-
Physiology and mathematical modeling
of the auditory system.
In: Tutorials in Mathematical
Biosciences I. Mathematical Neurosciences, Lecture Notes in
Mathematics, Vol. 1860, Springer, Berlin Heidelberg New York,
2005
- with B. H. Smith:
Odor interactions and learning in a model of the insect antennal lobe.
Neurocomputing 58-60: 1041-1047, 2004
- with J. Rinzel:
Understanding neuronal dynamics by geometrical dissection of minimal models.
In:
Methods and Models in Neurophysics, Les Houches Summer School,
Session LXXX, C. Chow, B. Gutkin, D. Hansel and C. Meunier (eds).
Elsevier, 2004
- with M. N. Semple and J. Rinzel:
Adaptation and inhibition underlie responses to time-varying interaural phase
cues in a model of inferior colliculus neurons.
J. Neurophysiol. 88: 2134-2146, 2002
- with M. N. Semple and J. Rinzel:
Computational model for the dynamic aspects of sound processing in
the auditory midbrain.
Neurocomputing 38: 1127-1134, 2001
- with B. H. Smith:
Model antennal lobe: odor interactions in binary mixtures.
In preparation
- with J. Best and D. Terman:
Decorrelation in neuronal systems: separating frequencies.
In preparation
- with J. Best, J. Rubin, D. Terman, and M. Wechselberger:
The dynamic range of bursting in a model respiratory pacemaker network.
In preparation
Last updated November 2, 2004