(16-18): 1904-1911 (2006) |
| 2004 |
| 5 |  | Zhijun Yang,
Alan F. Murray:
A biologically plausible neuromorphic system for object recognition and depth analysis.
ESANN 2004: 157-162 |
| 2003 |
| 4 |  | Zhijun Yang,
Felipe M. G. França:
A generalized locomotion CPG architecture based on oscillatory building blocks.
Biological Cybernetics 89(1): 34-42 (2003) |
| 2000 |
| 3 |  | Felipe M. G. França,
Zhijun Yang:
Building Artificial CPGs with Asymmetric Hopfield Networks.
IJCNN (4) 2000: 290-298 |
| 1999 |
| 2 |  | Zhijun Yang,
Felipe M. G. França:
Implementing an Artificial CPG Using Fine-Grain FPGAs.
FPGA 1999: 250 |
| 1998 |
| 1 |  | Zhijun Yang,
Felipe Maia Galvão França:
Generating arbitrary rhythmic patterns with purely inhibitory neural networks.
ESANN 1998: 53-58 |