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Visual evoked potential-based brain-machine interface applications to assist disabled people., , , и . Expert Syst. Appl., 39 (9): 7908-7918 (2012)Analysis of EEG Mapping Images to Differentiate Mental Tasks in Brain-Computer Interfaces., , , и . IWINAC (1), том 6686 из Lecture Notes in Computer Science, стр. 246-255. Springer, (2011)Empirical Analysis of the Integration of a BCI and an EOG Interface to Control a Robot Arm., , , , и . IWINAC (1), том 7930 из Lecture Notes in Computer Science, стр. 151-160. Springer, (2013)Endogenous brain-machine interface based on the correlation of EEG maps., , , и . Comput. Methods Programs Biomed., 112 (2): 302-308 (2013)Evaluating Classifiers to Detect Arm Movement Intention from EEG Signals., , , , , и . Sensors, 14 (10): 18172-18186 (2014)Usability and acceptance of using a lower-limb exoskeleton controlled by a BMI in incomplete spinal cord injury patients: a case study., , , , , , , и . EMBC, стр. 4737-4740. IEEE, (2020)Studying Cognitive Attention Mechanisms during Walking from EEG Signals., , , , , и . SMC, стр. 882-886. IEEE, (2015)Assessment of motor imagery in gamma band using a lower limb exoskeleton., , , , , и . SMC, стр. 2773-2778. IEEE, (2019)Analyzing electrode configurations to detect intention of pedaling initiation through EEG signals., , , и . SMC, стр. 1614-1619. IEEE, (2016)Analysis of Different Stimulus for Evoking the ErrP Potential in a MI-BMI for Starting the Gait with a Lower-Limb Exoskeleton., , , , , и . SMC, стр. 3653-3658. IEEE, (2023)