Keyword search (4,163 papers available)

"Deroche MLD" Authored Publications:

Title Authors PubMed ID
1 Use of a difference in fundamental frequency and spatial location beyond intelligibility purposes Adams R; Deroche MLD; 41263630
PSYCHOLOGY
2 Speech, Timbre, and Pitch Perception in Cochlear Implant Users With Flat-Panel CT-Based Frequency Reallocations: A Longitudinal Prospective Study Gilbert ML; Lewis RM; Deroche MLD; Jiam NT; Jiradejvong P; Mo J; Cooke DL; Limb CJ; 40689899
PSYCHOLOGY
3 The neural characteristics influencing literacy outcome in children with cochlear implants Koirala N; Manning J; Neumann S; Anderson C; Deroche MLD; Wolfe J; Pugh K; Landi N; Muthuraman M; Gracco VL; 40046341
PSYCHOLOGY
4 Cross-modal plasticity in children with cochlear implant: converging evidence from EEG and functional near-infrared spectroscopy Deroche MLD; Wolfe J; Neumann S; Manning J; Hanna L; Towler W; Wilson C; Bien AG; Miller S; Schafer E; Gemignani J; Alemi R; Muthuraman M; Koirala N; Gracco VL; 38846536
PSYCHOLOGY
5 Dynamic networks differentiate the language ability of children with cochlear implants Koirala N; Deroche MLD; Wolfe J; Neumann S; Bien AG; Doan D; Goldbeck M; Muthuraman M; Gracco VL; 37409105
PSYCHOLOGY
6 Grouping by Time and Pitch Facilitates Free but Not Cued Recall for Word Lists in Normally-Hearing Listeners Sares AG; Gilbert AC; Zhang Y; Iordanov M; Lehmann A; Deroche MLD; 37338981
PSYCHOLOGY
7 Visual biases in evaluation of speakers' and singers' voice type by cis and trans listeners Marchand Knight J; Sares AG; Deroche MLD; 37205083
PSYCHOLOGY
8 Auditory evoked response to an oddball paradigm in children wearing cochlear implants Deroche MLD; Wolfe J; Neumann S; Manning J; Towler W; Alemi R; Bien AG; Koirala N; Hanna L; Henry L; Gracco VL; 36965466
PSYCHOLOGY
9 Luminance effects on pupil dilation in speech-in-noise recognition Zhang Y; Malaval F; Lehmann A; Deroche MLD; 36459511
PSYCHOLOGY
10 Predicting emotion perception abilities for cochlear implant users Paquette S; Deroche MLD; Goffi-Gomez MV; Hoshino ACH; Lehmann A; 36047767
PSYCHOLOGY
11 Specificity of Affective Responses in Misophonia Depends on Trigger Identification Savard MA; Sares AG; Coffey EBJ; Deroche MLD; 35692416
PSYCHOLOGY
12 Cochlear Implant Compression Optimization for Musical Sound Quality in MED-EL Users Gilbert ML; Deroche MLD; Jiradejvong P; Chan Barrett K; Limb CJ; 34812791
PSYCHOLOGY
13 Adaptation to pitch-altered feedback is independent of one's own voice pitch sensitivity. Alemi R, Lehmann A, Deroche MLD 33033324
PSYCHOLOGY
14 Neural Correlates of Vocal Pitch Compensation in Individuals Who Stutter. Sares AG, Deroche MLD, Ohashi H, Shiller DM, Gracco VL 32161525
PSYCHOLOGY
15 Perception of Child-Directed Versus Adult-Directed Emotional Speech in Pediatric Cochlear Implant Users. Barrett KC, Chatterjee M, Caldwell MT, Deroche MLD, Jiradejvong P, Kulkarni AM, Limb CJ 32149924
PSYCHOLOGY
16 Processing of Acoustic Information in Lexical Tone Production and Perception by Pediatric Cochlear Implant Recipients. Deroche MLD, Lu HP, Lin YS, Chatterjee M, Peng SC 31281237
PSYCHOLOGY

 

Title:Perception of Child-Directed Versus Adult-Directed Emotional Speech in Pediatric Cochlear Implant Users.
Authors:Barrett KCChatterjee MCaldwell MTDeroche MLDJiradejvong PKulkarni AMLimb CJ
Link:https://www.ncbi.nlm.nih.gov/pubmed/32149924?dopt=Abstract
DOI:10.1097/AUD.0000000000000862
Publication:Ear and hearing
Keywords:
PMID:32149924 Category:Ear Hear Date Added:2020-03-10
Dept Affiliation: PSYCHOLOGY
1 Department of Otolaryngology-Head and Neck Surgery, University of California, San Francisco, San Francisco, California, USA.
2 Auditory Prostheses and Perception Lab, Center for Hearing Research, Boys Town National Research Hospital, Omaha, Nebraska, USA.
3 Vanderbilt University Medical Center, Nashville, Tennessee, USA.
4 Department of Psychology, Concordia University, Montreal, Quebec, Canada.

Description:

Perception of Child-Directed Versus Adult-Directed Emotional Speech in Pediatric Cochlear Implant Users.

Ear Hear. 2020 Mar 06;:

Authors: Barrett KC, Chatterjee M, Caldwell MT, Deroche MLD, Jiradejvong P, Kulkarni AM, Limb CJ

Abstract

OBJECTIVES: Cochlear implants (CIs) are remarkable in allowing individuals with severe to profound hearing loss to perceive speech. Despite these gains in speech understanding, however, CI users often struggle to perceive elements such as vocal emotion and prosody, as CIs are unable to transmit the spectro-temporal detail needed to decode affective cues. This issue becomes particularly important for children with CIs, but little is known about their emotional development. In a previous study, pediatric CI users showed deficits in voice emotion recognition with child-directed stimuli featuring exaggerated prosody. However, the large intersubject variability and differential developmental trajectory known in this population incited us to question the extent to which exaggerated prosody would facilitate performance in this task. Thus, the authors revisited the question with both adult-directed and child-directed stimuli.

DESIGN: Vocal emotion recognition was measured using both child-directed (CDS) and adult-directed (ADS) speech conditions. Pediatric CI users, aged 7-19 years old, with no cognitive or visual impairments and who communicated through oral communication with English as the primary language participated in the experiment (n = 27). Stimuli comprised 12 sentences selected from the HINT database. The sentences were spoken by male and female talkers in a CDS or ADS manner, in each of the five target emotions (happy, sad, neutral, scared, and angry). The chosen sentences were semantically emotion-neutral. Percent correct emotion recognition scores were analyzed for each participant in each condition (CDS vs. ADS). Children also completed cognitive tests of nonverbal IQ and receptive vocabulary, while parents completed questionnaires of CI and hearing history. It was predicted that the reduced prosodic variations found in the ADS condition would result in lower vocal emotion recognition scores compared with the CDS condition. Moreover, it was hypothesized that cognitive factors, perceptual sensitivity to complex pitch changes, and elements of each child's hearing history may serve as predictors of performance on vocal emotion recognition.

RESULTS: Consistent with our hypothesis, pediatric CI users scored higher on CDS compared with ADS speech stimuli, suggesting that speaking with an exaggerated prosody-akin to "motherese"-may be a viable way to convey emotional content. Significant talker effects were also observed in that higher scores were found for the female talker for both conditions. Multiple regression analysis showed that nonverbal IQ was a significant predictor of CDS emotion recognition scores while Years using CI was a significant predictor of ADS scores. Confusion matrix analyses revealed a dependence of results on specific emotions; for the CDS condition's female talker, participants had high sensitivity (d' scores) to happy and low sensitivity to the neutral sentences while for the ADS condition, low sensitivity was found for the scared sentences.

CONCLUSIONS: In general, participants had higher vocal emotion recognition to the CDS condition which also had more variability in pitch and intensity and thus more exaggerated prosody, in comparison to the ADS condition. Results suggest that pediatric CI users struggle with vocal emotion perception in general, particularly to adult-directed speech. The authors believe these results have broad implications for understanding how CI users perceive emotion




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