Mostrando 5 resultados de: 5
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Frontiers of Mechanical Engineering(1)
IFMBE Proceedings(1)
Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)(1)
Procedia Manufacturing(1)
Proceedings of the Annual International Conference of the IEEE Engineering in Medicine and Biology Society, EMBS(1)
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Fisiología humana(3)
Cirugía y especialidades médicas afines(2)
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An exploration of the erector spinae muscle for knee exoskeleton control
Conference ObjectAbstract: Lumbar erector spinae muscle has been little explored for knee exoskeleton control through sEMG signPalabras claves:Knee exoskeleton, Onset Motion, Sample entropy, SEMGAutores:AnaCecilia Villa-Parra, Delisle-Rodríguez D., Freire-Bastos T., López-Delis A., Neto A.F.Fuentes:googlescopusA pbkp_redictive model for human activity recognition by observing actions and context
Book PartAbstract: This paper presents a novel model to estimate human activities — a human activity is defined by a sePalabras claves:Autores:A. D. Sappa, Angel D. Sappa, Boris X. Vintimilla Burgos, Dennis G. Romero, Freire-Bastos T., Neto A.F.Fuentes:googlescopusDesign of active orthoses for a robotic gait rehabilitation system
ReviewAbstract: An active orthosis (AO) is a robotic device that assists both human gait and rehabilitation therapy.Palabras claves:active orthosis, electroencephalography, gait rehabilitation, surface electromyographyAutores:AnaCecilia Villa-Parra, Broche L., Delisle-Rodríguez D., Freire-Bastos T., Neto A.F., Sagaró R.Fuentes:googlescopusKnee motion pattern classification from trunk muscle based on sEMG signals
Conference ObjectAbstract: A prominent change is being carried out in the fields of rehabilitation and assistive exoskeletons iPalabras claves:Davies-Bouldin criterion, Erector spinae, knee motion intention, Pattern classification, sEMG signals, time-frequency featuresAutores:AnaCecilia Villa-Parra, Delisle-Rodríguez D., Freire-Bastos T., López-Delis A.Fuentes:googlescopusTowards a Robotic Knee Exoskeleton Control Based on Human Motion Intention through EEG and sEMGsignals
ArticleAbstract: The integration of lower limb exoskeletons with robotic walkers allows obtaining a system to improvePalabras claves:EEG, Human-motion-intention, Knee exoskeleton, pattern recognition, SEMGAutores:AnaCecilia Villa-Parra, Delisle-Rodríguez D., Freire-Bastos T., López-Delis A., Neto A.F., Sagaró R.Fuentes:googlescopus