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Suitability of Dysphonia Measurements for Telemonitoring of Parkinson's Disease

IEEE Transactions on Biomedical Engineering · 2008 · Vol. 56(4) · pp. 1015–1022
Max A. LittlePatrick McSharryEric J. HunterJennifer SpielmanLorraine O. Ramig

Abstract

We present an assessment of the practical value of existing traditional and non-standard measures for discriminating healthy people from people with Parkinson's disease (PD) by detecting dysphonia. We introduce a new measure of dysphonia, Pitch Period Entropy (PPE), which is robust to many uncontrollable confounding effects including noisy acoustic environments and normal, healthy variations in voice frequency. We collected sustained phonations from 31 people, 23 with PD. We then selected 10 highly uncorrelated measures, and an exhaustive search of all possible combinations of these measures finds four that in combination lead to overall correct classification performance of 91.4%, using a kernel support vector machine. In conclusion, we find that non-standard methods in combination with traditional harmonics-to-noise ratios are best able to separate healthy from PD subjects. The selected non-standard methods are robust to many uncontrollable variations in acoustic environment and individual subjects, and are thus well-suited to telemonitoring applications.

Voice and Speech DisordersMusic and Audio ProcessingSpeech and Audio ProcessingUncorrelatedSupport vector machineSpeech recognitionParkinson's diseaseConfoundingEntropy (arrow of time)AudiologyArtificial intelligenceComputer scienceDisease
Citations
1,002
FWCI
10.19
field-weighted impact
References
54
Percentile
99%
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Citations per year
References
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Applied Physics Letters · 2000 · 3,588 citations
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