• Title of article

    Influence of Data Acquisition Environment on Accuracy of Acoustic Voice Quality Measurements

  • Author/Authors

    Dimitar D. Deliyski، نويسنده , , Maegan K. Evans، نويسنده , , Heather S. Shaw، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2005
  • Pages
    11
  • From page
    176
  • To page
    186
  • Abstract
    Accuracy of acoustic voice analysis is influenced by the quality of recording. Lately, articles have suggested that soundcards perform equivalently to specialized professional-grade data acquisition (DA) systems. The purpose of this study was to investigate the influence of DA environment (DA system and microphone) on acoustic voice quality measurement (VQM) while balancing for gender, age, intersubject and intrasubject variability, and analysis software. More specifically, the relative performance of different hardware environments and the relationship between their technical characteristics and VQM performance was investigated. The discretization error and the effective dynamic range of the different DA environments were measured. We used 3 software systems to record and measure separately 2000 acoustic samples of sustained phonation for fundamental frequency, jitter, and shimmer. Analyses of variance (ANOVA) were performed with these parameters as the dependent variables. The results of the study suggested that professional-grade DA hardware is strongly recommended to provide accurate and valid voice assessment. The fundamental frequency measurement differences across DA environments were highly correlated to the discretization error (rآ =آ 1.00), whereas jitter and shimmer were highly correlated to the effective dynamic range of the DA environments (rآ =آ âˆ’0.68 and rآ =آ âˆ’0.86, respectively).
  • Keywords
    Perturbation , Fundamental frequency , Acoustic voice analysis , JITTER , shimmer , Data acquisition hardware , Voice assessment
  • Journal title
    Journal of Voice
  • Serial Year
    2005
  • Journal title
    Journal of Voice
  • Record number

    1280171