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Measurement system with experiments for galvanic coupling type intra-body communication., , , , и . BMEI, стр. 761-764. IEEE, (2012)Coarse-To-Fine Person Re-Identification With Auxiliary-Domain Classification and Second-Order Information Bottleneck., , , , и . CVPR, стр. 598-607. Computer Vision Foundation / IEEE, (2021)A transceiver designed for intra-body communication of body area networks., , , , и . BODYNETS, стр. 67-70. ACM, (2011)Design and Implementation of Capability Opening Engine in PaaS for Internet of Vehicles., , , и . APSCC, стр. 62-67. IEEE Computer Society, (2014)Electrical Impedance Myography Applied to Monitoring of Muscle Fatigue During Dynamic Contractions., , , , , и . IEEE Access, (2020)Analysis of Electrical Impedance Myography Electrodes Configuration for Local Muscle Fatigue Evaluation Based on Finite Element Method., , , , , , и . IEEE Access, (2020)Dynamics Combined With Hill Model for Functional Electrical Stimulation Ankle Angle Prediction., , , , , , , , и . IEEE J. Biomed. Health Informatics, 27 (5): 2186-2196 (мая 2023)Preliminary Characterization of Capacitive Intrabody Communication Channel under Implantable-Like Conditions., , , и . I2MTC, стр. 1-5. IEEE, (2020)A Differential Analog Receiver Front-End for Galvanic-Coupled Human Body Communication., , , , , и . I2MTC, стр. 1-5. IEEE, (2020)Emotion recognition based on multimodal physiological signals using spiking feed-forward neural networks., , , , , , и . Biomed. Signal Process. Control., (2024)