Oded Ghitza
According to our database1,
Oded Ghitza
authored at least 17 papers
between 1985 and 2014.
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Bibliography
2014
Acoustic landmarks drive delta-theta oscillations to enable speech comprehension by facilitating perceptual parsing.
NeuroImage, 2014
2011
Proceedings of the 12th Annual Conference of the International Speech Communication Association, 2011
2009
A non-linear efferent-inspired model of the auditory system; matching human confusions in stationary noise.
Speech Commun., 2009
Representation of Time-Varying Stimuli by a Network Exhibiting Oscillations on a Faster Time Scale.
PLoS Comput. Biol., 2009
On the Possible Role of Brain Rhythms in Speech Perception: Intelligibility of Time-Compressed Speech with Periodic and Aperiodic Insertions of Silence.
Phonetica, 2009
2008
Consonant discrimination of degraded speech using an efferent-inspired closed-loop cochlear model.
Proceedings of the 9th Annual Conference of the International Speech Communication Association, 2008
2006
IEEE Trans. Speech Audio Process., 2006
1995
A comparative study of mel cepstra and EIH for phone classification under adverse conditions.
Proceedings of the 1995 International Conference on Acoustics, 1995
1994
Auditory models and human performance in tasks related to speech coding and speech recognition.
IEEE Trans. Speech Audio Process., 1994
Proceedings of the 3rd International Conference on Spoken Language Processing, 1994
1993
Hidden Markov models with templates as non-stationary states: an application to speech recognition.
Comput. Speech Lang., 1993
1988
Proceedings of the IEEE International Conference on Acoustics, 1988
1987
IEEE Trans. Acoust. Speech Signal Process., 1987
Proceedings of the IEEE International Conference on Acoustics, 1987
1986
IEEE Trans. Acoust. Speech Signal Process., 1986
Speech analysis/Synthesis based on matching the synthesized and the original representations in the auditory nerve level.
Proceedings of the IEEE International Conference on Acoustics, 1986
1985
A measure of in-synchrony regions in the auditory nerve firing patterns as a basis for speech vocoding.
Proceedings of the IEEE International Conference on Acoustics, 1985