Adductor-type spasmodic dysphonia (ASD) is a task-specific speech disorder characterized by a strangled and strained voice. We have previously demonstrated that advanced voice analysis, performed with support vector machine, can objectively quantify voice impairment in dysphonic patients, also evidencing results of voice improvements due to symptomatic treatment with botulinum neurotoxin type-A injections into the vocal cords. Here, we expanded the analysis by means of three different machine learning algorithms (Support Vector Machine, Naïve Bayes and Multilayer Percept), on a cohort of 60 ASD patients, some of them also treated with botulinum neurotoxin type A therapy, and 60 age and gender-matched healthy subjects. Our analysis was based on sounds produced by speakers during the emission of /a/ and /e/ sustained vowels and a standardized sentence. As a conclusion, we report the main features with discriminatory capabilities to distinguish untreated vs. treated ASD patients vs. healthy subjects, and a comparison of the three classifiers with respect to their discriminating accuracy

Machine learning based voice analysis in spasmodic dysphonia: An investigation of most relevant features from specific vocal tasks / Costantini, G.; Leo, P. D.; Asci, F.; Zarezadeh, Z.; Marsili, L.; Errico, V.; Suppa, A.; Saggio, G.. - (2021), pp. 103-113. (Intervento presentato al convegno 14th International Joint Conference on Biomedical Engineering Systems and Technologies (BIOSTEC) / 14th Int Conf on Bio-inspired Systems and Signal Processing (BIOSIGNALS) / 14th Int Conf on Biomedical Electronics and Devices (BIODEVICES) tenutosi a ELECTR NETWORK) [10.5220/0010344601030113].

Machine learning based voice analysis in spasmodic dysphonia: An investigation of most relevant features from specific vocal tasks

Asci, F.;Marsili, L.;Suppa, A.;
2021

Abstract

Adductor-type spasmodic dysphonia (ASD) is a task-specific speech disorder characterized by a strangled and strained voice. We have previously demonstrated that advanced voice analysis, performed with support vector machine, can objectively quantify voice impairment in dysphonic patients, also evidencing results of voice improvements due to symptomatic treatment with botulinum neurotoxin type-A injections into the vocal cords. Here, we expanded the analysis by means of three different machine learning algorithms (Support Vector Machine, Naïve Bayes and Multilayer Percept), on a cohort of 60 ASD patients, some of them also treated with botulinum neurotoxin type A therapy, and 60 age and gender-matched healthy subjects. Our analysis was based on sounds produced by speakers during the emission of /a/ and /e/ sustained vowels and a standardized sentence. As a conclusion, we report the main features with discriminatory capabilities to distinguish untreated vs. treated ASD patients vs. healthy subjects, and a comparison of the three classifiers with respect to their discriminating accuracy
2021
14th International Joint Conference on Biomedical Engineering Systems and Technologies (BIOSTEC) / 14th Int Conf on Bio-inspired Systems and Signal Processing (BIOSIGNALS) / 14th Int Conf on Biomedical Electronics and Devices (BIODEVICES)
Adductor-type Spasmodic Dysphonia, Botulinum Neurotoxin, Voice Analysis, Cepstral Analysis, Feature Extraction, Feature Selection, Machine Learning.
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Machine learning based voice analysis in spasmodic dysphonia: An investigation of most relevant features from specific vocal tasks / Costantini, G.; Leo, P. D.; Asci, F.; Zarezadeh, Z.; Marsili, L.; Errico, V.; Suppa, A.; Saggio, G.. - (2021), pp. 103-113. (Intervento presentato al convegno 14th International Joint Conference on Biomedical Engineering Systems and Technologies (BIOSTEC) / 14th Int Conf on Bio-inspired Systems and Signal Processing (BIOSIGNALS) / 14th Int Conf on Biomedical Electronics and Devices (BIODEVICES) tenutosi a ELECTR NETWORK) [10.5220/0010344601030113].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1657089
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