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Combined Use of Standard and Throat Microphones for Measurement of Acoustic Voice Parameters and Voice Categorization

Uloza, Virgilijus (författare)
Lithuanian University of Health Sciences, Kaunas, Lithuania
Padervinskis, Evaldas (författare)
Lithuanian University of Health Sciences, Kaunas, Lithuania
Uloziene, Ingrida (författare)
Lithuanian University of Health Sciences, Kaunas, Lithuania
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Saferis, Viktoras (författare)
Lithuanian University of Health Sciences, Kaunas, Lithuania
Verikas, Antanas, 1951- (författare)
Högskolan i Halmstad,CAISR Centrum för tillämpade intelligenta system (IS-lab),Kaunas University of Technology, Kaunas, Lithuania
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 (creator_code:org_t)
Philadelphia, PA : Elsevier, 2015
2015
Engelska.
Ingår i: Journal of Voice. - Philadelphia, PA : Elsevier. - 0892-1997 .- 1873-4588. ; 29:5, s. 552-559
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Summary: Objective. The aim of the present study was to evaluate the reliability of the measurements of acoustic voice parameters obtained simultaneously using oral and contact (throat) microphones and to investigate utility of combined use of these microphones for voice categorization.Materials and Methods. Voice samples of sustained vowel /a/ obtained from 157 subjects (105 healthy and 52 pathological voices) were recorded in a soundproof booth simultaneously through two microphones: oral AKG Perception 220 microphone (AKG Acoustics, Vienna, Austria) and contact (throat) Triumph PC microphone (Clearer Communications, Inc, Burnaby, Canada) placed on the lamina of thyroid cartilage. Acoustic voice signal data were measured for fundamental frequency, percent of jitter and shimmer, normalized noise energy, signal-to-noise ratio, and harmonic-to-noise ratio using Dr. Speech software (Tiger Electronics, Seattle, WA).Results. The correlations of acoustic voice parameters in vocal performance were statistically significant and strong (r = 0.71–1.0) for the entire functional measurements obtained for the two microphones. When classifying into healthy-pathological voice classes, the oral-shimmer revealed the correct classification rate (CCR) of 75.2% and the throat-jitter revealed CCR of 70.7%. However, combination of both throat and oral microphones allowed identifying a set of three voice parameters: throat-signal-to-noise ratio, oral-shimmer, and oral-normalized noise energy, which provided the CCR of 80.3%.Conclusions. The measurements of acoustic voice parameters using a combination of oral and throat microphones showed to be reliable in clinical settings and demonstrated high CCRs when distinguishing the healthy and pathological voice patient groups. Our study validates the suitability of the throat microphone signal for the task of automatic voice analysis for the purpose of voice screening. Copyright © 2014 The Voice Foundation.

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Medicinteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Medical Engineering (hsv//eng)

Nyckelord

Oral contact microphones
Acoustic voice parameters
Voice categorization

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