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Inicio Acta Otorrinolaringológica Española How to analyse a Vestibular Evoked Myogenic Potential? Applying a non-lineal met...
Journal Information
Vol. 62. Issue 2.
Pages 126-131 (January 2011)
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Vol. 62. Issue 2.
Pages 126-131 (January 2011)
Original Article
How to analyse a Vestibular Evoked Myogenic Potential? Applying a non-lineal method
¿Cómo analizar un Potencial evocado Miogénico Vestibular? Aplicación de un método no lineal
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Jorge Rey-Martíneza,
Corresponding author
bendermh@hotmail.com

Corresponding author.
, Julio Rama-Lópezb, Nicolás Pérez-Fernándezc, Rafael Barona-De Guzmánd
a Departamento de Otorrinolaringología, Facultad de Medicina, Universidad de Navarra, Pamplona, Spain
b Servicio ORL, Hospital Universitario Son Dureta, Palma de Mallorca, Spain
c Departamento de Otorrinolaringología, Clínica Universitaria de Navarra, Universidad de Navarra, Pamplona, Spain
d Clínica Barona y Asociados, Hospital Casa de Salud, Valencia, Spain
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Abstract
Introduction

This article presents the investigation of the clinical utility of artificial neural networks as an alternative in interpreting vestibular evoked myogenic potential (VEMP).

Methods

We developed an application that incorporates a neural network. This software reproduces and analyses the vestibular potential under study. The software also gives an estimated error for this process.

Results

The correlation obtained in this study between the neural network and an experienced human observer was always above 95%.

Conclusion

The neural network created offers useful, reliable interpretations of vestibular evoked myogenic potential, in agreement with current clinical parameters.

Keywords:
Vestibular evoked myogenic potential
Artificial neural network
Mathematical analysis
Resumen
Introducción

El propósito de este artículo es investigar la utilidad clínica de las redes neurales artificiales como alternativa a la interpretación del potencial evocado miogénico vestibular (VEMP).

Métodos

Para ello se diseña una aplicación informática que implementa una red neural que reproduce e interpreta el potencial vestibular a estudio, ofreciendo un error estimado de su propia interpretación.

Resultados

El grado de correlación obtenido en las distintas fases del trabajo entre la red neural y un observador experimentado se encontró siempre por encima del 95%.

Conclusión

La red neural creada es válida para ofrecer una interpretación útil y fiable de los potenciales evocados miogénicos vestibulares según los criterios clínicos actuales.

Palabras clave:
Potencial evocado miogénico vestibular
Red neural artificial
Análisis matemático

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