LOPEZ AVITIA, ROBERTO

LOPEZ AVITIA, ROBERTO

MEDICINA Y CIENCIAS DE LA SALUD · Nivel 1

Machine Learning Biomedical Signal Medical Images Biomechanical Systems

Desde 2015 es Full Professor en National Technological Institute of Mexico

Roberto L. Avitia received the B.S. degree in biomedical electronic engineering from the National Institute of Technology of Mexico in 2004, the M.S. degree in bioelectronics from the Center for Research and Advanced Studies of the National Polytechnic Institute in...

Roberto L. Avitia received the B.S. degree in biomedical electronic engineering from the National Institute of Technology of Mexico in 2004, the M.S. degree in bioelectronics from the Center for Research and Advanced Studies of the National Polytechnic Institute in 2006, and the Ph.D. degree in biomedical engineering from Autonomous University of Baja California (UABC) in 2013. His past employment includes industrial at Hirata Engineering and hospital experience at National Institute of Cardiology. He joined the Department of Bioengineering and Environmental Health at UABC in 2007 by applying dynamic programming and machine learning algorithms in high resolution electrocardiography (HRECG). He was creator of the bioengineering undergraduate program at UABC. Dr. L. Avitia is currently Full Professor of the bioengineering program at the UABC and Member of the National System of Researchers. His research interests include machine learning algorithms applied to biomedical systems, development of medical instrumentation, and pattern recognition.

Leer más

Perfil académico

Nombre ROBERTO LOPEZ AVITIA
Área MEDICINA Y CIENCIAS DE LA SALUD
Campo MEDICINA Y CIENCIAS DE LA SALUD
Disciplina ELECTRÓNICA, INSTRUMENTACIÓN, BIOMECÁNICA
Especialidad OTRAS
CVU 167316
Institución
Dependencia INSTITUTO TECNOLOGICO DE MEXICALI
Entidad BAJA CALIFORNIA
Nivel 1
Vigencia Inicio: 01/01/2025
Fin: 31/12/2029

Últimas publicaciones Scopus

2024
Monitoring of Airborne Pollen: A Patent Review Atmosphere · Vol. 15 Review
2018
Evaluation of significant effects on locking plates design for a 2-part fracture of the surgical neck of the humerus using finite element and statistical analysis Biomedical Research India · Vol. 29 Article