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A wrist sensor and algorithm to determine instantaneous walking cadence and speed in daily life walking.

, , , , , , and . Med. Biol. Engineering and Computing, 55 (10): 1773-1785 (2017)

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Accurate Measurement of Concurrent Flexion-Extension and Internal-External Rotations in Smart Knee Prostheses., , and . IEEE Trans. Biomed. Engineering, 60 (9): 2504-2510 (2013)Detection of the movement of the humerus during daily activity., , , and . Med. Biol. Engineering and Computing, 47 (5): 467-474 (2009)MEMS Inertial Motion Sensing Watch for Measuring Walking and Running Activities., , , , , and . SiPS, page 104-109. IEEE, (2016)Implantable and wearable measurement system for smart knee prosthesis., , , and . BioCAS, page 240-243. IEEE, (2014)Putting Temperature into the Equation: Development and Validation of Algorithms to Distinguish Non-Wearing from Inactivity and Sleep in Wearable Sensors., , , , and . Sensors, 22 (3): 1117 (2022)Classification of daily-life postural transitions using trunk-worn wearable barometric pressure sensor., , , and . BODYNETS, page 252. ICST, (2013)A wrist sensor and algorithm to determine instantaneous walking cadence and speed in daily life walking., , , , , , and . Med. Biol. Engineering and Computing, 55 (10): 1773-1785 (2017)Instrumented Knee Prosthesis for Force and Kinematics Measurements., , , , , , , , , and 4 other author(s). IEEE Trans. Automation Science and Engineering, 10 (3): 615-624 (2013)Feet Fidgeting Detection Based on Accelerometers Using Decision Tree Learning and Gradient Boosting., , , , and . IWBBIO (2), volume 10814 of Lecture Notes in Computer Science, page 75-84. Springer, (2018)Towards estimation of front-crawl energy expenditure using the wearable aquatic movement analysis system (WAMAS)., , , and . BSN, page 1-6. IEEE, (2013)