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Control of a robotic knee exoskeleton for assistance and rehabilitation based on motion intention from sEMG
ArticleAbstract: Introduction: This work presents the development of a novel robotic knee exoskeleton controlled by mPalabras claves:Admittance control, Electromyography, Robotic knee exoskeleton, Trunk muscles, User intention recognitionAutores:AnaCecilia Villa-Parra, Botelho T., Carelli R., Delisle-Rodríguez D., Freire-Bastos T., López-Delis A., Mayor J.J.V., 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 impedance modulation to control an active orthosis using insole sensors
ArticleAbstract: Robotic devices for rehabilitation and gait assistance have greatly advanced with the objective of iPalabras claves:Active knee orthosis, Admitance control, Footswitch, Gait cycle, Knee impedanceAutores:AnaCecilia Villa-Parra, Delisle-Rodríguez D., Freire-Bastos T., Lima J.S., Neto A.F.Fuentes:googlescopusTowards Multimodal Equipment to Help in the Diagnosis of COVID-19 Using Machine Learning Algorithms
ArticleAbstract: COVID-19 occurs due to infection through respiratory droplets containing the SARS-CoV-2 virus, whichPalabras claves:biomedical sensors, covid-19, diagnosis, Machine learning, Respiratory diseases, telemedicineAutores:AnaCecilia Villa-Parra, Caldeira E., Coelho Y., Delisle-Rodríguez D., Díaz C., Fernando Urgilés-Ortiz, Freire-Bastos T., Ismael Criollo, John Ignacio Calle Siguencia; PhD, Krishnan S., Lampier L., Rangel L., Sharma G., Silva L., Valadão C.Fuentes:scopusTowards a Brain-Computer Interface Based on Unsupervised Methods to Command a Lower-Limb Robotic Exoskeleton
Conference ObjectAbstract: This work presents a brain-computer interface (BCI) based on unsupervised methods for conveying contPalabras claves:Brain-Computer Interface, feature selection, gait intention, gait planning, spatial filterAutores:AnaCecilia Villa-Parra, Delisle-Rodríguez D., Freire-Bastos T.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:googlescopusShallow Convolutional Network Excel for Classifying Motor Imagery EEG in BCI Applications
ArticleAbstract: Many studies applying Brain-Computer Interfaces (BCIs) based on Motor Imagery (MI) tasks for rehabilPalabras claves:Brain-Computer Interface, EEG, Motor imagery, shallow convolutional neural networksAutores:Delisle-Rodríguez D., Lopez Baracaldo R., Milanes Hermosilla D., Nuñez-Alvarez J.R., Sagaro Zamora R., Trujillo Codorniu R., Yolanda LlosasFuentes:googlescopus