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Development of a Non-invasive Brain Computer Interface for Neurorehabilitation.

, and . REHAB, page 126-130. ACM, (2015)

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A Multimodal Low-cost Platform for Acquisition of Electrophysiological Signals Interfacing with Portable Devices., , , , and . PhyCS, page 63-70. SciTePress, (2014)Measuring and Extraction of Biological Information on New Handheld Biochip-Based Microsystem., , , , , , , and . IEEE Trans. Instrumentation and Measurement, 59 (1): 56-62 (2010)Development of a Non-invasive Brain Computer Interface for Neurorehabilitation., and . REHAB, page 126-130. ACM, (2015)Development of an EMG controlled hand exoskeleton for post-stroke rehabilitation., , and . REHAB, page 66-72. ACM, (2015)Self hand-rehabilitation system based on wearable technology., and . REHAB, page 93-95. ACM, (2015)Combination of Medical Imaging and Demographic Data for Parkinson's Disease Diagnosis., , and . DoCEIS, volume 577 of IFIP Advances in Information and Communication Technology, page 339-346. Springer, (2020)AnxiECG-PPG Database: Synchronized ECG and mobile PPG Signals during Baseline, Physical Activated, and Psychological Activated Conditions., , , , , and . (April 2024)A New Handheld Biochip-based Microsystem., , , , , , , and . ISCAS, page 2379-2382. IEEE, (2007)Experimental Study and Evaluation of Paper-based Inkjet Electrodes for ECG Signal Acquisition., , , , , and . PhyCS, page 275-281. SciTePress, (2014)Paper-Based Inkjet Electrodes - Experimental Study for ECG Applications., , , , , and . PhyCS (Selected Papers), volume 8908 of Lecture Notes in Computer Science, page 59-70. Springer, (2014)