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Técnicas de evaluación funcional auditiva y terapias sonoras

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Changes in discharge rate and synchrony due to the presence of tinnitus should be reflected in altered ABR waveforms, which would be useful in objectively detecting tinnitus. In fact, some researchers have reported changes in the latencies and/or amplitudes of ABR waves due to tinnitus. However, these slight changes in amplitude and/ or latency are not significant enough for diagnosing purpose. Nevertheless, after reviewing recent developments concerning the basis of tinnitus, Knipper et al. suggested that improved ABR wave analysis should help in the objective diagnosis of tinnitus. Thus, the aim of this work has been to propose a finer analysis of ABR combining Variational Mode Decomposition (VMD) with feature extraction to provide objective cues for the presence of tinnitus. The proposed analysis method has been applied to a cohort of 95 human subjects, 73 without tinnitus and 22 with tinnitus, gathered in four age and sex matched subgroups.

Publicaciones
Año: 2018
Revistas JCR
Relating tinnitus features and audiometric characteristics in a cohort of 34 tinnitus subjects
Cuesta, M., Cobo, P.
Loquens, 5(2), e054.
http://dx.doi.org/10.3989/loquens.2018.054
GAA
Año: 2020
Revistas JCR
Broadband Sound Equalized by The Hearing Loss Curves as an Improved Stimulus for Tinnitus Retraining Therapy-A Pilot, Non-Controlled Observational Study
María Cuesta, Pedro Cobo
J Int Adv Otol. 2020 Aug;16(2):207-212.
https://doi.org/10.5152/iao.2020.7834
GAA
Año: 2021
Publicaciones en revistas con otros índices
Customised enriched acoustic environment for sound therapy of tinnitus
Pedro Cobo, María Cuesta and Carlos de la Colina
Acta Acustica, 5: 34
https://doi.org/10.1051/aacus/2021028
GAA
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Datos del proyecto

201750E037
Proyectos intramurales (CSIC)
201750E037
Investigador principal
María Cuesta Ruiz
Inicio: 01-02-2017 Finalización: 31-01-2019
GAA
Acoustics and Non Destructive Evaluation (DAEND)
  • Environmental Acoustics (GAA)
  • G Carma: Materials Characterization by Non Destructive Evaluation
  • ULAB, Ultrasounds for Liquid Analysis and Bioengineering
Information and Communication Technologies (TIC)
  • Cybersecurity and Privacy Protection Research Group (GiCP)
  • Research group on Cryptology and Information Security (GiCSI)
    • Quantum Communications Laboratory (LCQE)
  • Multichannel Ultrasonic Signal Processing Group (MUSP)
Sensors and Ultrasonic Systems (DSSU)
  • Ultrasonic Systems and Technologies (USTG)
  • Nanosensors and Smart Systems (NoySi)
  • Ultrasonic Resonators for cavitation and micromanipulation (RESULT)
  • Advanced Sensor Technology (SENSAVAN)
  • Quantum Electronics (QE)
Laboratorios
  • Laboratorio de Acústica
  • Laboratorio de Metrología Ultrasónica Médica (LMUM)
  • Laboratorio de Comunicaciones Cuánticas
  • Laboratory for International Collaboration in Advanced Biophotonics Imaging

Instituto de Tecnologías Físicas y de la Información Leonardo Torres Quevedo  - ITEFI
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