Jonathan H. Venezia, Ph.D.

Affiliations: 
Psychology University of California, Irvine, Irvine, CA 
Area:
Language, Aphasia
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Gregory S Hickok grad student 2014 UC Irvine
 (Psychophysical and neurophysiological investigations from three approaches to understanding human speech processing.)
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Publications

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Herrera C, Whittle N, Leek MR, et al. (2023) Cortical networks for recognition of speech with simultaneous talkers. Hearing Research. 437: 108856
Hickok G, Venezia J, Teghipco A. (2022) Beyond Broca: neural architecture and evolution of a dual motor speech coordination system. Brain : a Journal of Neurology
Venezia JH, Herrera C, Whittle N, et al. (2022) Task-modulated Sensitivity to Vocal Pitch in the Dorsal Premotor Cortex during Multitalker Speech Recognition. Journal of Cognitive Neuroscience. 1-26
Venezia JH, Richards VM, Hickok G. (2021) Speech-Driven Spectrotemporal Receptive Fields Beyond the Auditory Cortex. Hearing Research. 408: 108307
Venezia JH, Leek MR, Lindeman MP. (2020) Suprathreshold Differences in Competing Speech Perception in Older Listeners With Normal and Impaired Hearing. Journal of Speech, Language, and Hearing Research : Jslhr. 1-21
Bernstein JGW, Venezia JH, Grant KW. (2020) Auditory and auditory-visual frequency-band importance functions for consonant recognition. The Journal of the Acoustical Society of America. 147: 3712
Venezia JH, Martin AG, Hickok G, et al. (2019) Identification of the Spectrotemporal Modulations That Support Speech Intelligibility in Hearing-Impaired and Normal-Hearing Listeners. Journal of Speech, Language, and Hearing Research : Jslhr. 62: 1051-1067
Stokes RC, Venezia JH, Hickok G. (2019) The motor system's [modest] contribution to speech perception. Psychonomic Bulletin & Review
Venezia J. (2019) Data-driven methods in a model-driven world: Making sense of auditory classification images for continuous speech The Journal of the Acoustical Society of America. 145: 1685-1685
Venezia JH, Thurman SM, Richards VM, et al. (2018) Hierarchy of speech-driven spectrotemporal receptive fields in human auditory cortex. Neuroimage. 186: 647-666
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