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Effect of Initial-consonant Intensity on the Speed of Lexical Decisions

Overview
Publisher Springer
Specialties Psychiatry
Psychology
Date 2014 Jan 18
PMID 24435901
Citations 2
Authors
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Abstract

In the present study, we investigated the effect of initial-consonant intensity on lexical decisions. Amplification was selectively applied to the initial consonant of monosyllabic words. In Experiment 1, young adults with normal hearing completed an auditory lexical decision task with words that either had the natural or amplified initial consonant. The results demonstrated faster reaction times for amplified words when listeners randomly heard words spoken by two unfamiliar talkers. The same pattern of results was found when comparing words in which the initial consonant was naturally higher in intensity than the low-intensity consonants, across all amplification conditions. In Experiment 2, listeners were familiarized with the talkers and tested on each talker in separate blocks, to minimize talker uncertainty. The effect of initial-consonant intensity was reversed, with faster reaction times being obtained for natural than for amplified consonants. In Experiment 3, nonlinguistic processing of the amplitude envelope was assessed using noise modulated by the word envelope. The results again demonstrated faster reaction times for natural than for amplified words. Across all experiments, the results suggest that the acoustic-phonetic structure of the word influences the speed of lexical decisions and interacts with the familiarity and predictability of the talker. In unfamiliar and less-predictable listening contexts, initial-consonant amplification increases lexical decision speed, even if sufficient audibility is available without amplification. In familiar contexts with adequate audibility, an acoustic match of the stimulus with the stored mental representation of the word is more important, possibly along with general auditory properties related to loudness perception.

Citing Articles

Simultaneous and forward masking of vowels and stop consonants: Effects of age, hearing loss, and spectral shaping.

Fogerty D, Bologna W, Ahlstrom J, Dubno J J Acoust Soc Am. 2017; 141(2):1133.

PMID: 28253707 PMC: 5848836. DOI: 10.1121/1.4976082.


Sentence intelligibility during segmental interruption and masking by speech-modulated noise: Effects of age and hearing loss.

Fogerty D, Ahlstrom J, Bologna W, Dubno J J Acoust Soc Am. 2015; 137(6):3487-501.

PMID: 26093436 PMC: 4474944. DOI: 10.1121/1.4921603.

References
1.
Sammeth C, Dorman M, Stearns C . The role of consonant-vowel amplitude ratio in the recognition of voiceless stop consonants by listeners with hearing impairment. J Speech Lang Hear Res. 1999; 42(1):42-55. DOI: 10.1044/jslhr.4201.42. View

2.
Saripella R, Loizou P, Thibodeau L, Alford J . The effects of selective consonant amplification on sentence recognition in noise by hearing-impaired listeners. J Acoust Soc Am. 2011; 130(5):3028-37. PMC: 3248061. DOI: 10.1121/1.3641407. View

3.
Foo C, Rudner M, Ronnberg J, Lunner T . Recognition of speech in noise with new hearing instrument compression release settings requires explicit cognitive storage and processing capacity. J Am Acad Audiol. 2008; 18(7):618-31. DOI: 10.3766/jaaa.18.7.8. View

4.
Hickson L, Byrne D . Consonant perception in quiet: effect of increasing the consonant-vowel ratio with compression amplification. J Am Acad Audiol. 1997; 8(5):322-32. View

5.
Souza P, Gallun F . Amplification and consonant modulation spectra. Ear Hear. 2010; 31(2):268-76. PMC: 2859440. DOI: 10.1097/AUD.0b013e3181c9fb9c. View