Congenital Disorders Clinical Trial
— FONOTIPOOfficial title:
Vocal Pattern Assessment as a New Key to Identifying Rare Syndromes
Verified date | August 2023 |
Source | Fondazione Policlinico Universitario Agostino Gemelli IRCCS |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Interventional |
Primary Study Objective The primary objective of the study is the definition of distinct vocal phenotypes and the development of an Explained Decision Support System (DSS) for the automatic detection of vocal patterns in relation to the syndrome from which the patients suffer Secondary: 1. Perceptual and acoustic analysis of voice recordings 2. Development of a voice recording collection system.
Status | Not yet recruiting |
Enrollment | 500 |
Est. completion date | September 20, 2025 |
Est. primary completion date | May 15, 2025 |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | All |
Age group | 1 Year to 18 Years |
Eligibility | Inclusion Criteria: - Laboratory confirmation of the clinical diagnosis of one of the syndromes under investigation. - Informed consent from parents, legal representatives or the patients themselves, according to the instructions of the hospital's Ethics Committee. Exclusion Criteria: - Concomitant acute inflammatory disease of the upper respiratory tract. - Refusal to sign the informed consent to participate in the study. |
Country | Name | City | State |
---|---|---|---|
Italy | Fondazione Policlinico Universitario A. Gemelli Irccs | Roma |
Lead Sponsor | Collaborator |
---|---|
Fondazione Policlinico Universitario Agostino Gemelli IRCCS | Campus Bio-Medico University, University of Florence |
Italy,
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Vocal Phenotype definition of frequencies | Distinct vocal phenotypes of each syndrome will be extracted through Biovoice software.
BioVoice allows the sequential analysis of several audio signals at once without any manual setting. The software allows the analysis of fundamental and formants frequency (measured in Hz). |
2 years | |
Primary | Vocal Phenotype definition of irregularity | The definition of irregularity of voices of each syndrome will be extracted through PRAAT software.
PRAAT implements a method based on autocorrelation, applied to a time window of fixed size, and linear predictive coding. It requires the manual setting of some parameters. The software allows the analysis of irregularity, namely jitter that is the relative average perturbation (measured in absolute jitter =1N-1?i=1N-1|Ti-Ti+1|). |
2 years | |
Primary | Vocal Phenotype definition of noise | The definition of irregularity of voices of each syndrome will be extracted through PRAAT software.
PRAAT implements a method based on autocorrelation, applied to a time window of fixed size, and linear predictive coding. It requires the manual setting of some parameters. The software allows the analysis of noise (measured in dB). |
2 years | |
Secondary | Perceptual and acoustic analysis of voice recordings | The perceptual evaluation of voice is aimed at further delineate the differences between syndromic and healthy subject voices. Judges will score the voice of each participant using the Grade, Instability, Roughness, Breathiness, Asthenia, and Strain (GIRBAS) scale.
GIRBAS scale provides a perceptual evaluation of voice according to five parameters: Grade (overall impression), Roughness, Breathiness, Asthenicity and Strain. Each parameter is rated on a 0 to 3 scale, where 0 indicates normality; 1, a slight deviance; 2, a moderate deviance; and 3, a severe deviance from normal. |
2 years | |
Secondary | Other perceptual and acoustic analysis of voice recordings | Hypernasality and hyponasality will be assessed using a 4-point ordinal rating scale with 1 representing normal resonance, 2, 3, and 4 representing mild, moderate and severe impairment. | 2 years | |
Secondary | Development of a system for collecting voice recordings - frequencies | The development of a system to collect voice recordings will be made throught a Structured Query Language (SQL) database where all the voice recordings obtained will be stored in encrypted hard disks, accessible for data analysis and storage. For this project a cross-platform app, to record and manage the voice signal, for smartphones will be developed through an app framework (e.g Xamarin).
The following acoustic parameters will be stored and managed: fundamental and formants frequency (measured in Hz). |
2 years | |
Secondary | Development of a system for collecting voice recordings - irregularities | The development of a system to collect voice recordings will be made throught a Structured Query Language (SQL) database where all the voice recordings obtained will be stored in encrypted hard disks, accessible for data analysis and storage. For this project a cross-platform app, to record and manage the voice signal, for smartphones will be developed through an app framework (e.g Xamarin).
The following acoustic parameters will be stored and managed: relative average perturbation (measured in absolute jitter). |
2 years | |
Secondary | Development of a system for collecting voice recordings - noise | The development of a system to collect voice recordings will be made throught a Structured Query Language (SQL) database where all the voice recordings obtained will be stored in encrypted hard disks, accessible for data analysis and storage. For this project a cross-platform app, to record and manage the voice signal, for smartphones will be developed through an app framework (e.g Xamarin).
The following acoustic parameters will be stored and managed: noise (measured in dB). |
2 years |
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