Author:
Fletcher Mark D.,Akis Esma,Verschuur Carl A.,Perry Samuel W.
Abstract
AbstractHaptic hearing aids, which provide speech information through tactile stimulation, could substantially improve outcomes for both cochlear implant users and for those unable to access cochlear implants. Recent advances in wide-band haptic actuator technology have made new audio-to-tactile conversion strategies viable for wearable devices. One such strategy filters the audio into eight frequency bands, which are evenly distributed across the speech frequency range. The amplitude envelopes from the eight bands modulate the amplitudes of eight low-frequency tones, which are delivered through vibration to a single site on the wrist. This tactile vocoder strategy effectively transfers some phonemic information, but vowels and obstruent consonants are poorly portrayed. In 20 participants with normal touch perception, we tested (1) whether focusing the audio filters of the tactile vocoder more densely around the first and second formant frequencies improved tactile vowel discrimination, and (2) whether focusing filters at mid-to-high frequencies improved obstruent consonant discrimination. The obstruent-focused approach was found to be ineffective. However, the formant-focused approach improved vowel discrimination by 8%, without changing overall consonant discrimination. The formant-focused tactile vocoder strategy, which can readily be implemented in real time on a compact device, could substantially improve speech perception for haptic hearing aid users.
Funder
Engineering and Physical Sciences Research Council
Publisher
Springer Science and Business Media LLC
Reference66 articles.
1. Brooks, P. L., Frost, B. J., Mason, J. L. & Chung, K. Acquisition of a 250-word vocabulary through a tactile vocoder. J. Acoust. Soc. Am. 77, 1576–1579. https://doi.org/10.1121/1.392000 (1985).
2. De Filippo, C. L. Laboratory projects in tactile aids to lipreading. Ear Hear. 5, 211–227. https://doi.org/10.1097/00003446-198407000-00006 (1984).
3. Reed, C. M., Delhorne, L. A. & Durlach, N. A. In The 2nd International Conference on Tactile Aids, Hearing Aids, and Cochlear Implants. (eds Risberg, A. et al.) 149–155 (Royal Institute of Technology).
4. Cowan, R. S. et al. Role of a multichannel electrotactile speech processor in a cochlear implant program for profoundly hearing-impaired adults. Ear Hear. 12, 39–46. https://doi.org/10.1097/00003446-199102000-00005 (1991).
5. Fletcher, M. D. & Verschuur, C. A. Electro-haptic stimulation: A new approach for improving cochlear-implant listening. Front. Neurosci. 15, 581414. https://doi.org/10.3389/fnins.2021.581414 (2021).
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