
- The Mormyromast Region of the Mormyrid Electrosensory Lobe. I. Responses to Corollary Discharge and Electrosensory Stimuli
- Biol Cybern (2008) 99:517523 DOI 10.1007/s00422-008-0265-6
- cond-mat/0305515 Recurrent Biological Neural Networks
- Electrosensory Response Mechanisms in Mormyrid Electric Fish1
- Abstract. Association of a presynaptic spike with a postsynaptic spike can lead to changes in synaptic efficacy
- OVER-REPRESENTATION OF SPECIES-SPECIFIC VOCALIZATIONS IN THE AWAKE MOUSE INFERIOR COLLICULUS
- Stochastic recruitment in parallel ber activity patterns.
- 98:3461-3472, 2007. First published Oct 10, 2007; doi:10.1152/jn.00638.2007J Neurophysiol Lars Holmstrom, Patrick D. Roberts and Christine V. Portfors
- Modeling Inhibitory Plasticity in the Electrosensory System of Mormyrid Electric Fish
- ??, ??, 1 13 ?? c ?? Kluwer Academic Publishers, Boston. Manufactured in The Netherlands.
- causal role of the error, which is itself emergent, is not nearly so robust. Certainly it has consequences, but it cannot be described
- Journal Section: Behavioral/Systems/Cognitive Title: Efficient Encoding in the Auditory Midbrain
- Behavioral/Systems/Cognitive Effects of Sensing Behavior on a Latency Code
- Rhythmic Behavior Generated Ensembles of Neurons
- Recurrent biological neural networks: The weak and noisy limit Patrick D. Roberts*
- Neurocomputing 6566 (2005) 237242 Recurrent neural network generates a basis for
- Storage of auditory temporal patterns in the songbird telencephalon Patrick D. Roberts, a
- Postsynaptic modulation of electrical EPSP size investigated using a compartmental model
- J Comput Neurosci DOI 10.1007/s10827-006-0012-8
- Neurocomputing 69 (2006) 11911194 Model of auditory prediction in the dorsal cochlear nucleus
- Dynamic Regulation of Spike-timing Dependent Plasticity in Electrosensory
- The Mormyromast Region of the Mormyrid Electrosensory Lobe. II. Responses to Input From Central Sources
- NEUCOM 1780 pp: 1--7 (col.fig.: nil)
- Active Control of Spike-Timing Dependent Synaptic Plasticity in an Electrosensory System
- Mutual Inhibition Increases Adaptation Rate in an Electrosensory System 1
- Journal of Computational Neuroscience, Vol. no. 9, Issue No. 1, 67{81 (2000) c 2000 Kluwer Academic Publishers, Boston. Manufactured in The Netherlands.
- Classi cation of Temporal Patterns in Dynamic Biological Networks
- Classification of Rhythmic Patterns Stomatogastric Ganglion
- November 1995 Exploring Another Metaphor
- Biological Cybernetics Manuscript-Nr. (will be inserted by hand later)
- To appear in Neuroscience (9-1-95) The Stomatogastric Nervous System
- Temporal and Frequency Characteristics of Cartwheel Cells in the Dorsal Cochlear Nucleus of the Awake Mouse
- Slow glycinergic transmission mediated by transmitter pooling
- [EK7175]151009PRE Dynamics of temporal learning rules
- February 25, 2005 13:30 WSPC/INSTRUCTION FILE mccollum04 Journal of Integrative Neuroscience
- Biol Cybern (2008) 98:491507 DOI 10.1007/s00422-008-0217-1
- Neuronal Substrates of Sensory Processing for Song Perception and Learning in Songbirds
- SPATIAL ORGANIZATION OF RECEPTIVE FIELDS IN THE AUDITORY MIDBRAIN OF AWAKE MOUSE
- Behavioral/Systems/Cognitive Efficient Encoding of Vocalizations in the Auditory Midbrain