Conference Abstract
- Cai, Y., J. Gavornik, H.Z. Shouval (2005). Simulation of spike timing
dependent plasticity induced by spike triplets with stochastic transmitter
release. Soc. Neurosci. Abstr.
[abstract text]
[Poster PDF]
- Cai, Y., E. Av-Ron, J.H. Byrne, and D.A. Baxter (2004). Object-oriented
SNNAP: From design to implementation. Soc. Neurosci. Abstr.
[Poster PDF]
- Av-Ron, E., Y. Cai, J.H. Byrne, and D.A. Baxter (2004). Parallel SNNAP:
from object-oriented (OO) design to multithreading. Soc. Neurosci. Abstr.
[Poster PDF]
- Av-Ron E., Y. Cai, D.A. Baxter and J.H. Byrne (2004). SNNAP: Simulator
for neural networks and action potentials. Abstr. Houston Soc. Eng. Med. Biol.
- Xiao, J., J. Yen, M. Steffen, Y. Cai, D.A. Baxter, A. Feigenspan, and
D.W. Marshak (2003). Simulation of spontaneous activity in dopaminergic neurons
of mouse retina. ARVO Abstr.
- Cai, Y., M. Flynn, D.A. Baxter, and T. Crow (2002). Changes in spike
width in soma may not reflect changes in axon.
Soc. Neurosci. Abstr. 28, 446.19.
[abstract text]
- Cai, Y., D.A. Baxter, and T. Crow (2001). Computational study of
Hermissenda type-B photoreceptors. I. Ionic currents underlying changes in
excitability produced by one-trial conditioning. Soc. Neurosci. Abstr. 27, 2532.
[abstract text]
- Flynn, M., Y. Cai, D.A. Baxter, and T. Crow (2001). Computational
study of the Hermissenda B-photoreceptor II: Role of action potential duration
in synaptic facilitation. Soc. Neurosci. Abstr. 27, 2532.
[abstract text]
- Baxter, D.A., H. Chen, Y. Cai, A. Malik, A.J. Susswein, and J.H. Byrne
(2001). SNNAP: a general purpose simulator for neural networks and action
potentials. Soc. Neurosci. Abstr. 27, 46.
[abstract text]
- Cai, Y. (2001). Processing pitch-related information by cochlear nucleus
neurons: Results from experimental and computational studies.
Assoc. Res. Otolaryngol. Abstr.
[abstract text]
- Cai, Y., D.A. Baxter, and T. Crow (2000). Computational model of
Hermissenda type-B photoreceptors. Soc. Neurosci. Abstr. 26, 2032.
[abstract text]
- Baxter, D.A., Y. Cai, B. Brembs, and J.H. Byrne (2000). Simulating
physiological and morphological properties of neurons with SNNAP (Simulator
for Neural Networks and Action Potentials). Soc. Neurosci. Abstr. 26, 45.
[abstract text]
- Cai, Y. E.J. Walsh and J. McGee (2000). Simulating the directional
sensitivity of cochlear nucleus neurons to frequency-modulated stimuli
Assoc. Res. Otolaryngol. Abstr.
[abstract text]
- Cai, Y., J. McGee, and E.J. Walsh (1999). The contributions of ionic
conductances in the dynamic response of an octopus cell model
Assoc. Res. Otolaryngol. Abstr.
[abstract text]
- Cai, Y., J. McGee, and E.J. Walsh (1998). Processing of pitch information
in complex stimuli by a model of the octopus cell in the cochlear nucleus.
In Proceedings of the NATO Advanced Study Institute on Computational Hearing
(S. Greenberg and M. Slaney eds.), Il Ciocco, Italy.
- Cai, Y., J. McGee, and E.J. Walsh (1998). Responses of an octopus cell
model to spike trains recorded from auditory-nerve fibers.
Assoc. Res. Otolaryngol. Abstr.
[abstract text]
- Cai, Y. E.J. Walsh, and J. McGee (1997). "Missing fundamentals and Inner
hair cell filtering". Assoc. Res. Otolaryngol. Abstr., p.154.
[abstract text]
- Cai, Y. E.J. Walsh and J. McGee (1997). Onset response of octopus cells
is due to their intrinsic properties. Workshop on Central Auditory
Processing and Neural Modeling, Kaohsiung, Taiwan, R. O. China,
Abstr., p.43.
- Cai, Y. and C.D. Geisler (1996). A temporal model of auditory two-tone
suppression: Strength and weakness. Assoc. Res. Otolaryngol.
Abstr., p.?.
[abstract text]
- Cai, Y. and C.D. Geisler (1995). Two-tone suppression from auditory-nerve
fibers with different spontaneous rates. Assoc. Res. Otolaryngol.
Abstr., p.174.
[abstract text]
- Cai, Y. and C.D. Geisler (1994). Temporal aspects of two-tone suppression
exhibited by auditory-nerve fibers of cats. Assoc. Res. Otolaryngol.
Abstr., p.98.
[abstract text]
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This page was created on December 18, 1996.
Last modified on November 20, 2005.
(C) Copyright Yidao Cai 1995-2005
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