The reliability and sensitivity to change of acoustic measures of voice quality

This study aimed to evaluate the reliability and sensitivity to change of three commonly used acoustic parameters as measured by the Multi‐Dimensional Voice Programme (MDVP); jitter, shimmer and noise‐to‐harmonic ratio. A total of 231 subjects’ voices were recorded and analysed. The sample comprised...

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Published inClinical otolaryngology Vol. 29; no. 5; pp. 538 - 544
Main Authors Carding, P.N., Steen, I.N., Webb, A., MacKenzie, K., Deary, I.J., Wilson, J.A.
Format Journal Article
LanguageEnglish
Published Oxford, UK Blackwell Publishing Ltd 01.10.2004
Wiley Subscription Services, Inc
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Online AccessGet full text
ISSN0307-7772
1749-4478
1365-2273
1749-4486
DOI10.1111/j.1365-2273.2004.00846.x

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Abstract This study aimed to evaluate the reliability and sensitivity to change of three commonly used acoustic parameters as measured by the Multi‐Dimensional Voice Programme (MDVP); jitter, shimmer and noise‐to‐harmonic ratio. A total of 231 subjects’ voices were recorded and analysed. The sample comprised 145 dysphonic patients who received intervention (surgery or voice therapy), 36 dysphonic patients who received no intervention, and 50 non‐dysphonic (normal) subjects. All voices were recorded and analysed on two occasions (before and after treatment, or test–retest assessment) using a standard procedure. These data were analysed using standard psychometric procedures for assessing reliability and responsiveness. The acoustic analysis measures demonstrated poor to moderate reliability and effect size with respect to their sensitivity to change. Caution should be exercised in the injudicious use of computer‐based acoustic analysis systems as an isolated measure of voice outcome in any clinical trial of interventions aimed at improving voice quality.
AbstractList This study aimed to evaluate the reliability and sensitivity to change of three commonly used acoustic parameters as measured by the Multi-Dimensional Voice Programme (MDVP); jitter, shimmer and noise-to-harmonic ratio. A total of 231 subjects' voices were recorded and analysed. The sample comprised 145 dysphonic patients who received intervention (surgery or voice therapy), 36 dysphonic patients who received no intervention, and 50 non-dysphonic (normal) subjects. All voices were recorded and analysed on two occasions (before and after treatment, or test-retest assessment) using a standard procedure. These data were analysed using standard psychometric procedures for assessing reliability and responsiveness. The acoustic analysis measures demonstrated poor to moderate reliability and effect size with respect to their sensitivity to change. Caution should be exercised in the injudicious use of computer-based acoustic analysis systems as an isolated measure of voice outcome in any clinical trial of interventions aimed at improving voice quality.This study aimed to evaluate the reliability and sensitivity to change of three commonly used acoustic parameters as measured by the Multi-Dimensional Voice Programme (MDVP); jitter, shimmer and noise-to-harmonic ratio. A total of 231 subjects' voices were recorded and analysed. The sample comprised 145 dysphonic patients who received intervention (surgery or voice therapy), 36 dysphonic patients who received no intervention, and 50 non-dysphonic (normal) subjects. All voices were recorded and analysed on two occasions (before and after treatment, or test-retest assessment) using a standard procedure. These data were analysed using standard psychometric procedures for assessing reliability and responsiveness. The acoustic analysis measures demonstrated poor to moderate reliability and effect size with respect to their sensitivity to change. Caution should be exercised in the injudicious use of computer-based acoustic analysis systems as an isolated measure of voice outcome in any clinical trial of interventions aimed at improving voice quality.
This study aimed to evaluate the reliability and sensitivity to change of three commonly used acoustic parameters as measured by the Multi-Dimensional Voice Programme (MDVP); jitter, shimmer and noise-to-harmonic ratio. A total of 231 subjects' voices were recorded and analysed. The sample comprised 145 dysphonic patients who received intervention (surgery or voice therapy), 36 dysphonic patients who received no intervention, and 50 non-dysphonic (normal) subjects. All voices were recorded and analysed on two occasions (before and after treatment, or test-retest assessment) using a standard procedure. These data were analysed using standard psychometric procedures for assessing reliability and responsiveness. The acoustic analysis measures demonstrated poor to moderate reliability and effect size with respect to their sensitivity to change. Caution should be exercised in the injudicious use of computer-based acoustic analysis systems as an isolated measure of voice outcome in any clinical trial of interventions aimed at improving voice quality.
Author Carding, P.N.
Steen, I.N.
Deary, I.J.
Wilson, J.A.
Webb, A.
MacKenzie, K.
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Snippet This study aimed to evaluate the reliability and sensitivity to change of three commonly used acoustic parameters as measured by the Multi‐Dimensional Voice...
This study aimed to evaluate the reliability and sensitivity to change of three commonly used acoustic parameters as measured by the Multi-Dimensional Voice...
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SubjectTerms acoustic measurement
Adolescent
Adult
Aged
Aged, 80 and over
Demography
dysphonia
Female
Humans
Male
Middle Aged
perturbation
Reproducibility of Results
Sensitivity and Specificity
Speech Acoustics
voice disorders
Voice Disorders - diagnosis
Voice Disorders - therapy
Voice Quality
Voice Training
Title The reliability and sensitivity to change of acoustic measures of voice quality
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https://onlinelibrary.wiley.com/doi/abs/10.1111%2Fj.1365-2273.2004.00846.x
https://www.ncbi.nlm.nih.gov/pubmed/15373870
https://www.proquest.com/docview/197206485
https://www.proquest.com/docview/66888189
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