DocumentCode :
953057
Title :
Applications of Static and Dynamic Iterated Rippled Noise to Evaluate Pitch Encoding in the Human Auditory Brainstem
Author :
Swaminathan, Jayaganesh ; Krishnan, Ananthanarayan ; Gandour, Jackson T. ; Xu, Yisheng
Author_Institution :
Purdue Univ., Lafayette
Volume :
55
Issue :
1
fYear :
2008
Firstpage :
281
Lastpage :
287
Abstract :
This paper presents a new application of the dynamic iterated rippled noise (IRN) algorithm by generating dynamic pitch contours representative of those that occur in natural speech in the context of EEG and the frequency following response (FFR). Besides IRN steady state and linear rising stimuli, curvilinear rising stimuli were modeled after pitch contours of natural productions of Mandarin Tone 2. Electrophysiological data on pitch representation at the level of the brainstem, as reflected in FFR, were evaluated for all stimuli, static or dynamic. Autocorrelation peaks were observed corresponding to the fundamental period (tau) as well as spectral bands at the fundamental and its harmonics for both a low and a high iteration step. At the higher iteration step, both spectral and temporal FFR representations were more robust, indicating that both acoustic properties may be utilized for pitch extraction at the level of the brainstem. By applying curvilinear IRN stimuli to elicit FFRs, we can evaluate the effects of temporal degradation on 1) the neural representation of linguistically-relevant pitch features in a target population (e.g. cochlear implant) and 2) the efficacy of signal processing schemes in conventional hearing aids and cochlear implants to recover these features.
Keywords :
auditory evoked potentials; electroencephalography; encoding; medical signal processing; neurophysiology; signal representation; speech; EEG; IRN steady state; Mandarin tone; acoustic property; autocorrelation; cochlear implant; curvilinear rising stimuli; dynamic iterated rippled noise; electrophysiological data; experience dependent plasticity; frequency following response; hearing aid; human auditory brainstem; linear rising stimuli; linguistically-relevant pitch feature; natural speech; neural representation; pitch contour; pitch encoding; pitch extraction; signal processing; static iterated rippled noise; temporal degradation; Cochlear implants; Electroencephalography; Encoding; Frequency; Heuristic algorithms; Humans; Natural languages; Noise generators; Signal processing algorithms; Steady-state; Auditory brainstem; cochlear implant; experience dependent plasticity; frequency following response; iterated rippled noise; pitch; signal processing; Adult; Algorithms; Brain Stem; Computer Simulation; Diagnosis, Computer-Assisted; Electroencephalography; Evoked Potentials, Auditory, Brain Stem; Humans; Models, Neurological; Pitch Perception;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2007.896592
Filename :
4359999
Link To Document :
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